CN210019436U - Micro-ecological collection instrument for renal pelvis urine - Google Patents

Micro-ecological collection instrument for renal pelvis urine Download PDF

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CN210019436U
CN210019436U CN201920469366.1U CN201920469366U CN210019436U CN 210019436 U CN210019436 U CN 210019436U CN 201920469366 U CN201920469366 U CN 201920469366U CN 210019436 U CN210019436 U CN 210019436U
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inner catheter
urine
catheter
control panel
intelligent control
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CN201920469366.1U
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柳丰萍
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Jiangnan University
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Jiangnan University
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Abstract

The utility model discloses a little ecological appearance of gathering of renal pelvis urine, including outer pipe, the urine holds ware, display and intelligent control panel install on outer pipe, outer pipe afterbody fixed mounting has two urine to hold ware, the outer pipe end is equipped with the aspirator, the inner catheter is through connecting the aspirator intercommunication and going into the urine and holding ware, well pipe top is equipped with the inner catheter export, still install the camera device on the inner catheter export, well pipe promotes through well inner catheter impeller control and derives from the middle catheter export, the inner catheter promotes through well inner catheter impeller control and derives from the inner catheter export, the inner catheter passes through aspirator control imbibition sample. In this way, the utility model discloses can accurately gather the urine sample that comes from renal pelvis, at the acquisition-process, can prevent that renal pelvis urine sample from receiving the pollution of bladder urine.

Description

Micro-ecological collection instrument for renal pelvis urine
Technical Field
The utility model relates to a medical collector field especially relates to a little ecological collection appearance of renal pelvis urine.
Background
In recent years, the role of micro-ecology in human health has been receiving more and more attention. After the study on the microecology of the intestinal tract, the oral cavity and other parts, the study on the human microecology in 2012 has found a new discovery, namely that the urinary bladder, which is a human organ that is considered to be sterile for a long time, also has microecology. In recent years, a series of studies have shown that changes in the microecological structure of the bladder are associated with the development of a variety of urological disorders, such as bladder cancer, prostate cancer, vaginitis, and urinary incontinence.
After understanding the relationship of bladder microbiology to human disease, researchers are further thinking about the source of bladder microbiology. It is difficult to tell that it is only the bacteria that go backwards from the urethral orifice, and since it has been successively reported in recent years that blood also has microecology, it is possible that the bladder microecology is not only the bacteria that come from going backwards from the urethral orifice, but also the bacteria that go downwards from the blood to the kidney and then enter the bladder. In order to prove whether the urine of the kidney has microecology, a special collection instrument for the urine microecology specimen of the renal pelvis is required to be practical. It is desirable to both collect urine samples from the renal pelvis only and to prevent contamination of the renal pelvis urine samples from microorganisms in the bladder and urethra.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model discloses a technical scheme be: the micro-ecological collection instrument for the renal pelvis urine comprises an outer catheter, two urine containers, a display and an intelligent control panel, wherein the display and the intelligent control panel are connected onto the outer catheter, the tail parts of the outer catheter are fixedly provided with the two urine containers, the bottom ends of the urine containers are respectively provided with a pressure sensor, the pressure sensors are connected with the intelligent control panel, the urine containers are also connected with a negative pressure suction device, the tail ends of the outer catheter are provided with an aspirator, two middle catheters are arranged inside the outer catheter, inner catheters are arranged inside the middle catheters, the tail ends of the middle catheters and the inner catheters are connected onto a middle inner catheter pusher, the intelligent control panel is connected with and controls the middle inner catheter pusher, the tail end pipe orifice of the inner catheter is connected with the inlet of the aspirator, the outlet of the aspirator is connected with the urine containers, the utility model discloses a urine container, including the urine container, the inner catheter is connected the aspirator, the inner catheter passes through to be connected the aspirator links into in the urine container, intelligent control panel connection control the aspirator, well pipe top is equipped with the inner catheter export, still install the camera device on the inner catheter export, the camera device with connect through the AD converter between the display, the display is connected on the intelligent control panel, outer pipe top with all seted up well pipe export on the relative position of inner catheter export, well pipe passes through well inner catheter impeller control promotes the follow well pipe export is derived, the inner catheter passes through well inner catheter impeller control promotes the follow the inner catheter export is derived, the inner catheter passes through aspirator control imbibition sample.
In a preferred embodiment of the present invention, the pressure sensor is connected to the intelligent control panel to display a pressure value, and the pressure sensor is controlled by the intelligent control panel to stop pumping when receiving a pressure of 1.5mL of liquid, and the pressure sensor is connected to an alarm.
In a preferred embodiment of the present invention, the intelligent control panel is provided with a middle catheter control button, an inner catheter control button, a suction control button, a negative pressure suction control button and an alarm display lamp.
In a preferred embodiment of the present invention, the inner duct outlet and the outer duct top nozzle are both triangular-cone-shaped portions, the inner duct outlet and the triangular-cone-shaped portions on the outer duct top nozzle are formed by two side-opening type movable door-sealing bodies, the side-opening type movable door-sealing bodies are all connected to the intelligent control panel, the intelligent control panel controls the side-opening type movable door-sealing bodies to move inwards and close oppositely the inner duct outlet and the outer duct top nozzle form closed, the intelligent control panel controls the side-opening type movable door-sealing bodies to move outwards relatively the inner duct outlet and the outer duct top nozzle form open.
In a preferred embodiment of the present invention, the length of the outer catheter is 70-90 cm.
In a preferred embodiment of the present invention, the inner conduit outlet and the middle conduit outlet are relatively positioned on a straight line.
The utility model has the advantages that: the utility model discloses can accurately gather the urine sample that derives from renal pelvis, and can intelligent control and visual operation, if realize multiple operations such as pipe push control, interior pipe push control, suction, negative pressure suction control and warning through intelligent control panel, interior pipe export and outer pipe top mouth of pipe are two sliding door structures, move to two sliding door structure both sides and open when opening, at the acquisition process, can prevent that renal pelvis urine sample from receiving the pollution of bladder urine.
Drawings
FIG. 1 is a schematic structural view of a preferred embodiment of the micro-ecological collecting instrument for pyelonephrine urine of the present invention;
fig. 2 is a circuit structure diagram of a preferred embodiment of the micro-ecological collecting instrument for renal pelvis urine of the present invention.
The parts in the drawings are numbered as follows: 1. An outer catheter; 2. A urine receptacle; 3. A display; 4. an intelligent control panel; 5. A pressure sensor; 6. A negative pressure suction device; 7. An aspirator; 8. A middle catheter; 9. An inner conduit; 10. A middle inner catheter pusher; 11. An inner conduit outlet; 12. A camera device; 13. An A/D converter; 14. A middle conduit outlet; 15. An alarm; 16. a middle catheter control button; 17. An inner catheter control button; 18. A suction control button; 19. A negative pressure suction control button; 20. alarm display lamp.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below, and it should be apparent that the described embodiments are only some embodiments of the present invention, but not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1 and 2, an embodiment of the present invention includes:
a micro-ecological collection instrument for pyeloid urine comprises an outer catheter 1, urine containers 2, a display 3 and an intelligent control panel 4, wherein the display 3 and the intelligent control panel 4 are connected onto the outer catheter 1, the tail parts of the outer catheter 1 are fixedly provided with two urine containers 2, the bottom ends of the urine containers 2 are respectively provided with a pressure sensor 5, the pressure sensors 5 are connected with the intelligent control panel 4, the urine containers 2 are also connected with a negative pressure suction device 6, the tail end of the outer catheter 1 is provided with a suction device 7, two middle catheters 8 are arranged inside the outer catheter 1, inner catheters 9 are arranged inside the middle catheters 8, the middle catheters 9 and the tail ends of the inner catheters 8 are connected onto a middle catheter pusher 10, the intelligent control panel 4 is connected and controls the middle catheter pusher 10, and the pipe orifices of the inner catheters 9 are connected with the inlets of the suction device 7, the outlet of the aspirator 7 is connected with the urine container 2, the inner catheter 9 is communicated into the urine container 2 by connecting the aspirator 7, the intelligent control panel 4 is connected with and controls the aspirator 7, the top end of the middle catheter 9 is provided with an inner catheter outlet 11, the inner catheter outlet 11 is further provided with a camera device 12, the camera device 12 is connected with the display 3 by an A/D converter 13, the display 3 is connected with the intelligent control panel 4, the positions of the top end of the outer catheter 1 opposite to the inner catheter outlet 11 are both provided with a middle catheter outlet 14, the middle catheter 8 is controlled by the middle catheter pusher 10 to be pushed and led out from the middle catheter outlet 14, the inner catheter 9 is controlled by the middle catheter pusher 10 to be pushed and led out from the inner catheter outlet 11, the inner catheter 9 controls the pipetting sampling through the aspirator 7.
In addition, pressure sensor 5 is through connecting intelligent control panel 4 shows the pressure value just pressure sensor 5 passes through when receiving the pressure of 1.5mL liquid intelligent control panel 4 system aspirator 7 stops the drawing of liquid, a pressure sensor 5 alarm 15.
In addition, the intelligent control panel 4 is provided with a middle catheter control button 16, an inner catheter control button 17, a suction control button 18, a negative pressure suction control button 19 and an alarm display lamp 20.
In addition, the inner guide pipe outlet 11 and the top pipe orifice of the outer guide pipe 1 are triangular conical parts, the inner guide pipe outlet 11 and the triangular conical part on the top pipe orifice of the outer guide pipe 1 are formed by two side-opening movable door sealing bodies, the side-opening movable door sealing bodies are connected with the intelligent control panel 4, the intelligent control panel 4 controls the side-opening movable door sealing bodies to move inwards in opposite directions and close the inner guide pipe outlet 11 and the top pipe orifice of the outer guide pipe 1 to form a closed state, and the intelligent control panel 4 controls the side-opening movable door sealing bodies to move outwards in opposite directions to open the inner guide pipe outlet 11 and the top pipe orifice of the outer guide pipe 1.
In addition, the outer catheter 1 has a length of 70-90 cm.
In addition, the inner conduit 9, the inner conduit outlet 11 and the intermediate conduit outlet 14 are relatively positioned in a straight line.
The working principle of the utility model is that this collector includes outer pipe 1, well pipe 8, inner catheter 9, urine container 2, camera device 12, AD converter 13, display 3, intelligent control panel 4, about 70-90cm of outer pipe 1, satisfy the male, the collection of women's renal pelvis urine sample, the both sides of 1 head end of outer pipe have a plurality of well pipe export 14, gather the disinfection urethral orifice of operating personnel before the sample, then insert outer pipe 1 urethra, outer pipe 1 gets into behind the bladder, operating personnel presses well pipe control button 16 on the intelligent control panel 4, well pipe 8 passes through well pipe export 14 entering bladder through pressing intelligent control panel 4 control.
After the middle catheter 8 enters the bladder, an operator can shoot the internal structure of the bladder, such as the outlet of a ureter, through a camera device 12 on an inner catheter outlet 11 at the front end of the middle catheter 8, a video signal can be converted into a video signal through an A/D converter 13 and is conducted to a display 3, when the operator observes the outlet of the ureter, the middle catheter 8 is pushed to enter the ureter, when the operator observes that the middle catheter 8 enters the renal pelvis, the operator can press an inner catheter control button 17 on the intelligent control panel 4 to enable the inner catheter 9 to pass through the inner catheter outlet 11 to reach the renal pelvis, the operator presses a suction control button 18 on the intelligent control panel 4 to collect urine, the middle catheter control button 16, the inner catheter control button 17, the suction control button 18, a negative pressure suction control button 19 and an alarm display lamp 20 are arranged on the intelligent control panel 4, can realize multiple operation, interior pipe export 11 and the 1 top mouth of pipe of outer pipe all are three toper portion, interior pipe export 11 and the 1 top mouth of pipe of outer pipe on the triangle toper portion be two sliding door structures of opening, interior pipe export 11 and the 1 top mouth of pipe of outer pipe are opened to both sides removal through two sliding door structures of opening, during pipe control button 16, interior pipe control button 17 were pressed to operating personnel on intelligent control panel 4, the edge of three toper portion can squint to this kind of sliding door's structure.
When gathering 1.5mL urine, the collector can pass through alarm 15 autoalarm, because there is pressure sensor 5 urine receptacle 2 bottom, pressure sensor 5 can conduct pressure information to intelligent alarm system when feeling the pressure of 1.5mL liquid, make warning display lamp 20 scintillation, show that enough urine has been gathered, can inhale urine receptacle 2 through inner catheter 9 automatically after the urine is gathered, because there is negative pressure suction device 6 urine receptacle 2 bottom, operating personnel takes out urine receptacle 2 from outer catheter 1, then can pour into the urine sample into the test tube and be used for the experiment.
The above only is the embodiment of the present invention, not limiting the patent scope of the present invention, all of which utilize the equivalent structure or equivalent flow transformation made by the content of the specification of the present invention, or directly or indirectly applied to other related technical fields, all included in the same way in the patent protection scope of the present invention.

Claims (6)

1. A micro-ecological collection instrument for pyeloid urine comprises an outer catheter, two urine containers, a display and an intelligent control panel, and is characterized in that the display and the intelligent control panel are connected onto the outer catheter, the tail parts of the outer catheter are fixedly provided with the two urine containers, the bottom ends of the urine containers are respectively provided with a pressure sensor, the pressure sensors are connected with the intelligent control panel, the urine containers are also connected with a negative pressure suction device, the tail ends of the outer catheter are provided with an aspirator, two middle catheters are arranged inside the outer catheter, inner catheters are arranged inside the middle catheters, the tail ends of the middle catheters and the inner catheters are connected onto a middle inner catheter pusher, the intelligent control panel is connected with the middle inner catheter pusher, the tail end pipe orifice of the inner catheter is connected with the inlet of the aspirator, the outlet of the aspirator is connected with the urine containers, the utility model discloses a urine container, including the urine container, the inner catheter is connected the aspirator, the inner catheter passes through to be connected the aspirator links into in the urine container, intelligent control panel connection control the aspirator, well pipe top is equipped with the inner catheter export, still install the camera device on the inner catheter export, the camera device with connect through the AD converter between the display, the display is connected on the intelligent control panel, outer pipe top with all seted up well pipe export on the relative position of inner catheter export, well pipe passes through well inner catheter impeller control promotes the follow well pipe export is derived, the inner catheter passes through well inner catheter impeller control promotes the follow the inner catheter export is derived, the inner catheter passes through aspirator control imbibition sample.
2. The micro-ecological collection instrument for pyelonephrine urine according to claim 1, wherein the pressure sensor displays a pressure value by connecting with the intelligent control panel and controls the aspirator to stop drawing liquid by the intelligent control panel when the pressure sensor receives a pressure of 1.5mL of liquid, and the pressure sensor is connected with an alarm.
3. The micro-ecological collection instrument for pyelonephrine urine according to claim 1, wherein the intelligent control panel is provided with a middle catheter control button, an inner catheter control button, a suction control button, a negative pressure suction control button and an alarm display lamp.
4. The micro-ecological collection instrument for pyelonephrine urine as claimed in claim 1, wherein the inner catheter outlet and the top nozzle of the outer catheter are both triangular conical parts, the triangular conical parts on the inner catheter outlet and the top nozzle of the outer catheter are both composed of two side-opening movable door-sealing bodies, the side-opening movable door-sealing bodies are both connected with the intelligent control panel, the intelligent control panel controls the side-opening movable door-sealing bodies to move inwards in opposite directions and close the inner catheter outlet and the top nozzle of the outer catheter to form a closed state, and the intelligent control panel controls the side-opening movable door-sealing bodies to move outwards in opposite directions to open the inner catheter outlet and the top nozzle of the outer catheter.
5. The micro-ecological harvesting apparatus for pyelonephrine urine according to claim 1, wherein the length of the outer catheter is 70-90 cm.
6. The micro-ecological harvesting apparatus for pyelonephrine urine according to claim 1, wherein the inner catheter, the inner catheter outlet and the middle catheter outlet are relatively positioned on a straight line.
CN201920469366.1U 2019-04-09 2019-04-09 Micro-ecological collection instrument for renal pelvis urine Active CN210019436U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920469366.1U CN210019436U (en) 2019-04-09 2019-04-09 Micro-ecological collection instrument for renal pelvis urine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920469366.1U CN210019436U (en) 2019-04-09 2019-04-09 Micro-ecological collection instrument for renal pelvis urine

Publications (1)

Publication Number Publication Date
CN210019436U true CN210019436U (en) 2020-02-07

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109953776A (en) * 2019-04-09 2019-07-02 江南大学 Renal plevis urine Tiny ecosystem Acquisition Instrument

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109953776A (en) * 2019-04-09 2019-07-02 江南大学 Renal plevis urine Tiny ecosystem Acquisition Instrument
CN109953776B (en) * 2019-04-09 2023-11-17 江南大学 Renal pelvis urine microecological collector

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