CN213181074U - Cardiac catheter detection device - Google Patents
Cardiac catheter detection device Download PDFInfo
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- CN213181074U CN213181074U CN202022077646.3U CN202022077646U CN213181074U CN 213181074 U CN213181074 U CN 213181074U CN 202022077646 U CN202022077646 U CN 202022077646U CN 213181074 U CN213181074 U CN 213181074U
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Abstract
The utility model discloses a heart pipe check out test set belongs to check out test set technical field. It includes operation panel and control panel, be provided with rotary fixture and simulation case on the operation panel, torque sensor and a plurality of regulation anchor clamps of fixedly connected with in proper order from left to right in the inside of simulation case, common centre gripping has the sleeve pipe on a plurality of regulation anchor clamps, sheathed tube one end runs through the outside that extends to the simulation case, go back fixedly connected with circulating water pump on the operation panel, the circulating water pump leads to pipe and simulation case to communicate mutually, and constitute circulating line, still be provided with temperature sensor and heating rod on the simulation case. The utility model discloses a setting of simulation case and rotary fixture, rotary fixture rotate the one end of pipe, and the other end passes through the operation moment of torsion of torque sensor on-line measuring pipe to the pipe is at the internal mobile state of simulation case simulation people, thereby is convenient for the torsional resistance of doctor perception pipe, and then the operating condition of perception heart pipe operation.
Description
Technical Field
The utility model relates to a heart pipe check out test set belongs to check out test set technical field.
Background
The cardiac catheterization is a technique of inserting a catheter from a peripheral blood vessel and sending the catheter to a heart cavity and a large blood vessel for obtaining information to achieve the purposes of examination and diagnosis, and also can perform certain treatment measures.
Disclosure of Invention
The utility model provides a heart pipe check out test set of on-line measuring heart pipe torsional moment, it takes following technical scheme to realize:
cardiac catheter check out test set, including operation panel and control panel, be provided with rotary fixture and simulation case on the operation panel, the inside of simulation case from left to right is torque sensor and a plurality of regulation anchor clamps of fixedly connected with in proper order, and is a plurality of the common centre gripping has the sleeve pipe on the regulation anchor clamps, sheathed tube one end is run through the outside that extends to the simulation case, go back fixedly connected with circulating water pump on the operation panel, circulating water pump leads to pipe and simulation case to communicate mutually, and constitutes the circulating line, still be provided with temperature sensor and heating rod on the simulation case.
As a preferable example, a positioning clamp is also fixedly connected to the operating platform, is positioned at the penetrating position of the simulation box and the sleeve and clamps the sleeve.
As a preferable example, the operating platform is further fixedly connected with a first sliding rail parallel to the length direction of the simulation box, the bottoms of the rotating clamp and the positioning clamp are both connected with the first sliding rail in a sliding mode, and the upper surface of the operating platform is provided with a screw hole used for limiting the positions of the rotating clamp and the positioning clamp.
As a preferred example, the adjusting fixture includes a pressing cover, a clamping block, a sliding block, and a second sliding rail, the second sliding rail is fixedly connected to the inner bottom of the simulation box, the bottom of the sliding block is slidably connected to the second sliding rail, the clamping block is fixedly connected to the top of the sliding block, and the pressing cover is detachably connected to the clamping block.
As a preferred example, two sets of pressing covers, clamping blocks and sliding blocks are arranged on the second sliding rail, and the two clamping blocks have two specifications respectively.
As a preferred example, the top of the simulation box is provided with a turnover cover and is made of transparent materials.
The utility model has the advantages that: the utility model discloses a setting of simulation case and rotary fixture, rotary fixture rotate the one end of pipe, and the other end passes through the operation moment of torsion of torque sensor on-line measuring pipe to the pipe is at the internal mobile state of simulation case simulation people, thereby is convenient for the torsional resistance of doctor perception pipe, and then the operating condition of perception heart pipe operation.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic top view of the structure of FIG. 1;
FIG. 3 is a schematic front view of the structure of FIG. 1;
FIG. 4 is a schematic view of a connection structure of the rotating jig, the positioning jig and the first slide rail;
fig. 5 is a schematic structural view of the adjusting jig.
In the figure: the device comprises an operating platform 1, a control panel 2, a rotary clamp 3, a circulating water pump 4, a heating rod 5, an adjusting clamp 6, a gland 61, a clamping block 62, a sliding block 63, a second sliding rail 64, a temperature sensor 7, a simulation box 8, a first sliding rail 9, a positioning clamp 10, a sleeve 11 and a torque sensor 12.
Detailed Description
In order to make the technical means, the creation features, the achievement purposes and the functions of the present invention easy to understand and understand, the present invention is further explained by combining the following specific drawings.
As shown in fig. 1-5, cardiac catheter detection device, including operation panel 1 and control panel 2, be provided with rotary fixture 3 and simulation case 8 on the operation panel 1, inside of simulation case 8 from left to right is a torque sensor 7 and a plurality of regulation anchor clamps 6 of fixedly connected with in proper order, the common centre gripping has sleeve pipe 11 on a plurality of regulation anchor clamps 6, the outside that extends to simulation case 8 is run through to the one end of sleeve pipe 11, still fixedly connected with circulating water pump 4 on the operation panel 1, circulating water pump 4 is linked together through water pipe and simulation case 8, and constitute the circulating line, still be provided with temperature sensor 7 and heating rod 5 on the simulation case 8.
Adopt above-mentioned scheme, rotary fixture 3 comprises three-jaw chuck and servo motor, torque sensor 7 all are connected with control panel 2 electricity, and 3 one ends of centre gripping pipe of rotary fixture rotate, and the other end passes through the operating torque of 7 on-line measuring pipes of torque sensor to the pipe is at the internal mobile state of simulation case 8 simulation human, thereby is convenient for the doctor perception pipe torsional resistance, and then the operating condition of perception heart pipe operation.
Still fixedly connected with positioning fixture 10 on operation panel 1, positioning fixture 10 is located the department that runs through of simulation case 8 and sleeve pipe 11, and centre gripping sleeve pipe 11.
By adopting the scheme, the catheter extends into a human body from the incision part, and the positioning clamp 10 is used for limiting the catheter at the incision part and preventing the catheter from moving.
Still fixedly connected with on the operation panel 1 and simulating 8 parallel first slide rail 9 of length direction of case, the bottom of rotary fixture 3 and positioning fixture 10 all with first slide rail 9 sliding connection, and the screw that is used for restricting rotary fixture 3 and positioning fixture 10 position is seted up to the upper surface of operation panel 1.
By adopting the scheme, the positions of the rotary clamp 3 and the positioning clamp 10 are adjusted, so that different types of catheters can be conveniently detected.
Adjusting fixture 6 includes gland 61, fixture block 62, slider 63 and second slide rail 64, and second slide rail 64 fixed connection is at the interior bottom of simulation case 8, and the bottom and the second slide rail 64 sliding connection of slider 63, fixture block 62 and the top fixed connection of slider 63, gland 61 and fixture block 62 can be dismantled and be connected.
By adopting the scheme, the positions of the adjusting clamps 6 in the second sliding rail 64 can be adjusted, and the adjusting clamps 6 are arranged in a staggered manner, so that the sleeve 11 is bent, and the real blood vessel condition in a human body is simulated.
Two groups of gland covers 61, clamping blocks 62 and sliding blocks 63 are arranged on the second sliding rail 64, and the two clamping blocks 62 have two specifications respectively.
By adopting the scheme, the two specifications are different in clamping calibers of the clamping blocks 62 and are used for clamping the sleeves 11 with different specifications, so that the different types of catheters can be conveniently detected.
The top of the simulation box 8 is provided with a turnover cover and is made of transparent materials.
By adopting the scheme, the transparent arrangement is convenient for observing the operation condition in the simulation box 8, and timely collects data and solves problems.
The working principle is as follows: when the water purifier is used, the simulation box 8 is filled with purified water, the circulating water pump 4 drives the purified water to circularly flow, the temperature of the purified water is maintained at the same temperature as that of a human body through the heating rod 5 and the temperature sensor 7, then a conduit to be detected is inserted into the sleeve 11, one end of the conduit is fixed in the rotary fixture 3, the other end of the conduit is fixed in the torque sensor 12, the rotary fixture 3, the circulating water pump 4, all electrical components such as the heating rod 5 and the temperature sensor 7 are electrically connected with the control panel 2, data are controlled and recorded by the control panel 2, operation parameters are input into the control panel 2, the rotary fixture 3 can be enabled to drive the conduit to rotate, the torque sensor 12 records torque data and stores the torque data in the control panel.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that various changes and modifications may be made without departing from the spirit and scope of the invention, and such changes and modifications fall within the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (6)
1. Cardiac catheter detection device, including operation panel (1) and control panel (2), its characterized in that: be provided with rotary fixture (3) and simulation case (8) on operation panel (1), the inside of simulation case (8) from left to right is torque sensor (12) and a plurality of regulation anchor clamps (6) of fixedly connected with in proper order, and is a plurality of it has sleeve pipe (11) to adjust anchor clamps (6) to go up common centre gripping, the outside that extends to simulation case (8) is run through to the one end of sleeve pipe (11), go back fixedly connected with circulating water pump (4) on operation panel (1), circulating water pump (4) lead to pipe and simulation case (8) are linked together, and constitute circulating line, still be provided with temperature sensor (7) and heating rod (5) on simulation case (8).
2. The cardiac catheter detection apparatus of claim 1, wherein: still fixedly connected with positioning fixture (10) on operation panel (1), positioning fixture (10) are located the department that runs through of simulation case (8) and sleeve pipe (11), and centre gripping sleeve pipe (11).
3. The cardiac catheter detection apparatus of claim 2, wherein: the simulation test bench is characterized in that the operation bench (1) is further fixedly connected with a first sliding rail (9) parallel to the length direction of the simulation box (8), the bottoms of the rotating clamp (3) and the positioning clamp (10) are both in sliding connection with the first sliding rail (9), and the upper surface of the operation bench (1) is provided with a screw hole used for limiting the positions of the rotating clamp (3) and the positioning clamp (10).
4. The cardiac catheter detection apparatus of claim 1, wherein: adjusting jig (6) and including gland (61), fixture block (62), slider (63) and second slide rail (64), second slide rail (64) fixed connection is at the interior bottom of simulation case (8), the bottom and second slide rail (64) sliding connection of slider (63), the top fixed connection of fixture block (62) and slider (63), gland (61) can be dismantled with fixture block (62) and be connected.
5. The cardiac catheter detection apparatus of claim 4, wherein: two groups of pressing covers (61), clamping blocks (62) and sliding blocks (63) are arranged on the second sliding rail (64), and the two clamping blocks (62) have two specifications respectively.
6. The cardiac catheter detection apparatus of claim 1, wherein: the top of simulation case (8) is provided with flip, and is transparent material.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022077646.3U CN213181074U (en) | 2020-09-21 | 2020-09-21 | Cardiac catheter detection device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022077646.3U CN213181074U (en) | 2020-09-21 | 2020-09-21 | Cardiac catheter detection device |
Publications (1)
Publication Number | Publication Date |
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CN213181074U true CN213181074U (en) | 2021-05-11 |
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CN202022077646.3U Active CN213181074U (en) | 2020-09-21 | 2020-09-21 | Cardiac catheter detection device |
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CN (1) | CN213181074U (en) |
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2020
- 2020-09-21 CN CN202022077646.3U patent/CN213181074U/en active Active
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