CN213911919U - Multi-cavity urethra washing groove type catheter - Google Patents

Multi-cavity urethra washing groove type catheter Download PDF

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CN213911919U
CN213911919U CN202022382352.1U CN202022382352U CN213911919U CN 213911919 U CN213911919 U CN 213911919U CN 202022382352 U CN202022382352 U CN 202022382352U CN 213911919 U CN213911919 U CN 213911919U
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range
catheter
urethra
channel
drainage groove
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徐丹枫
黄静怡
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Abstract

The utility model relates to a multi-cavity urethra washing slotted catheter, wherein one section of the outer wall of the channel of the catheter main body is set as a drainage groove range, and a plurality of drainage grooves which are arranged at intervals are axially arranged around the drainage groove range; a section of drainage groove-free range is arranged between the drainage groove range and the balloon, and the drainage groove-free range can be tightly attached to the urethra; a urethral flushing channel is axially arranged in the outer wall of the catheter main body channel, the urethral flushing channel forwards leads to the position without the range of the drainage grooves, an annular pipeline is embedded in the position without the range of the drainage grooves, and small holes are formed in the side wall of the annular pipeline corresponding to the positions of the drainage grooves; under the working state, the range of the drainage groove is partially positioned in the urethra and partially positioned outside the body. The utility model discloses be equipped with and supply the urethra to wash and the medicine fills the catheter of chamber way, when normal catheterization, still possess the function of wasing the urethra.

Description

Multi-cavity urethra washing groove type catheter
Technical Field
The utility model relates to a catheter especially relates to a multicavity urethra washing slot type catheter.
Background
The catheter is one of medical instruments with the highest clinical use frequency, and the most common catheter at present is a disposable silica gel Foley catheter which is divided into a double-cavity catheter and a three-cavity catheter. The double-cavity catheter consists of a cavity which is communicated with the bladder and the outside of the body and can drain urine, and a water sac communicated with the front end of the catheter and used for preventing the catheter from slipping.
In the process of clinical use, the catheters used at present have some problems to be solved urgently, in particular to patients needing long-term indwelling catheters such as urine retention and prostate cancer postoperation:
1) urethral mucosa injury caused by the catheter is difficult to avoid. The catheter body of the catheter used at present is of a regular cylindrical tubular structure and is tightly attached to the mucous membrane of the urethra, and although a silica gel material with less damage to the mucous membrane is adopted, the mucous membrane damage caused by long-term attachment is still difficult to avoid, so that the discomfort of a patient is caused.
2) Urinary secretion accumulation causes urethral irritation symptoms. Due to the urethral mucosa injury, the inflammatory secretion of the urethra is increased, the secretion is difficult to discharge under the state that the tubular catheter is placed, and the common symptoms of patients are urethral acid distension and even bladder and urinary tendon contracture stimulation, so that the urine leaks out of the catheter.
3) Urinary catheter placement is difficult when the urethra is tortuous. The catheters used at present are easy to slip or difficult to insert due to the thick head part and the lubricating effect of the catheter in the process of inserting, especially for some patients with urethral malformation or urethral stenosis.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a slotted, and be equipped with the catheter that can supply the urethra to wash and irritate medicine chamber way, in normal catheterization, still possess the function of wasing the urethra.
The utility model adopts the following technical proposal:
a multi-cavity urethra washing slotted catheter is characterized in that one section of the outer wall of a channel of a catheter main body is set to be a drainage groove range, and a plurality of drainage grooves which are arranged at intervals are formed in the periphery of the drainage groove range along the axial direction; a section of drainage groove-free range is arranged between the drainage groove range and the balloon, and the drainage groove-free range can be tightly attached to the urethra; a urethra flushing channel 3 is axially arranged in the outer wall of the catheter main body channel, the urethra flushing channel 3 is communicated forwards to the position without the range of the drainage grooves, an annular pipeline 6 is embedded in the position without the range of the drainage grooves, and small holes 5 are formed in the side wall of the annular pipeline 6 corresponding to the positions of the drainage grooves; under the working state, the range of the drainage groove is partially positioned in the urethra and partially positioned outside the body.
Preferably, a bladder irrigation channel 1 is further axially arranged inside the outer wall of the catheter body channel, and the front end of the bladder irrigation channel 1 is provided with a water outlet for communicating with the body.
Preferably, the outer wall of the catheter main body channel is further axially provided with a balloon injection channel 2, and the balloon injection channel is communicated with a balloon 7 positioned on the front side of the range without drainage grooves.
Preferably, the catheter head end is provided with a rounded leading front end 8.
Preferably, the drainage grooves are uniformly arranged around 8 drainage grooves with large openings, small bottoms and blunt edges.
Preferably, the length of the range of the drainage grooves is 230 mm.
Further, the length of the range without the drainage grooves is 30 mm.
Further, the length of the guide type front end 8 is 5mm, the outer diameter is gradually reduced from back to front, and the outer diameter of the foremost end is 3 mm.
Preferably, the multi-cavity urethra washing grooved type catheter is a disposable product.
Preferably, the annular pipeline is provided with a notch, and the notch is positioned at a position corresponding to the bladder irrigation channel 1, so that the bladder irrigation channel 1 avoids the position of the annular pipeline, and the wall of the bladder irrigation channel 1 is prevented from being too thin.
The beneficial effects of the utility model reside in that:
1) the setting of drainage groove can avoid hugging closely thereby the cylinder structure of mucous membrane reduces the oppression damage to the mucous membrane on the one hand, and on the other hand can make urethra secretion draw forth the urethra through the drainage groove naturally, can clean in the urethral orifice, reduces the uropoiesis stimulation symptom.
2) The urethra washing cavity is designed, the tail ends of the drainage grooves of the self-urethral catheter are respectively provided with an opening in the drainage groove, a patient who keeps the urethral catheter for a long time can be washed by the urethra, and the medicine can be used for perfusion and washing to perform treatments such as anti-inflammation, spasmolysis and the like when necessary; reduces the uncomfortable symptoms of the patient, increases the function of washing the urethra and solves the clinical problem faced by the urologist.
3) The thin and round guide type front end is arranged at the head end of the original catheter, so that the process of placing the catheter is smoother, and the catheter can accurately enter the urethra through a correct urethra opening.
Drawings
Figure 1 is a cross-sectional view of the multi-lumen urethral irrigation slotted catheter of the present invention.
Fig. 2 is a sectional view taken along line a-a in fig. 1.
Fig. 3 is a sectional view taken along line B-B in fig. 1.
Fig. 4 is a sectional view taken along line C-C in fig. 1.
In the figure, 1, a bladder irrigation channel, 2, a balloon injection channel, 3, a urethra irrigation channel, 5, a small hole, 6, a ring-shaped pipeline, 7, a balloon and 8, a guide type front end.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1-4, a multi-cavity urethra washing slotted catheter is provided, wherein a section of the outer wall of a channel of a catheter main body is arranged in a drainage groove range, and a plurality of drainage grooves which are arranged at intervals are axially arranged around the drainage groove range; a section of drainage groove-free range is arranged between the drainage groove range and the balloon, and the drainage groove-free range can be tightly attached to the urethra; a urethra flushing channel 3 is axially arranged in the outer wall of the catheter main body channel, the urethra flushing channel 3 is communicated forwards to the position without the range of the drainage grooves, an annular pipeline 6 is embedded in the position without the range of the drainage grooves, and small holes 5 are formed in the side wall of the annular pipeline 6 corresponding to the positions of the drainage grooves; under the working state, the range of the drainage groove is partially positioned in the urethra and partially positioned outside the body.
In this embodiment, referring to fig. 1-4, a bladder irrigation channel 1 is further axially arranged inside the outer wall of the catheter body channel, and the front end of the bladder irrigation channel 1 is provided with a water outlet for communicating with the body.
In this embodiment, referring to fig. 1-2, a balloon injection channel 2 is also provided axially outside the outer wall of the catheter body channel, and communicates with a balloon 7 located at the front side of the non-drainage groove area.
In this embodiment, see fig. 1, the catheter tip is provided with a rounded leading front end 8.
In this embodiment, referring to FIGS. 3-4, the extent of the channels is uniform around the 8-mouth large-bottomed blunt-edged channels.
In this embodiment, referring to FIG. 1, the extent of the drainage slots is 230mm in length.
In this embodiment, referring to FIG. 1, the length of the non-drainage channel region is 30 mm.
In this embodiment, with continued reference to FIG. 1, the leading end 8 has a length of 5mm, an outer diameter that decreases progressively from the rear to the front, and a forwardmost outer diameter of 3 mm.
In this embodiment, the multi-lumen urethral irrigation slotted catheter is a single use product.
In this embodiment, referring to fig. 4, the annular channel has a gap, and the gap is located at a position corresponding to the bladder irrigation channel 1, so that the bladder irrigation channel 1 avoids the position of the annular channel, and the wall of the bladder irrigation channel 1 is prevented from being too thin.
Specifically, the catheter is made by the silica gel material, and the main part is cylindric pipeline, diameter 8mm, lumen diameter 3.5mm, except the lumen that is used for the drainage urine, establishes 3 lumens again in addition for fixed sacculus chamber diameter 0.8mm, the bladder is washed and the urethra is washed the diameter and is 1.2mm, 3 lumens are being respectively at the chamber way opening that the tail end branch of catheter can switch on.
According to the 30mm position at the tail end of the saccule 7, 8 drainage grooves which are uniformly distributed around the tube cavity are arranged. The shape of the drainage groove has a big mouth and a small bottom, the mouth is about 1.6mm, the deepest part of the drainage groove is 0.7mm, the length of the drainage groove is 230mm, and the length of the drainage groove is mainly set according to the length of the urethra. The urethra washing cavity is opened at the front end of each drainage groove through the annular cavity 6 at the front end of the drainage groove, and is aligned to each drainage groove, so that the urethra can be washed, and the diameter of the opening of the small hole 5 is about 0.3 mm.
The catheter front end is equipped with guide type front end 8, and length is about 5mm, and minimum diameter 3mm links up to the catheter main part evenly.
To sum up, the utility model discloses the improvement of making on prior art's basis, the improvement part sums up to:
for 1) drainage groove: on the basis of the main part of the original cylindrical tubular catheter, the drainage grooves are evenly formed around 8 openings, the big bottom and the blunt edge, so that the compression injury to the mucous membrane due to the cylindrical structure of the mucous membrane can be reduced, the urethral orifice can be naturally led out by urethral secretions through the drainage grooves on the other hand, the urethral orifice can be cleaned, and the urinary tract stimulation symptoms can be reduced.
For 2) urethral irrigation lines: the urethra washing cavity parallel to the bladder washing cavity is designed, the tail ends of the drainage grooves of the self-catheter are respectively opened in the drainage grooves, a patient who keeps the catheter for a long time can be washed of the urethra, and the medicine can be used for perfusion and washing to perform treatments such as anti-inflammation, spasmolysis and the like when necessary.
For 3) catheter-guided front end: the thin and round guide type front end is arranged at the head end of the original catheter, so that the process of placing the catheter is smoother, and the catheter can accurately enter the urethra through a correct urethra opening.
The above are preferred embodiments of the present invention, and those skilled in the art can make various changes or improvements on the above embodiments without departing from the general concept of the present invention, and these changes or improvements should fall within the scope of the present invention.

Claims (10)

1. A multi-cavity urethra washing grooved catheter is characterized in that:
one section of the outer wall of the catheter main body channel is set to be in the range of the drainage groove, and a plurality of drainage grooves which are arranged at intervals are formed in the periphery of the range of the drainage groove along the axial direction;
a section of drainage groove-free range is arranged between the drainage groove range and the balloon, and the drainage groove-free range can be tightly attached to the urethra;
a urethra flushing channel (3) is axially arranged in the outer wall of the catheter main body channel, the urethra flushing channel (3) is forwardly communicated to the position without the drainage groove range, an annular pipeline (6) is buried in the position without the drainage groove range, and small holes (5) are formed in the side wall of the annular pipeline (6) corresponding to the positions of the drainage grooves;
under the working state, the range of the drainage groove is partially positioned in the urethra and partially positioned outside the body.
2. A multi-lumen urethral irrigation slotted catheter according to claim 1 wherein: a bladder irrigation channel (1) is further axially arranged in the outer wall of the catheter body channel, and a water outlet for communicating with the inside of the body is formed in the front end of the bladder irrigation channel (1).
3. A multi-lumen urethral irrigation slotted catheter according to claim 1 wherein: the outer part of the outer wall of the catheter main body channel is also provided with a balloon injection channel (2) along the axial direction, and the balloon injection channel is communicated with a balloon (7) positioned at the front side of the range without drainage grooves.
4. A multi-lumen urethral irrigation slotted catheter according to claim 1 wherein: the head end of the catheter is provided with a blunt leading front end (8).
5. A multi-lumen urethral irrigation slotted catheter according to claim 1 wherein: the drainage groove scope evenly surrounds 8 opening big end small and blunt edge's drainage groove.
6. A multi-lumen urethral irrigation slotted catheter according to claim 1 wherein: the length of the range of the drainage grooves is 230 mm.
7. A multi-lumen urethral irrigation slotted catheter according to claim 6 wherein: the length of the range without the drainage grooves is 30 mm.
8. A multi-lumen urethral irrigation slotted catheter according to claim 4 wherein: the length of guide type front end (8) is 5mm, and the external diameter reduces from back to front gradually, and the external diameter of foremost end is 3 mm.
9. A multi-lumen urethral irrigation slotted catheter according to claim 1 wherein: the multi-cavity urethra washing grooved type catheter is a disposable product.
10. A multi-lumen urethral irrigation slotted catheter according to claim 2 wherein: the annular pipeline is provided with a notch, and the notch is positioned at a position corresponding to the bladder irrigation channel (1), so that the bladder irrigation channel (1) avoids the position of the annular pipeline, and the wall of the bladder irrigation channel (1) is prevented from being too thin.
CN202022382352.1U 2020-10-23 2020-10-23 Multi-cavity urethra washing groove type catheter Active CN213911919U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022382352.1U CN213911919U (en) 2020-10-23 2020-10-23 Multi-cavity urethra washing groove type catheter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022382352.1U CN213911919U (en) 2020-10-23 2020-10-23 Multi-cavity urethra washing groove type catheter

Publications (1)

Publication Number Publication Date
CN213911919U true CN213911919U (en) 2021-08-10

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ID=77224613

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022382352.1U Active CN213911919U (en) 2020-10-23 2020-10-23 Multi-cavity urethra washing groove type catheter

Country Status (1)

Country Link
CN (1) CN213911919U (en)

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