CN202815849U - Operating room integration system capable of stopping screen picture - Google Patents

Operating room integration system capable of stopping screen picture Download PDF

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Publication number
CN202815849U
CN202815849U CN 201220505365 CN201220505365U CN202815849U CN 202815849 U CN202815849 U CN 202815849U CN 201220505365 CN201220505365 CN 201220505365 CN 201220505365 U CN201220505365 U CN 201220505365U CN 202815849 U CN202815849 U CN 202815849U
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China
Prior art keywords
port
connectivity port
operating room
integration system
image
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Expired - Fee Related
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CN 201220505365
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Chinese (zh)
Inventor
蓝启维
张建中
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Kang Yuan Medical Devices Ltd Co
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Kang Yuan Medical Devices Ltd Co
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Priority to CN 201220505365 priority Critical patent/CN202815849U/en
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Publication of CN202815849U publication Critical patent/CN202815849U/en
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Abstract

The utility model discloses an operating room integration system capable of stopping a screen picture. The operating room integration system comprises an image processing module, a controller, a decoder, an encoder, at least one input port, at least one output port and an operating interface. The image processing module is provided with a frame buffer, wherein each input port is connected with at least one image source, the at least one output port is connected with at least one displayer, an image signal produced by the at least one image source is respectively input by the at least one input port, decoded by the decoder, image signal processed by the image processing module, encoded by the encoder, and output by the at least one output port to the at least one displayer. A user is capable of giving orders by operating the operating interface so as to enable the image signal to be temporarily stored in the frame buffer and to display a still image on the at least one displayer.

Description

Operating room integration system that can static screen-picture
Technical field
The utility model is about a kind of Medical Devices integration system, particularly about a kind of operating room integration system that can static screen-picture.
Background technology
In recent years, lifting based on scientific-technical progress and quality of medical care usefulness, many medical institutes application message science and technology manage, particularly see through good each medical relevant device of operating room integration system (Operating Room Integration System) management operating room, operate on the safety of room utilization ratio and operation patients with lifting.By modern operating room integration system operating room equipment is combined, can make doctor and medical personnel by the operation interface of conformability, manage simultaneously and switch the signal source of different medical equipment in the operating room, with in response to situation fast changing in the operating room, and avoid operating the time waste that the Medical Devices of each separate sources cause.
The utility model content
Yet, when operating room is performed the operation, often image frame need to be suspended so that the healthcare givers inspects, affirmation, interpretation or discussion, existing mode of operation is to operate to individual other medical imaging device end, except operating upper inconvenience, even the medical imaging device that has does not have the function that picture suspends.
Edge this, a purpose of the present utility model namely provides a kind of operating room integration system that can static screen-picture, comprise: an image processing module, one controller, one code translator, one scrambler, at least one input port port, at least one output port, one operation interface, this image processing module has one frame buffer, wherein this input port is connected with at least one image source, this at least one output port is connected with at least one display, the image signal that this at least one image source produces by this at least one input port input by by this code translator, this image processing module and this scrambler are deciphered respectively, behind image signal processing and the coding, export this at least one display to by this at least one output port, a user can send instruction via this operation interface of operation and make this image signal be temporary in this frame buffer and still frame is shown in this at least one display.
Preferably, wherein this operating room integration system more comprises having a built-in screen, and this image signal is temporary in this frame buffer and still frame is shown in this built-in screen.
Preferably, wherein this input port is DVI connectivity port, VGA connectivity port, S terminal connectivity port, aberration terminal connectivity port, CVBS connectivity port, SDI connectivity port, HDMI connectivity port or Display Port connectivity port.
Preferably, wherein this output port is DVI connectivity port, VGA connectivity port, S terminal connectivity port, aberration terminal connectivity port, CVBS connectivity port, SDI connectivity port, HDMI connectivity port or Display Port connectivity port.
Preferably, wherein this image source is the medical imaging device.
Preferably, wherein this operation interface is the membrane pushbutton panel.
The technological means that adopts via the utility model, can be by the button on the pressing operation interface, image frame suspended so that the healthcare givers inspects, affirmation, interpretation or discussion, this kind operator scheme, can allow the healthcare givers need not to be operated by individual other image source end, and by the unified mode of operation of controlling the different images source, picture being suspended, have convenience and the practicality of height.
Description of drawings
Fig. 1 shows the calcspar of the utility model operating room integration system;
Fig. 2 shows the stereographic map of the utility model operating room integration system;
Fig. 3 shows the operation steps of the utility model operating room integration system;
Fig. 4 shows the operation steps of the utility model operating room integration system still frame.
Wherein, description of reference numerals is as follows:
100 operating room integration systems
1 image processing module
10 frame buffers
11,12,13,14 input ports
15,16,17 output ports
2 controllers
3 code translators
4 scramblers
5 operation interfaces
51 power keys
52,53,54,55 input source keys
56,57,58 output source keys
59 dead keys
6 built-in screens
71 first image sources
72 second image sources
73 the 3rd image sources
74 the 4th image sources
81 first displays
82 second displays
83 the 3rd displays
The S11 power-on
S12 selects input source
The S13 image display is in built-in screen
S14 selects display
The S15 image display is on display
S21 presses dead key
The S22 image signal is temporary in frame buffer
S23 shows that still frame is in display
Embodiment
With reference to figure 1, it shows the calcspar of the utility model operating room integration system.The utility model discloses a kind of operating room integration system 100, and it mainly comprises by an image processing module 1, a controller 2, a code translator 3, a scrambler 4, an operation interface 5, a built-in screen 6 and being formed.The user is by this operation interface 2 of operation, changeable different image source, and be shown on the external connection display apparatus of appointment, and can be when needs be inspected the static image picture of specific image source, by the button on the pressing operation interface, image frame suspended so that the healthcare givers inspects, affirmation, interpretation or discussion, this kind operator scheme, can allow the healthcare givers need not to be operated by individual other image source end, and by the unified mode of operation of controlling the different images source, picture being suspended, have convenience and the practicality of height.
Please refer to Fig. 1 to 2, it shows respectively system block diagrams and the stereographic map of the utility model operating room integration system.Shown in embodiment among the figure, operating room integration system 100 comprises: an image processing module 1, a controller 2, a code translator 3, a scrambler 4, an operation interface 5 (present embodiment is the membrane pushbutton panel), a built-in screen 6 (present embodiment is the lcd screen that is embedded in panel), image processing module 1 comprises the assembly (not shown) of being responsible for mapping control and Scaler control, and has at least the temporary frame buffer 10 (frame buffer) of a responsible image signal.
Connection aspect, outside about operating room integration system 100, it is provided with four input ports 11,12,13,14 and be provided with three output ports 15,16,17, and these input ports and output port can be DVI connectivity port, VGA connectivity port, S terminal connectivity port, aberration terminal connectivity port, CVBS connectivity port, SDI connectivity port, HDMI connectivity port or Display Port connectivity port.In the present embodiment, input port 11,12,13,14 is connected with respectively the first image source 71, the second image source 72, the 3rd image source 73, the 4th image source 74, and those image sources can be any medical imaging devices, such as introscope, ultrasonic instrument etc. Output port 15,16,17 is connected with one first display 81, a second display 82 and one the 3rd display 83, and these displays are preferably lcd screen.
The image signal that the first image source 71, the second image source 72, the 3rd image source 73, the 4th image source 74 capture exports operating room integration system 100 to, via input port 11,12,13,14 inputs by by this code translator 3, this image processing module 1 and this scrambler 4 is deciphered respectively, image signal is processed and coding after, export the first display 81, second display 82 and the 3rd display 83 to by output port 15,16,17 again.One user can send instruction via this operation interface 5 of operation and make this image signal be temporary in this frame buffer 10 and still frame is shown in the first display 81, second display 82 and the 3rd display 83.The outward appearance of operating room integration system 100 can be consulted as shown in Figure 2, and operation interface 2 is the membrane pushbutton panel, has a power key 51, a plurality of input source key 52,53,54,55, a plurality of output source key 56,57,58, one dead key 59 and built-in screen 6.
With reference to figure 3, it shows the operation steps of the utility model operating room integration system.The wiring of each image source, display can be connected respectively before use corresponding input port and output port.Step S11: power-on.Namely press power key 51.Step S12: select input source.This moment can press these a plurality of input source keys 52,53,54,55 one of them, for example press input source key 52, namely select the first image source 71.Step S13: image display is in built-in screen.After confirming to select the first image source 71, the image of the first image source 71 namely can be shown in built-in screen 6.Step S14: select display.Then press output source key 56,57,58 one of them, for example press output source key 56, select image output to the first display 81.Step S15: image display is on display.After finishing above-mentioned action, image namely can be shown on the first display 81.
And in the time need to inspecting the static image picture of specific image source, by the button on the pressing operation interface, image frame suspended so that the healthcare givers inspects, affirmation, interpretation or discussion.Its operation steps can be consulted as shown in Figure 4.Step S21: press dead key 59.Step S22: image signal is temporary in frame buffer 10.The start of its internal signal control is as described in the front content.Step S23: show that still frame is in display.Behind the complete operation, can make the still frame of specific image source (for example the first image source 71) be shown in specific display (for example the first display 81).By this kind operator scheme, can allow the healthcare givers need not to be operated by individual other image source end, and by the unified mode of operation of controlling the different images source, picture being suspended, have convenience and the practicality of height.
As seen from the above embodiment, value on can the true tool industry of operating room integration system of static screen-picture provided by the utility model, but above narration only is preferred embodiment explanation of the present utility model, all those skilled in the art work as can do according to above-mentioned explanation other all improvement, but these changes still belong in spirit of the present utility model and the following claim that defines.

Claims (7)

  1. One kind can static screen-picture the operating room integration system, it is characterized in that, comprise: an image processing module, one controller, one code translator, one scrambler, at least one input port, at least one output port, one operation interface, this image processing module has one frame buffer, wherein this input port is connected with at least one image source, this at least one output port is connected with at least one display, the image signal that this at least one image source produces by this at least one input port input by by this code translator, this image processing module and this scrambler are deciphered respectively, behind image signal processing and the coding, export this at least one display to by this at least one output port, a user can send instruction via this operation interface of operation and make this image signal be temporary in this frame buffer and still frame is shown in this at least one display.
  2. 2. operating room integration system as claimed in claim 1 is characterized in that, more comprises a built-in screen.
  3. 3. operating room integration system as claimed in claim 2 is characterized in that, this image signal is temporary in this frame buffer and still frame is shown in this built-in screen.
  4. 4. operating room integration system as claimed in claim 1, it is characterized in that this input port is DVI connectivity port, VGA connectivity port, S terminal connectivity port, aberration terminal connectivity port, CVBS connectivity port, SDI connectivity port, HDMI connectivity port or Display Port connectivity port.
  5. 5. operating room integration system as claimed in claim 1, it is characterized in that this output port is DVI connectivity port, VGA connectivity port, S terminal connectivity port or aberration terminal connectivity port, CVBS connectivity port, SDI connectivity port, HDMI connectivity port or Display Port connectivity port.
  6. 6. operating room integration system as claimed in claim 1 is characterized in that, this image source is the medical imaging device.
  7. 7. operating room integration system as claimed in claim 1 is characterized in that, this operation interface is the membrane pushbutton panel.
CN 201220505365 2012-09-29 2012-09-29 Operating room integration system capable of stopping screen picture Expired - Fee Related CN202815849U (en)

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Application Number Priority Date Filing Date Title
CN 201220505365 CN202815849U (en) 2012-09-29 2012-09-29 Operating room integration system capable of stopping screen picture

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Application Number Priority Date Filing Date Title
CN 201220505365 CN202815849U (en) 2012-09-29 2012-09-29 Operating room integration system capable of stopping screen picture

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104717436A (en) * 2015-02-09 2015-06-17 深圳市嘉利达专显科技有限公司 Endoscopic display driving system for operating room and method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104717436A (en) * 2015-02-09 2015-06-17 深圳市嘉利达专显科技有限公司 Endoscopic display driving system for operating room and method thereof

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130320

Termination date: 20170929

CF01 Termination of patent right due to non-payment of annual fee