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Vein duct device capable of performing plugging

A venous catheter and vein technology, applied in the direction of catheters, guide wires, instruments introduced into the body, etc., can solve the problem that the blocking wire is difficult to easily enter the lumen of the venous catheter, so as to eliminate the risk of thrombosis and reduce the wall-hanging thrombus. , the effect of eliminating local blood flow dead space

Pending Publication Date: 2019-04-02
ZHEJIANG BAIHUO HEALTH TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Patent application 201810470421.9 proposes to block the opening of the front end of the venous catheter through the external isolation of the occluding wire, and smoothly enter the lumen of the venous catheter through the guiding auxiliary occluding wire, but the occluding wire is between the opening of the guiding passage and the rear opening of the venous catheter lumen. The intervening travel is carried out in a free state and there is no coaxial guiding structure, so it is difficult for the occluding wire to enter the lumen of the venous catheter easily

Method used

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  • Vein duct device capable of performing plugging
  • Vein duct device capable of performing plugging
  • Vein duct device capable of performing plugging

Examples

Experimental program
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Effect test

Embodiment 1

[0052] Such as Figure 1A , 1B , 1C, 1D, 1E, 1F, 1G, 1H, 1I, 1J, 1K, 1L, 1M, and 1N, the present invention includes: a rigid needle tube 1 for puncturing skin and vein walls, a needle tube holder 16, a vein Catheter 2, venous catheter seat 23, sealing body 25, occluding wire 3, occluding wire guide passage 40, isolation part 5; the inner hollow of the needle tube 1 is the inner cavity of the needle tube, and the sharp front end of the needle tube is exposed from the opening 201 at the front end of the venous catheter during puncture The bottom of the needle tube is fixed in the needle tube base 16, and the needle tube base 16 is connected with a needle tube base handle 17; the relatively flexible hollow venous catheter 2 can be made of materials such as PU, FEP, etc. The seat cavity 230 is connected; between the front end and the rear end of the intravenous catheter seat 23 are the upper end surface 233, the lower end surface 234, the left side 235, and the right side 236, and...

Embodiment 2

[0068] For clear display, cover shell assembly 8, needle tube 1, etc. are hidden, such as Figure 2A As shown, the length L8 of the straight tubular guide passage 40 is greater than or equal to the distance L5 between its front opening 401 and the rear end opening 202 of the venous catheter. The axis goes forward and enters the lumen 20 of the catheter venous smoothly, and the lumen 20 of the catheter venous can continue to guide the blocking wire 3 .

[0069] A solution confirmed by experiments is that the length L8 of the straight tubular guide passage 40 is greater than or equal to 1 / 2 of the length L6 of the venous catheter 2, which can avoid to a certain extent when the curved guide passage 40 is used. 3 to generate resistance when it enters the lumen 20 of the venous catheter.

[0070] A more reliable size selection is that the length L8 of the straight tubular guide passage 40 is greater than or equal to the length L6 of the venous catheter 2 , so as to ensure that the...

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PUM

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Abstract

The invention relates to a vein duct device capable of performing plugging. The vein duct device comprises a needle tube, a needle tube seat, a vein duct, a vein duct seat, a threadlike movable plugging wire, an isolation component capable of isolating a part of or all of the plugging wire from outside, a guiding passage, and a housing assembly, wherein the needle tube penetrates through a sealingbody; the front part of the needle tube is located in a vein duct inner cavity; the front end of the needle tube is exposed from an opening in the front end of the vein duct; at least the front end of the guiding passage is in the shape of a straight pipe; an opening in the front end of the guiding passage communicates with a vein duct inner cavity directly or through a vein duct seat inner cavity; the plugging wire can penetrate through the guiding passage to enter the vein duct inner cavity; at least the straight pipe shaped part of the guiding passage and the vein duct can move in an external isolated rotating manner to the position that the central axis of the guiding access is coincident with that of the vein duct; the plugging wire which can be in direct contact with the vein duct seat inner cavity and / or communicate with fluid, and the guiding passage are isolated from outside; the housing assembly is connected with the guiding passage; and at least a part of the plugging wireand at least a part of the isolation component are located in the housing assembly in a shape fitting manner.

Description

technical field [0001] The invention relates to a blockable venous catheter device, which belongs to the technical field of medical devices. Background technique [0002] Venipuncture and associated intravenous infusion are the most commonly used general techniques in various clinical departments. When the infusion time is long, flexible venous catheters are most often used to indwell in the venous lumen. During the indwelling period, the flexible venous catheter eliminates the The risk of puncturing the vein with the front end of the rigid needle tube; however, during the indwelling period without drug solution injection, the local blood flow or stagnation in the intravenous catheter and the opening can easily cause blood coagulation, even if the anticoagulant such as heparin is used to seal the tube, Measures such as flushing the catheter with normal saline still cannot prevent the formation of thrombus in the lumen of the venous catheter, and the detachment of the thrombu...

Claims

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Application Information

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IPC IPC(8): A61M5/14A61M25/00A61M25/09
CPCA61M5/14A61M25/0021A61M25/0043A61M25/09
Inventor 董东生张薇宋玲玲王茹王晶
Owner ZHEJIANG BAIHUO HEALTH TECH CO LTD
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