CN113096829A - Remote medical diagnosis mobile detection system - Google Patents

Remote medical diagnosis mobile detection system Download PDF

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Publication number
CN113096829A
CN113096829A CN202110428901.0A CN202110428901A CN113096829A CN 113096829 A CN113096829 A CN 113096829A CN 202110428901 A CN202110428901 A CN 202110428901A CN 113096829 A CN113096829 A CN 113096829A
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CN
China
Prior art keywords
detection
plate
patient
sliding rail
metal conductive
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Withdrawn
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CN202110428901.0A
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Chinese (zh)
Inventor
赵宏德
陈晓东
刘启站
蒲学明
高健
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Shandong Xiaodou Yunchuang Intelligent Technology Co ltd
Shandong Xinhua Puyang Biotechnology Co ltd
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Shandong Xiaodou Yunchuang Intelligent Technology Co ltd
Shandong Xinhua Puyang Biotechnology Co ltd
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Priority to CN202110428901.0A priority Critical patent/CN113096829A/en
Publication of CN113096829A publication Critical patent/CN113096829A/en
Withdrawn legal-status Critical Current

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H80/00ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/20ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/67ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Medical Informatics (AREA)
  • Business, Economics & Management (AREA)
  • General Business, Economics & Management (AREA)
  • Epidemiology (AREA)
  • General Health & Medical Sciences (AREA)
  • Primary Health Care (AREA)
  • Public Health (AREA)
  • Pathology (AREA)
  • Accommodation For Nursing Or Treatment Tables (AREA)

Abstract

A remote medical diagnosis mobile detection system belongs to the technical field of medical detection synthesis. The system is characterized by comprising a comprehensive monitoring and dispatching command center, a detection APP terminal, a detection bin, a hospital service platform, a pharmacy outpatient cooperation unit module and an administrator module; the administrator module is connected with and controls the comprehensive monitoring dispatching command center, the detection APP terminal, the detection cabin, the hospital service platform and the pharmacy outpatient service cooperation unit module. The system can enter a community for diagnosis and treatment of patients on the basis of ensuring the health and safety of medical personnel, and timely inform the detection result to the patients through a network; if difficult and complicated diseases occur, the system can also remotely organize experts for consultation in real time, and avoid the repeated running of the patient among various medical institutions and the delay of the illness state. The invention can realize the separation of doctors and patients and the non-contact detection diagnosis and treatment, and can conveniently realize the non-contact article exchange, the portrait acquisition and the identity information confirmation of patients.

Description

Remote medical diagnosis mobile detection system
Technical Field
The invention belongs to the technical field of medical detection synthesis, and particularly relates to a remote medical diagnosis mobile detection system.
Background
With the improvement of living standard, people have higher and higher requirements on medical services, although the nation invests a large amount of resources into medical treatment, the problems of difficult and expensive medical treatment and poor medical conditions of primary hospitals are still serious, and with the development of a new national medical system reform, a strong base layer becomes a basis for realizing a graded diagnosis and treatment mode, and the internet plus is one of important means for realizing the graded diagnosis and treatment mode. This time through internet mode construction remote detection cloud platform, reconfiguration doctor's resource and equipment resource are the most high-efficient, the most economic mode of implementing hierarchical diagnosis and treatment, can be better for basic level hospital and patient's service, improve whole medical treatment level.
In addition, for better serving community residents, the healthy life style of residents is advocated, the health management awareness of the community residents is enhanced, and the community activities of medical services are very popular in recent years. But because the medical facilities of the community are not equipped uniformly, and the department consultation examination cannot be realized; even if the examination is performed, the examination and diagnosis results of the patient cannot be delivered at that time, and the patient is required to go back and forth between the examination site and the hospital headquarters to obtain the examination results. If a patient with infectious diseases is encountered in the community diagnosis and treatment process, the health and safety of the medical personnel are difficult to ensure; for the condition that the patient's condition can not be judged on site, the patient needs to be transferred to a large hospital and organized again for expert consultation. Due to the above situation, community diagnosis and treatment always flows in the form, and the health and medical needs of the masses cannot be fundamentally solved.
In view of the above, the applicant designs a remote medical diagnosis mobile detection system, which can enter a community to diagnose and treat patients on the basis of ensuring the health and safety of medical staff, and timely notify the detection results to the patients through a network; if difficult and complicated diseases occur, the system can also remotely organize experts for consultation in real time, and avoid the repeated running of the patient among various medical institutions and the delay of the illness state.
Disclosure of Invention
In order to solve the problems, the invention provides a remote medical diagnosis mobile detection system which can enter a community for diagnosis and treatment of patients on the basis of ensuring the health and safety of medical personnel and can inform the patients of detection results in time through a network; if difficult and complicated diseases occur, the system can also remotely organize experts for consultation in real time, and avoid the repeated running of the patient among various medical institutions and the delay of the illness state of the patient; the second purpose of the invention is to realize separated non-contact detection diagnosis and treatment of doctors and patients by improving the structure of the detection bin, and to conveniently exchange articles and acquire portrait and confirm information.
The invention relates to a remote medical diagnosis mobile detection system which is characterized by comprising a comprehensive monitoring and dispatching command center, a detection APP terminal, a detection bin, a hospital service platform, a pharmacy outpatient service cooperation unit module and an administrator module; the administrator module is connected with and controls the comprehensive monitoring and dispatching command center, the detection APP terminal, the detection cabin, the hospital service platform and the pharmacy outpatient service cooperation unit module;
the comprehensive monitoring and dispatching command center has the functions of displaying all local parking units and positions thereof, the number of patients, the number of parking units, the detection times, the detection results of the nearest patients and the conditions of detection bins in real time in a large screen of the system, so that an operation manager and a supervision department can master the operation condition and emergency of the platform in real time;
the detection APP terminal is installed on an internet equipment terminal of a user, and a patient searches and positions a detection place with a detection bin nearby according to the position of the patient after logging in the detection APP terminal, and searches for the place closest to the detection APP terminal for detection; when a patient arrives at a detection place, scanning the two-dimensional code on the detection bin, logging in on line, filling in personal basic information, and then entering the detection bin for detection; after the detection is finished, the detection result of the user can be checked at the Internet equipment terminal;
two-dimensional codes generated in advance are pasted at the entrance of the detection bin; the in-warehouse staff collects the detection data of the patient and transmits the detection data to the hospital service platform through the 5G network, and the hospital service platform can make the detection result into a receipt report and send the receipt report to the detection warehouse, the detection APP terminal or the pharmacy outpatient service cooperation unit module;
the pharmacy outpatient cooperation unit module can count and manage the medicines in the pharmacy in real time and share medicine management data with a comprehensive monitoring, dispatching and commanding center, a hospital service platform and a detection bin; after receiving a detection report of a hospital service platform, corresponding medicines and the like can be pushed to an internet equipment terminal of a patient for displaying;
the hospital service platform can check the detection data uploaded by the detection bin in real time, diagnose the detection data and send the diagnosis result to the comprehensive monitoring and dispatching command center, the detection bin, the detection APP terminal or the pharmacy outpatient service cooperation unit module.
Preferably, the detection bin comprises an upper top plate, a lower bottom plate and four side plates, and the upper top plate, the lower bottom plate and the four side plates are enclosed to form a closed bin space; a middle partition board is arranged in the bin body and divides the space in the bin into a doctor space and a patient space; respectively arranging a doctor inlet and a patient inlet on the doctor space and the patient space, and respectively installing non-contact type sealing bin doors on the doctor inlet and the patient inlet; a delivery window is arranged on the middle partition plate, and an article delivery and connection device is arranged in the delivery window; two diagnosis and treatment windows are formed in the middle partition plate, annular opening portions of medical rubber gloves are arranged in the two diagnosis and treatment windows in a sealing mode respectively, the medical rubber gloves are located in a patient space, and the opening ends of the medical rubber gloves face the space of a patient.
Preferably, two diagnosis and treatment windows are formed in the middle partition plate, annular open parts of the medical rubber gloves are arranged in the two diagnosis and treatment windows in a sealing mode respectively, the medical rubber gloves are located in the space of a patient, and the open ends of the medical rubber gloves face the space of the patient.
Preferably, the article transfer and delivery device comprises a hollow circular rotary groove frame, a rotating shaft is arranged in the middle of the article transfer window, and the circular rotary groove frame is sleeved on the rotating shaft; the central axis of the circular rotary groove frame is collinear with the rotating shaft, and the upper end surface of the circular rotary groove frame is open; the two sides of a rotating shaft of the object passing window are respectively provided with a first curtain hanging shaft and a second curtain hanging shaft, the first curtain hanging shaft and the second curtain hanging shaft are respectively provided with a first flexible curtain hanging and a second flexible curtain hanging which are drooping, and the first flexible curtain hanging and the second flexible curtain hanging are coplanar with the middle partition plate and can seal the object passing windows on the two sides of the rotating shaft in a normal static state.
Preferably, the non-contact type sealing bin door comprises a first slide rail, a second slide rail and a folding door panel, and the first slide rail and the second slide rail are respectively and longitudinally arranged at two sides of the outside of the entrance; the folding door plate comprises an upper folding plate and a lower folding plate, the upper end of the upper folding plate is arranged on the upper edge of the entrance through an upper hinge shaft, the lower end of the upper folding plate is hinged with the upper edge of the lower folding plate through a lower hinge shaft, and a lower edge mute sealing strip is arranged on the lower edge of the lower folding plate; a first electric roller and a second electric roller are respectively arranged on two sides of the lower end of the lower folded plate, the lower end of a first inhaul cable is wound on the first electric roller, and the upper end of the first inhaul cable is fixed at the upper end of the first slide rail; the lower end of a second inhaul cable is wound on the second electric roller, and the upper end of the second inhaul cable is fixed at the upper end of the second sliding rail; the first electric roller and the second electric roller are respectively arranged in the first sliding rail and the second sliding rail;
when the first electric roller and the second electric roller rotate in the positive direction, the first pull rope and the second pull rope can be respectively wound, the lower edge of the lower folding plate moves upwards along the first sliding rail and the second sliding rail, and the folding door plate is folded outwards and opened; when the first electric roller and the second electric roller rotate reversely, the lower edge of the lower folded plate can move downwards, so that the folding door plate extends and closes the entrance;
and when the folding door panel extends to seal the inlet, the folding door panel is in press fit sealing contact with the first silent sealing strip and the second silent sealing strip.
Preferably, the device further comprises a spray disinfection device arranged inside the patient inlet; the spray type disinfection device comprises a rotary driving device, a spray rotating rod and an annular water retaining track, wherein the annular water retaining track is fixed on a lower bottom plate on the inner side of the patient inlet, a disinfection liquid outlet is formed in the lower bottom plate in the annular water retaining track, and the disinfection liquid outlet is communicated with a waste liquid collecting box through a disinfection liquid outlet pipe; the spraying rotating rod comprises a hollow rigid rod body, a disinfectant liquid conveying pipe, a disinfectant liquid conveying pump and a disinfectant liquid storage bin; the rigid rod body comprises an upper vertical rod, a middle inclined rod and a lower vertical rod which are mutually connected and communicated; the upper top plate is provided with a bearing seat mounting hole, a bearing seat is mounted in the bearing seat mounting hole, the upper upright rod penetrates through the bearing seat upwards and then is sleeved with a driven gear, the lower end of the upper upright rod is sequentially connected with a middle inclined rod and a lower upright rod, the lower end of the lower upright rod is closed and is provided with a rotating roller, and the rotating roller is arranged in the annular water retaining track; a driving motor is installed at the upper end of the upper top wall through a motor installation base, a driving gear is sleeved on a motor shaft of the driving motor, and the driving gear is meshed with a driven gear; the upper end of the upper upright rod is connected with a disinfectant liquid conveying pipe through a rotary joint, and the disinfectant liquid conveying pipe is communicated with a disinfectant liquid storage bin through a disinfectant liquid conveying pump; a plurality of atomization spraying holes are longitudinally formed in the lower vertical rod;
in an initial state, the driving motor is meshed with the driven gear through the driving gear, so that the rigid rod body rotates around the annular water retaining track and is arranged close to the side face of the patient inlet; after a patient enters the detection bin from the patient inlet, starting the disinfectant spraying pump to enable the disinfectant in the disinfectant storage bin to enter the rigid rod body along the disinfectant liquid conveying pipe; meanwhile, a driving motor is started, each atomization spraying hole which is longitudinally formed faces the central axis of the annular water retaining track all the time and sprays downwards in an inclined mode, and the spraying distance is smaller than the diameter length of the annular water retaining track; spraying and disinfecting the patient while rotating the rigid rod body around the annular water retaining track; the accumulated water accumulated in the annular water retaining track after being sprayed for a plurality of times can enter the waste liquid collecting box along the disinfection liquid outlet and the disinfection liquid outlet pipe.
Preferably, the adjustable lifting lighting camera device comprises a first magnetic suction slider, a movable handle, a second magnetic suction slider, a positive metal conductive slide rail, a negative metal conductive slide rail, a magnetic suction lifting frame and a lighting camera device; a first chute is longitudinally formed in one side of the middle partition board facing the space of a doctor, the cross section of the first chute is in a convex shape, a first magnetic suction sliding block is arranged in the first chute, and a moving handle is installed on the first magnetic suction sliding block; a second chute is longitudinally formed in one side, facing the space of a patient, of the middle partition plate, a positive metal conductive sliding rail and a negative metal conductive sliding rail are longitudinally arranged in parallel in the second chute, a magnetic suction lifting frame is clamped between the positive metal conductive sliding rail and the negative metal conductive sliding rail and comprises a second magnetic suction sliding block, a first metal conductive cross rod, a lighting camera device and a second metal conductive cross rod are sleeved outside the second magnetic suction sliding block, a first sliding rail fastener is arranged at the outer end of the first metal conductive cross rod, a second sliding rail fastener is arranged at the outer end of the second metal conductive cross rod, the first sliding rail fastener and the second sliding rail fastener are both in an omega shape or an n shape in cross section, and the positive metal conductive sliding rail and the negative metal conductive sliding rail are respectively clamped by the first sliding rail fastener and the second sliding rail fastener; the upper ends of the positive metal conductive slide rail and the negative metal conductive slide rail are respectively connected with the positive electrode and the negative electrode of the power supply; the positive pole of the power supply is connected with the positive pole of the lighting camera device through the positive metal conductive slide rail, the first slide rail buckle and the first metal conductive cross bar respectively, and the negative pole of the power supply is connected with the negative pole of the lighting camera device through the negative metal conductive slide rail, the second slide rail buckle and the second metal conductive cross bar respectively; a doctor can manually hold the movable handle from the space of the doctor, and then the first magnetic suction sliding block correspondingly sucks the second magnetic suction sliding block to move up and down, so that the lighting and camera shooting device moves up and down along the second sliding rail; the illumination camera device controls the functions of photographing and illumination through a remote controller, and the remote controller is placed in the space of a doctor;
a first pulley and a second pulley are respectively sleeved in the middle parts of the first metal conductive cross rod and the second metal conductive cross rod; the first pulley and the second pulley are in sliding contact with the inner wall of the second sliding rail respectively.
Preferably, a plurality of groups of movable universal wheels are arranged at the lower part of the lower bottom plate; the lower bottom plate is rectangular, and bottom plate blocking edges are respectively vertically arranged on the periphery of the lower bottom plate; a plurality of side plate insertion rods are respectively arranged on the inner sides of the blocking edges of the bottom plate, insertion holes are respectively formed in the bottoms of the side plates, and the side plates are vertically inserted and fixed on the side plate insertion rods through the insertion holes; the inner side of the blocking edge of the bottom plate is provided with a plurality of side plate abutting springs, and when the side plates are inserted on the side plate insertion rods, the side plate abutting springs can abut against the outer vertical surfaces of the side plates;
side seam sealing rubber strips are arranged between the adjacent side plates in an inclusion manner; and a supporting groove is transversely arranged at the upper part of each side plate, the periphery of the upper top plate is embedded into the supporting groove of each side plate, and a top seam sealing rubber strip with a T-shaped cross section is inserted between the upper top plate and each side plate.
Preferably, drawing and positioning type steps are respectively arranged below the outer sides of the medical person inlet and the patient inlet of the detection bin;
the drawing positioning type step comprises an outer step and an inner step, a connecting end of the outer step is provided with a plug board, a plug groove is formed in the side face of the lower base plate, the plug board can be inserted into the plug groove, and the outer step and the lower base plate are connected and fixed through a pin shaft which can be plugged and pulled and penetrates through the lower base plate and the plug board;
the other end of the outer step is provided with an inner step accommodating groove with an opening at the rear end, the inner step is inserted in the inner step accommodating groove, the cross section of the inner step is in an inverted L shape, the lower end of the inner step is provided with an inner step pulley, the lower part of the inner step accommodating groove is communicated with a ratchet plate accommodating groove with an opening at the lower end, a ratchet plate is arranged in the ratchet plate accommodating groove, and the lower part of the ratchet plate is fixed with a plurality of spines; a front guide rotating wheel and a rear guide rotating wheel are respectively arranged on the side wall of the ratchet plate accommodating groove through a front guide rotating shaft and a rear guide rotating shaft, the front ends of a front guide pull rope and a rear guide pull rope are respectively fixed on the spokes of the front guide rotating wheel and the rear guide rotating wheel, and the rear ends of the front guide pull rope and the rear guide pull rope are respectively connected with the front part and the rear part of the lower bottom surface of the inner step; the upper ends of the front ratchet plate driving rod and the rear ratchet plate driving rod are respectively fixed on the front guide rotating wheel and the rear guide rotating wheel, and the lower ends of the front ratchet plate driving rod and the rear ratchet plate driving rod are respectively hinged with a ratchet plate;
when the inner step is pulled outwards, the front guide pull rope and the rear guide pull rope can be pulled to drive the front guide rotating wheel and the rear guide rotating wheel to rotate, and the front ratchet plate driving rod and the rear ratchet plate driving rod respectively swing downwards around the front guide rotating shaft and the rear guide rotating shaft to drive the ratchet plate to move downwards; when the inner steps are completely pulled out, the thorns of the ratchet plate can be inserted into the ground to realize the position fixation of the detection bin.
The beneficial effects are as follows:
1. the system can enter a community for diagnosis and treatment of patients on the basis of ensuring the health and safety of medical personnel, and timely inform the detection result to the patients through a network; if difficult and complicated diseases occur, the system can also remotely organize experts for consultation in real time, and avoid the repeated running of the patient among various medical institutions and the delay of the illness state.
2. The invention realizes the non-contact detection diagnosis and treatment by improving the structure of the detection bin, and can conveniently exchange articles, acquire portrait and confirm information. When the medical cabin is used, doctors and patients can communicate, diagnose and treat in the cabin body without being influenced by external temperature and other environmental factors.
3. The doctor and the patient enter the doctor space and the patient space through the doctor access opening and the patient access opening, respectively. Since the doctor space and the patient space are separated by the intermediate partition, cross-infection can be avoided. Especially, when a patient enters a patient space, the spraying type pre-disinfection is firstly carried out, so that the virus strains adhered to the outside of the body can be prevented from being carried into the diagnosis and treatment space and cross infection among the patients in the space can be prevented.
4. When giving a doctor, the doctor stretches into medical rubber gloves with both hands through diagnosing the window to the basis of non-contact mode such as injecting, wrapping is diagnose the operation to the patient, and file, medicine or medical instrument accessible article transmission handing-over device rotary drive that need the transmission need take out after the article doctor that the transmission comes in from the patient direction need disinfect, can effectively avoid the contact propagation of virus, ensures doctor's health safety.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged view of FIG. 1 at A;
fig. 3 is a schematic view of the mounting structure of the magnetic crane (i.e., a schematic view of the mounting and matching structure of the second magnetic slider, the first metal conductive cross bar, the second metal conductive cross bar, the first slide rail fastener, the second slide rail fastener, the first pulley and the second pulley);
FIG. 4 is a schematic view of the installation structure of the spray type disinfection device in the detection chamber;
FIG. 5 is an enlarged view of the portion B of FIG. 4;
FIG. 6 is an enlarged view of section C of FIG. 4;
FIG. 7 is a schematic view of a folding door;
FIG. 8 is an enlarged view of FIG. 4 at D;
FIG. 9 is a schematic view showing the moving state of the outwardly drawn inner step of the draw positioning step;
in the figure: 1. sealing the rubber strip at the top seam; 2. a side plate; 3. entering the mouth of the doctor; 4. a non-contact sealed bin gate; 5. the physician's space; 6. an antibacterial operating table; 7. a side plate is inserted with a rod; 8. the side plate tightly abuts against the spring; 9. a bottom plate blocking edge; 10. drawing and positioning steps; 11. a reagent refrigerating box; 12. moving the universal wheel; 13. a consumable storage cabinet; 14. a PP water tank; 15. an electric water tap; 16. a middle partition plate; 17. an article transfer interface; 18. a suction window; 19. a patient space; 20. a patient access; 21. an air outlet window; 22. an air outlet pipe; 23. an ultraviolet germicidal lamp; 24. an air filter; 25. an air exhaust pipe; 26. an air pump; 27. an upper top plate; 28. an illuminating lamp; 29. a second chute; 30. a positive metal conductive slide rail; 31. moving the handle; 32. a first magnetic attraction sliding block; 33. a first chute; 34. rotating the roller; 35. A first pulley; 36. a first slide rail fastener; 37. an illumination camera device; 38. a first metal conductive cross bar; 39. a second magnetic attraction sliding block; 40. a second pulley; 41. a second slide rail fastener; 42. an upper articulated shaft; 43. folding the plate; 44. a lower hinge shaft; 45. folding the plate; 46. a first slide rail; 47. a first motorized roller; 48. atomizing spray holes; 49. a disinfecting liquid outlet; 50. an annular water retaining track; 51. disinfecting the drain pipe; 52. a waste liquid collection box; 53. a disinfectant liquid storage bin; 54. a disinfectant liquid conveying pipe; 55. a driven gear; 56. an upper vertical rod; 57. a bearing seat; 58. a middle diagonal rod; 59. a driving gear; 60. a motor mounting base; 61. a drive motor; 62. a rotating shaft; 63. a first curtain hanging shaft; 64. a diagnosis and treatment window; 65. medical rubber gloves; 66. a first flexible curtain; 67. a circular rotary groove frame; 68. a lower edge silent sealing strip; 69. inserting grooves; 70. a plugboard; 71. an outer step; 72. an inner step receiving groove; 73. a front guide pull rope; 74. a front steering wheel; 76. a rear guide pull rope; 77. a rear guide runner; 78. an inner step; 79. a ratchet plate; 80. an inner step pulley; 81. thorn; 82. the rear ratchet plate drives the rod; 83. a rear guide rotating shaft; 84. a ratchet plate receiving groove; 85. driving the rod by the front ratchet plate; 86. a front guide rotating shaft; 87. a lower vertical rod; 88. a second motorized roller.
Detailed Description
The present invention will be further described with reference to specific examples, which are not intended to limit the invention.
Example one
The invention relates to a remote medical diagnosis mobile detection system, which comprises a comprehensive monitoring and dispatching command center, a detection APP terminal, a detection bin, a hospital service platform, a pharmacy outpatient service cooperation unit module and an administrator module, wherein the comprehensive monitoring and dispatching command center is connected with the APP terminal through a network; the administrator module is connected with and controls the comprehensive monitoring and dispatching command center, the detection APP terminal, the detection cabin, the hospital service platform and the pharmacy outpatient service cooperation unit module; the administrator module can perform overall planning, add and manage data information of a detection bin, a hospital service platform, a pharmacy outpatient service cooperative unit, doctors of the hospital service platform and the like; the administrator module can also view the overall data, including detecting the number of bins, the number of people making a diagnosis, the units living in, the device information, the real-time detection content, and tracing the whole inquiry process.
The comprehensive monitoring and dispatching command center has the functions of displaying all local parking units and positions thereof, the number of patients, the number of parking units, the detection times, the detection results of the nearest patients and the conditions of detection bins in real time in a large screen of the system, so that an operation manager and a supervision department can master the operation condition and emergency of the platform in real time;
the detection APP terminal is installed on an internet equipment terminal of a user, and a patient searches and positions a detection place with a detection bin nearby according to the position of the patient after logging in the detection APP terminal, and searches for the place closest to the detection APP terminal for detection; when a patient arrives at a detection place, scanning the two-dimensional code on the detection bin, logging in on line, filling in personal basic information, and then entering the detection bin for detection; after the detection is finished, the detection result of the user can be checked at the Internet equipment terminal;
two-dimensional codes generated in advance are pasted at the entrance of the detection bin; the detection cabin is generally arranged in a big drugstore or a village and town clinic, and a patient logging on a WeChat small program can search and position a detection place with the detection cabin nearby according to the position of the patient, and search a place with the closest distance for home diagnosis; when a patient arrives at a detection place, the two-dimensional code on the detection bin is scanned, the two-dimensional code is logged in by using a WeChat (a detection APP end on the Internet terminal equipment can be installed on a mobile phone of the user in a WeChat small program mode), and the user can enter the detection bin to diagnose after filling in personal basic information. The in-warehouse staff collects the detection data of the patient and transmits the detection data to the hospital service platform through the 5G network, and the hospital service platform can make the detection result into a receipt report and send the receipt report to the detection warehouse, the detection APP terminal or the pharmacy outpatient service cooperation unit module;
the pharmacy outpatient cooperation unit module can count and manage the medicines in the pharmacy in real time and share medicine management data with a comprehensive monitoring, dispatching and commanding center, a hospital service platform and a detection bin; after receiving the detection report of the hospital service platform, the corresponding medicines and the like can be pushed to the internet equipment terminal of the patient for displaying; the pharmacy outpatient cooperation unit module can also carry out services such as medicine buying, medicine dispensing, medicine delivery and the like through the system.
The hospital service platform can check the detection data uploaded by the detection bin in real time, can quickly diagnose the detection data, and then sends the diagnosis result to the comprehensive monitoring and dispatching command center, the detection bin, the detection APP terminal or the pharmacy outpatient service cooperation unit module;
and the administrator module carries out overall planning on each module and checks and manages the whole data of each module.
The use method of the system comprises the following steps: medical staff samples the patient in the detection storehouse to give hospital service platform with the sample result transmission, hospital service platform's medical expert carries out the analysis to sample information, and give detection result or diagnosis and treatment scheme transmission detection storehouse, medical staff treats the patient according to diagnosing the scheme, can get it filled through other detection storehouses or pharmacy outpatient service cooperative unit in diagnostic system to the medicine that does not have in the detection storehouse. The administrator module manages all links of the detection warehouse, the hospital service platform and the pharmacy outpatient cooperation unit, the comprehensive monitoring and dispatching command center is managed by government medical institutions according to the information of patients, and a plan is proposed according to emergency situations.
It should be noted that in this embodiment, data transmission between the modules can be implemented by wireless data transmission methods such as 3G/4G/5G/Wifi, which are mature prior art and the principle of which is not described herein again.
Example two
As shown in fig. 1, the detection bin comprises an upper top plate, a lower bottom plate and four side plates, wherein a closed bin space is formed by the upper top plate, the lower bottom plate and the four side plates in a surrounding manner; a middle partition board is arranged in the bin body and divides the space in the bin into a doctor space and a patient space; respectively arranging a doctor inlet and a patient inlet on the doctor space and the patient space, and respectively installing non-contact type sealing bin doors on the doctor inlet and the patient inlet; a delivery window is arranged on the middle partition plate, and an article delivery and connection device is arranged in the delivery window; two diagnosis and treatment windows are formed in the middle partition plate, annular opening portions of medical rubber gloves are arranged in the two diagnosis and treatment windows in a sealing mode respectively, the medical rubber gloves are located in a patient space, and the opening ends of the medical rubber gloves face the space of a patient.
A linear, L-shaped or II-shaped cabinet can be arranged in the space of the doctor, and an antibacterial operating table is arranged on the cabinet. The antibacterial operation table is provided with a five-hole socket and a network interface, and can be used for placing conventional test items (C-reactive protein, CRP and SAA) such as a blood pressure meter, a blood glucose meter, a blood globe and a temperature measuring instrument. The antibacterial operation table is embedded with a PP water tank, a pure water barrel and a waste water barrel are arranged below the PP water tank, an electric water tap is arranged on the side surface of the PP water tank, the electric water tap is communicated with the upper end of a water suction pipe, and the lower end of the water suction pipe is inserted into the pure water barrel; the bottom of the PP water tank is provided with a water outlet which is communicated with the waste water barrel through a water drainage pipe; a reagent refrigerating box and a consumable storage cabinet are embedded in the cabinet.
Two diagnosis and treatment windows are formed in the middle partition plate, annular opening portions of medical rubber gloves are arranged in the two diagnosis and treatment windows in a sealing mode respectively, the medical rubber gloves are located in a patient space, and the opening ends of the medical rubber gloves face the space of a patient.
As shown in fig. 1, the air filter device further comprises a suction window, the suction window is arranged at the lower portion of the side plate, the suction window is communicated with the air inlet end of the air filter through an air suction pipe and an air suction pump, the air outlet end of the air filter is communicated with the air outlet window through an air outlet pipe, and the air outlet window is arranged on the upper top plate.
As shown in fig. 2, the portable electronic device further comprises an adjustable lifting illumination camera device, wherein the adjustable lifting illumination camera device comprises a first magnetic suction slider, a moving handle, a second magnetic suction slider, a positive metal conductive slide rail, a negative metal conductive slide rail, a magnetic suction lifting frame and an illumination camera device; a first chute is longitudinally formed in one side of the middle partition board facing the space of a doctor, the cross section of the first chute is in a convex shape, a first magnetic suction sliding block is arranged in the first chute, and a moving handle is installed on the first magnetic suction sliding block; the second spout is vertically seted up towards one side in patient space at the median septum, and vertical parallel arrangement positive pole metal conductive slide rail and negative pole metal conductive slide rail in the second spout, the crane is inhaled to centre gripping setting magnetism between positive pole metal conductive slide rail and negative pole metal conductive slide rail, the crane includes that the second magnetism inhales the slider. As shown in fig. 3, a first metal conductive cross bar, a lighting camera device and a second metal conductive cross bar are sleeved outside a second magnetic suction slider, a first slide rail buckle is installed at the outer end of the first metal conductive cross bar, a second slide rail buckle is installed at the outer end of the second metal conductive cross bar, the first slide rail buckle and the second slide rail buckle are both in an omega shape or an n shape in cross section, and a positive metal conductive slide rail and a negative metal conductive slide rail are respectively clamped by the first slide rail buckle and the second slide rail buckle; the upper ends of the positive metal conductive slide rail and the negative metal conductive slide rail are respectively connected with the positive electrode and the negative electrode of the power supply; the positive pole of the power supply is connected with the positive pole of the lighting camera device through the positive metal conductive slide rail, the first slide rail buckle and the first metal conductive cross bar respectively, and the negative pole of the power supply is connected with the negative pole of the lighting camera device through the negative metal conductive slide rail, the second slide rail buckle and the second metal conductive cross bar respectively; a doctor can manually hold the movable handle from the space of the doctor, and then the first magnetic suction sliding block correspondingly sucks the second magnetic suction sliding block to move up and down, so that the lighting and camera shooting device moves up and down along the second sliding rail; the lighting camera device controls the functions of photographing and lighting through a remote controller, and the remote controller is placed in the space of a doctor. A first pulley and a second pulley are respectively sleeved in the middle parts of the first metal conductive cross rod and the second metal conductive cross rod; the front side surfaces of the first pulley and the second pulley are in sliding contact with the inner wall of one side of the second sliding rail respectively.
Through setting up adjustable lift illumination camera device, the doctor can make the field of vision more clear through the illumination height that removes the mode regulation of handle with magnetism, when wrapping wound or injection operation. In addition, the remote controller can also be used for carrying out real-time portrait acquisition operation so as to facilitate the confirmation and comparison of later-period information and avoid the problem of transmission error of detection results.
As shown in fig. 4 and 6, the article transferring and connecting device includes a hollow circular ring-shaped slot frame, a rotating shaft is installed in the middle of the article transferring window, and the circular ring-shaped slot frame is sleeved on the rotating shaft; the central axis of the circular rotary groove frame is collinear with the rotating shaft, and the upper end surface of the circular rotary groove frame is open; the two sides of a rotating shaft of the object passing window are respectively provided with a first curtain hanging shaft and a second curtain hanging shaft, the first curtain hanging shaft and the second curtain hanging shaft are respectively provided with a first flexible curtain hanging and a second flexible curtain hanging which are drooping, and the first flexible curtain hanging and the second flexible curtain hanging are coplanar with the middle partition plate and can seal the object passing windows on the two sides of the rotating shaft in a normal static state.
As shown in fig. 4 and 7, the non-contact type sealing cabin door includes a first sliding rail, a second sliding rail and a folding door panel, and the first sliding rail and the second sliding rail are respectively and longitudinally arranged at two sides of the exterior of the entrance; the folding door plate comprises an upper folding plate and a lower folding plate, the upper end of the upper folding plate is arranged on the upper edge of the entrance through an upper hinge shaft, the lower end of the upper folding plate is hinged with the upper edge of the lower folding plate through a lower hinge shaft, and a lower edge mute sealing strip is arranged on the lower edge of the lower folding plate; a first electric roller and a second electric roller are respectively arranged on two sides of the lower end of the lower folded plate, the lower end of a first inhaul cable is wound on the first electric roller, and the upper end of the first inhaul cable is fixed at the upper end of the first slide rail; the lower end of a second inhaul cable is wound on the second electric roller, and the upper end of the second inhaul cable is fixed at the upper end of the second sliding rail; the first electric roller and the second electric roller are respectively arranged in the first sliding rail and the second sliding rail.
When the first electric roller and the second electric roller rotate in the positive direction, the first pull rope and the second pull rope can be respectively wound, the lower edge of the lower folding plate moves upwards along the first sliding rail and the second sliding rail, and the folding door plate is folded outwards and opened; when the first electric roller and the second electric roller rotate reversely, the lower edge of the lower folded plate can move downwards, and the folding door plate can extend and close the entrance.
And when the folding door panel extends to seal the inlet, the folding door panel is in press fit sealing contact with the first silent sealing strip and the second silent sealing strip.
As shown in fig. 4, further comprising a spray disinfection device, which is arranged inside the patient inlet; the spray type disinfection device comprises a rotary driving device, a spray rotating rod and an annular water retaining track, wherein the annular water retaining track is fixed on a lower bottom plate on the inner side of the patient inlet, a disinfection liquid outlet is formed in the lower bottom plate in the annular water retaining track, and the disinfection liquid outlet is communicated with a waste liquid collecting box through a disinfection liquid outlet pipe; the spraying rotating rod comprises a hollow rigid rod body, a disinfectant liquid conveying pipe, a disinfectant liquid conveying pump and a disinfectant liquid storage bin; the rigid rod body comprises an upper vertical rod, a middle inclined rod and a lower vertical rod which are mutually connected and communicated; the upper top plate is provided with a bearing seat mounting hole, a bearing seat is mounted in the bearing seat mounting hole, the upper upright rod penetrates through the bearing seat upwards and then is sleeved with a driven gear, the lower end of the upper upright rod is sequentially connected with a middle inclined rod and a lower upright rod, the lower end of the lower upright rod is closed and is provided with a rotating roller, and the rotating roller is arranged in the annular water retaining track; a driving motor is installed at the upper end of the upper top wall through a motor installation base, a driving gear is sleeved on a motor shaft of the driving motor, and the driving gear is meshed with a driven gear; the upper end of the upper upright rod is connected with a disinfectant liquid conveying pipe through a rotary joint, and the disinfectant liquid conveying pipe is communicated with a disinfectant liquid storage bin through a disinfectant liquid conveying pump; a plurality of atomization spraying holes are longitudinally arranged on the lower upright stanchion.
In an initial state, the driving motor is meshed with the driven gear through the driving gear, so that the rigid rod body rotates around the annular water retaining track and is arranged close to the side face of the patient inlet; after a patient enters the detection bin from the patient inlet, starting the disinfectant spraying pump to enable the disinfectant in the disinfectant storage bin to enter the rigid rod body along the disinfectant liquid conveying pipe; meanwhile, a driving motor is started, each atomization spraying hole which is longitudinally formed faces the central axis of the annular water retaining track all the time and sprays downwards in an inclined mode, and the spraying distance is smaller than the diameter length of the annular water retaining track; spraying and disinfecting the patient while rotating the rigid rod body around the annular water retaining track; the accumulated water accumulated in the annular water retaining track after being sprayed for a plurality of times can enter the waste liquid collecting box along the disinfection liquid outlet and the disinfection liquid outlet pipe.
As shown in fig. 4, a plurality of sets of movable universal wheels are mounted on the lower part of the lower bottom plate; the lower bottom plate is rectangular, and bottom plate blocking edges are respectively vertically arranged on the periphery of the lower bottom plate; a plurality of side plate insertion rods are respectively arranged on the inner sides of the blocking edges of the bottom plate, insertion holes are respectively formed in the bottoms of the side plates, and the side plates are vertically inserted and fixed on the side plate insertion rods through the insertion holes; the inner side of the blocking edge of the bottom plate is provided with a plurality of side plate abutting springs, and when the side plates are inserted on the side plate insertion rods, the side plate abutting springs can abut against the outer vertical surfaces of the side plates;
side seam sealing rubber strips are arranged between the adjacent side plates in an inclusion manner; and a supporting groove is transversely arranged at the upper part of each side plate, the periphery of the upper top plate is embedded into the supporting groove of each side plate, and a top seam sealing rubber strip with a T-shaped cross section is inserted between the upper top plate and each side plate.
As shown in fig. 4 and 8, drawing and positioning steps are respectively arranged below the outer sides of the medical entrance and the patient entrance of the detection bin; the pull positioning type step comprises an outer step and an inner step, the connecting end of the outer step is provided with a plug board, the side face of the lower base plate is provided with a plug groove, the plug board can be inserted into the plug groove, and the outer step and the lower base plate are connected and fixed by a pin shaft capable of being plugged and unplugged penetrating through the lower base plate and the plug board.
The other end of the outer step is provided with an inner step accommodating groove with an opening at the rear end, the inner step is inserted in the inner step accommodating groove, the cross section of the inner step is in an inverted L shape, the lower end of the inner step is provided with an inner step pulley, the lower part of the inner step accommodating groove is communicated with a ratchet plate accommodating groove with an opening at the lower end, a ratchet plate is arranged in the ratchet plate accommodating groove, and the lower part of the ratchet plate is fixed with a plurality of spines; a front guide rotating wheel and a rear guide rotating wheel are respectively arranged on the side wall of the ratchet plate accommodating groove through a front guide rotating shaft and a rear guide rotating shaft, the front ends of a front guide pull rope and a rear guide pull rope are respectively fixed on the spokes of the front guide rotating wheel and the rear guide rotating wheel, and the rear ends of the front guide pull rope and the rear guide pull rope are respectively connected with the front part and the rear part of the lower bottom surface of the inner step; the upper ends of the front ratchet plate driving rod and the rear ratchet plate driving rod are respectively fixed on the front guide rotating wheel and the rear guide rotating wheel, and the lower ends of the front ratchet plate driving rod and the rear ratchet plate driving rod are respectively hinged with the ratchet plate.
When the detection bin moves, a pulling positioning type step does not need to be inserted, and the bin body only needs to be pulled and moved to a destination by a pulling vehicle; and then the inserting plate of the outer step is inserted into the inserting groove, and the pin shaft which can be inserted and pulled penetrates through the lower bottom plate and the inserting plate so as to realize the connection and fixation between the outer step and the lower bottom plate. As shown in fig. 8, when the inner step is pulled outwards, the front guide rope and the rear guide rope can be pulled to move outwards, and then the front guide runner and the rear guide runner are driven to rotate, and the front ratchet plate driving rod and the rear ratchet plate driving rod respectively swing downwards around the front guide rotating shaft and the rear guide rotating shaft, so that the ratchet plate moves downwards; when the inner step is completely pulled out, the thorn of the thorn plate can be inserted into the ground to fix the position of the detection bin, so that the bin body is prevented from shaking in the use process, and potential safety hazards are avoided.
When the medical cabin is used, doctors and patients can communicate, diagnose and treat in the cabin body without being influenced by external temperature and other environmental factors. The doctor and the patient enter the doctor space and the patient space through the doctor access opening and the patient access opening, respectively. Since the doctor space and the patient space are separated by the intermediate partition, cross-infection can be avoided. Especially, when a patient enters a patient space, the spraying type pre-disinfection is firstly carried out, so that the virus strains adhered to the outside of the body can be prevented from being carried into the diagnosis and treatment space and cross infection among the patients in the space can be prevented. A doctor stretches two hands into the medical rubber gloves through the diagnosis and treatment window to perform basic diagnosis and treatment operations such as bandaging, injection and the like on a patient in a non-contact mode, files, medicines or medical instruments to be transferred can be rotationally driven through the article transfer and connection device, and the medical doctor needs to sterilize articles transferred from the direction of the patient and then takes out the articles, so that cross infection is avoided.
Because the first inlet and the second inlet are respectively arranged on the doctor space and the patient space, the doctor and the patient can respectively open the non-contact type sealing cabin door in a remote control mode. The specific opening mode can be completed by inputting a starting instruction by a remote controller, a code scanning door (the principle is the same as that of a supermarket locker, and a patient needs to hold a corresponding bar code) or a mobile phone code scanning door, and different patients can not contact with each other when entering the second entrance by the aid of the setting, so that sanitary safety is further guaranteed. When necessary, an infrared thermometer can be arranged outside the entrance of the patient, so that whether the heating condition exists or not can be distinguished before the patient enters the warehouse, the doctor can be conveniently assisted to know the state of an illness in advance, and the diagnosis and treatment time is saved.
EXAMPLE III
In this embodiment, the structure of the detection chamber described in the second embodiment can be applied to the remote medical diagnosis mobile detection system described in the first embodiment, and the advantages of the first embodiment and the second embodiment are combined.
The foregoing is directed to preferred embodiments of the present invention, other and further embodiments of the invention may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow. Any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present invention, without departing from the technical solution of the present invention, still belong to the protection scope of the technical solution of the present invention.

Claims (9)

1. A remote medical diagnosis mobile detection system is characterized by comprising a comprehensive monitoring and dispatching command center, a detection APP terminal, a detection bin, a hospital service platform, a pharmacy outpatient service cooperation unit module and an administrator module; the administrator module is connected with and controls the comprehensive monitoring and dispatching command center, the detection APP terminal, the detection cabin, the hospital service platform and the pharmacy outpatient service cooperation unit module;
the comprehensive monitoring and dispatching command center has the functions of displaying all local parking units and positions thereof, the number of patients, the number of parking units, the detection times, the detection results of the nearest patients and the conditions of detection bins in real time in a large screen of the system, so that an operation manager and a supervision department can master the operation condition and emergency of the platform in real time;
the detection APP terminal is installed on an internet equipment terminal of a user, and a patient searches and positions a detection place with a detection bin nearby according to the position of the patient after logging in the detection APP terminal, and searches for the place closest to the detection APP terminal for detection; when a patient arrives at a detection place, scanning the two-dimensional code on the detection bin, logging in on line, filling in personal basic information, and then entering the detection bin for detection; after the detection is finished, the detection result of the user can be checked at the Internet equipment terminal;
two-dimensional codes generated in advance are pasted at the entrance of the detection bin; the in-warehouse staff collects the detection data of the patient and transmits the detection data to the hospital service platform through the 5G network, and the hospital service platform can make the detection result into a receipt report and send the receipt report to the detection warehouse, the detection APP terminal or the pharmacy outpatient service cooperation unit module;
the pharmacy outpatient cooperation unit module can count and manage the medicines in the pharmacy in real time and share medicine management data with a comprehensive monitoring, dispatching and commanding center, a hospital service platform and a detection bin; after receiving a detection report of a hospital service platform, corresponding medicines and the like can be pushed to an internet equipment terminal of a patient for displaying;
the hospital service platform can check the detection data uploaded by the detection bin in real time, diagnose the detection data and send the diagnosis result to the comprehensive monitoring and dispatching command center, the detection bin, the detection APP terminal or the pharmacy outpatient service cooperation unit module.
2. A remote medical diagnostic movement detection system as claimed in claim 1, wherein: the detection bin comprises an upper top plate, a lower bottom plate and four side plates, wherein a closed bin space is formed by the upper top plate, the lower bottom plate and the four side plates in a surrounding manner; a middle partition board is arranged in the bin body and divides the space in the bin into a doctor space and a patient space; respectively arranging a doctor inlet and a patient inlet on the doctor space and the patient space, and respectively installing non-contact type sealing bin doors on the doctor inlet and the patient inlet; a delivery window is arranged on the middle partition plate, and an article delivery and connection device is arranged in the delivery window; two diagnosis and treatment windows are formed in the middle partition plate, annular opening portions of medical rubber gloves are arranged in the two diagnosis and treatment windows in a sealing mode respectively, the medical rubber gloves are located in a patient space, and the opening ends of the medical rubber gloves face the space of a patient.
3. A remote medical diagnostic movement detection system as claimed in claim 2, wherein: two diagnosis and treatment windows are formed in the middle partition plate, annular opening portions of medical rubber gloves are arranged in the two diagnosis and treatment windows in a sealing mode respectively, the medical rubber gloves are located in a patient space, and the opening ends of the medical rubber gloves face the space of a patient.
4. A remote medical diagnostic movement detection system as claimed in claim 3, wherein: the article transferring and handing-over device comprises a hollow circular rotary groove frame, a rotating shaft is arranged in the middle of the article transferring window, and the circular rotary groove frame is sleeved on the rotating shaft; the central axis of the circular rotary groove frame is collinear with the rotating shaft, and the upper end surface of the circular rotary groove frame is open; the two sides of a rotating shaft of the object passing window are respectively provided with a first curtain hanging shaft and a second curtain hanging shaft, the first curtain hanging shaft and the second curtain hanging shaft are respectively provided with a first flexible curtain hanging and a second flexible curtain hanging which are drooping, and the first flexible curtain hanging and the second flexible curtain hanging are coplanar with the middle partition plate and can seal the object passing windows on the two sides of the rotating shaft in a normal static state.
5. A remote medical diagnostic movement detection system as claimed in claim 4, wherein: the non-contact type sealing bin door comprises a first sliding rail, a second sliding rail and a folding door panel, wherein the first sliding rail and the second sliding rail are respectively and longitudinally arranged on two sides of the outside of the inlet; the folding door plate comprises an upper folding plate and a lower folding plate, the upper end of the upper folding plate is arranged on the upper edge of the entrance through an upper hinge shaft, the lower end of the upper folding plate is hinged with the upper edge of the lower folding plate through a lower hinge shaft, and a lower edge mute sealing strip is arranged on the lower edge of the lower folding plate; a first electric roller and a second electric roller are respectively arranged on two sides of the lower end of the lower folded plate, the lower end of a first inhaul cable is wound on the first electric roller, and the upper end of the first inhaul cable is fixed at the upper end of the first slide rail; the lower end of a second inhaul cable is wound on the second electric roller, and the upper end of the second inhaul cable is fixed at the upper end of the second sliding rail; the first electric roller and the second electric roller are respectively arranged in the first sliding rail and the second sliding rail;
when the first electric roller and the second electric roller rotate in the positive direction, the first pull rope and the second pull rope can be respectively wound, the lower edge of the lower folding plate moves upwards along the first sliding rail and the second sliding rail, and the folding door plate is folded outwards and opened; when the first electric roller and the second electric roller rotate reversely, the lower edge of the lower folded plate can move downwards, so that the folding door plate extends and closes the entrance;
and when the folding door panel extends to seal the inlet, the folding door panel is in press fit sealing contact with the first silent sealing strip and the second silent sealing strip.
6. A remote medical diagnostic movement detection system as claimed in claim 5, wherein: the device also comprises a spray type disinfection device which is arranged at the inner side of the entrance of the patient; the spray type disinfection device comprises a rotary driving device, a spray rotating rod and an annular water retaining track, wherein the annular water retaining track is fixed on a lower bottom plate on the inner side of the patient inlet, a disinfection liquid outlet is formed in the lower bottom plate in the annular water retaining track, and the disinfection liquid outlet is communicated with a waste liquid collecting box through a disinfection liquid outlet pipe; the spraying rotating rod comprises a hollow rigid rod body, a disinfectant liquid conveying pipe, a disinfectant liquid conveying pump and a disinfectant liquid storage bin; the rigid rod body comprises an upper vertical rod, a middle inclined rod and a lower vertical rod which are mutually connected and communicated; the upper top plate is provided with a bearing seat mounting hole, a bearing seat is mounted in the bearing seat mounting hole, the upper upright rod penetrates through the bearing seat upwards and then is sleeved with a driven gear, the lower end of the upper upright rod is sequentially connected with a middle inclined rod and a lower upright rod, the lower end of the lower upright rod is closed and is provided with a rotating roller, and the rotating roller is arranged in the annular water retaining track; a driving motor is installed at the upper end of the upper top wall through a motor installation base, a driving gear is sleeved on a motor shaft of the driving motor, and the driving gear is meshed with a driven gear; the upper end of the upper upright rod is connected with a disinfectant liquid conveying pipe through a rotary joint, and the disinfectant liquid conveying pipe is communicated with a disinfectant liquid storage bin through a disinfectant liquid conveying pump; a plurality of atomization spraying holes are longitudinally formed in the lower vertical rod;
in an initial state, the driving motor is meshed with the driven gear through the driving gear, so that the rigid rod body rotates around the annular water retaining track and is arranged close to the side face of the patient inlet; after a patient enters the detection bin from the patient inlet, starting the disinfectant spraying pump to enable the disinfectant in the disinfectant storage bin to enter the rigid rod body along the disinfectant liquid conveying pipe; meanwhile, a driving motor is started, each atomization spraying hole which is longitudinally formed faces the central axis of the annular water retaining track all the time and sprays downwards in an inclined mode, and the spraying distance is smaller than the diameter length of the annular water retaining track; spraying and disinfecting the patient while rotating the rigid rod body around the annular water retaining track; the accumulated water accumulated in the annular water retaining track after being sprayed for a plurality of times can enter the waste liquid collecting box along the disinfection liquid outlet and the disinfection liquid outlet pipe.
7. A remote medical diagnostic movement detection system as claimed in claim 6, wherein: the adjustable lifting lighting camera device comprises a first magnetic suction sliding block, a movable handle, a second magnetic suction sliding block, a positive metal conductive sliding rail, a negative metal conductive sliding rail, a magnetic suction lifting frame and a lighting camera device; a first chute is longitudinally formed in one side of the middle partition board facing the space of a doctor, the cross section of the first chute is in a convex shape, a first magnetic suction sliding block is arranged in the first chute, and a moving handle is installed on the first magnetic suction sliding block; a second chute is longitudinally formed in one side, facing the space of a patient, of the middle partition plate, a positive metal conductive sliding rail and a negative metal conductive sliding rail are longitudinally arranged in parallel in the second chute, a magnetic suction lifting frame is clamped between the positive metal conductive sliding rail and the negative metal conductive sliding rail and comprises a second magnetic suction sliding block, a first metal conductive cross rod, a lighting camera device and a second metal conductive cross rod are sleeved outside the second magnetic suction sliding block, a first sliding rail fastener is arranged at the outer end of the first metal conductive cross rod, a second sliding rail fastener is arranged at the outer end of the second metal conductive cross rod, the first sliding rail fastener and the second sliding rail fastener are both in an omega shape or an n shape in cross section, and the positive metal conductive sliding rail and the negative metal conductive sliding rail are respectively clamped by the first sliding rail fastener and the second sliding rail fastener; the upper ends of the positive metal conductive slide rail and the negative metal conductive slide rail are respectively connected with the positive electrode and the negative electrode of the power supply; the positive pole of the power supply is connected with the positive pole of the lighting camera device through the positive metal conductive slide rail, the first slide rail buckle and the first metal conductive cross bar respectively, and the negative pole of the power supply is connected with the negative pole of the lighting camera device through the negative metal conductive slide rail, the second slide rail buckle and the second metal conductive cross bar respectively; a doctor can manually hold the movable handle from the space of the doctor, and then the first magnetic suction sliding block correspondingly sucks the second magnetic suction sliding block to move up and down, so that the lighting and camera shooting device moves up and down along the second sliding rail; the illumination camera device controls the functions of photographing and illumination through a remote controller, and the remote controller is placed in the space of a doctor;
a first pulley and a second pulley are respectively sleeved in the middle parts of the first metal conductive cross rod and the second metal conductive cross rod; the first pulley and the second pulley are in sliding contact with the inner wall of the second sliding rail respectively.
8. A remote medical diagnostic movement detection system as claimed in claim 7, wherein: a plurality of groups of movable universal wheels are arranged at the lower part of the lower bottom plate; the lower bottom plate is rectangular, and bottom plate blocking edges are respectively vertically arranged on the periphery of the lower bottom plate; a plurality of side plate insertion rods are respectively arranged on the inner sides of the blocking edges of the bottom plate, insertion holes are respectively formed in the bottoms of the side plates, and the side plates are vertically inserted and fixed on the side plate insertion rods through the insertion holes; the inner side of the blocking edge of the bottom plate is provided with a plurality of side plate abutting springs, and when the side plates are inserted on the side plate insertion rods, the side plate abutting springs can abut against the outer vertical surfaces of the side plates;
side seam sealing rubber strips are arranged between the adjacent side plates in an inclusion manner; and a supporting groove is transversely arranged at the upper part of each side plate, the periphery of the upper top plate is embedded into the supporting groove of each side plate, and a top seam sealing rubber strip with a T-shaped cross section is inserted between the upper top plate and each side plate.
9. A remote medical diagnostic movement detection system as claimed in claim 8, wherein: drawing and positioning steps are respectively arranged below the outer sides of the medical entrance and the patient entrance of the detection bin;
the drawing positioning type step comprises an outer step and an inner step, a connecting end of the outer step is provided with a plug board, a plug groove is formed in the side face of the lower base plate, the plug board can be inserted into the plug groove, and the outer step and the lower base plate are connected and fixed through a pin shaft which can be plugged and pulled and penetrates through the lower base plate and the plug board;
the other end of the outer step is provided with an inner step accommodating groove with an opening at the rear end, the inner step is inserted in the inner step accommodating groove, the cross section of the inner step is in an inverted L shape, the lower end of the inner step is provided with an inner step pulley, the lower part of the inner step accommodating groove is communicated with a ratchet plate accommodating groove with an opening at the lower end, a ratchet plate is arranged in the ratchet plate accommodating groove, and the lower part of the ratchet plate is fixed with a plurality of spines; a front guide rotating wheel and a rear guide rotating wheel are respectively arranged on the side wall of the ratchet plate accommodating groove through a front guide rotating shaft and a rear guide rotating shaft, the front ends of a front guide pull rope and a rear guide pull rope are respectively fixed on the spokes of the front guide rotating wheel and the rear guide rotating wheel, and the rear ends of the front guide pull rope and the rear guide pull rope are respectively connected with the front part and the rear part of the lower bottom surface of the inner step; the upper ends of the front ratchet plate driving rod and the rear ratchet plate driving rod are respectively fixed on the front guide rotating wheel and the rear guide rotating wheel, and the lower ends of the front ratchet plate driving rod and the rear ratchet plate driving rod are respectively hinged with a ratchet plate;
when the inner step is pulled outwards, the front guide pull rope and the rear guide pull rope can be pulled to drive the front guide rotating wheel and the rear guide rotating wheel to rotate, and the front ratchet plate driving rod and the rear ratchet plate driving rod respectively swing downwards around the front guide rotating shaft and the rear guide rotating shaft to drive the ratchet plate to move downwards; when the inner steps are completely pulled out, the thorns of the ratchet plate can be inserted into the ground to realize the position fixation of the detection bin.
CN202110428901.0A 2021-04-21 2021-04-21 Remote medical diagnosis mobile detection system Withdrawn CN113096829A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110428901.0A CN113096829A (en) 2021-04-21 2021-04-21 Remote medical diagnosis mobile detection system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110428901.0A CN113096829A (en) 2021-04-21 2021-04-21 Remote medical diagnosis mobile detection system

Publications (1)

Publication Number Publication Date
CN113096829A true CN113096829A (en) 2021-07-09

Family

ID=76679298

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110428901.0A Withdrawn CN113096829A (en) 2021-04-21 2021-04-21 Remote medical diagnosis mobile detection system

Country Status (1)

Country Link
CN (1) CN113096829A (en)

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