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Cardiovascular interventional therapy device with thrombolysis function

An interventional therapy and cardiovascular technology, applied in the medical field, can solve problems such as the inability to monitor the effect of thrombolysis in real time, the difficulty of thrombolytic surgery, and the inability to detect and control the frequency of sound waves, so as to improve the efficiency of thrombolysis, increase the speed of dissolution, The effect of reducing energy loss

Inactive Publication Date: 2022-07-15
HEBI CITY PEOPLES HOSPITAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In the prior art, the operation of thrombolytic surgery is difficult, and the frequency of sound waves acting on blood clots cannot be detected and controlled in real time, and the thrombolytic effect cannot be monitored in real time. The present invention effectively solves the problem of thrombolytic surgery in cardiovascular Operability for real-time control and detection

Method used

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  • Cardiovascular interventional therapy device with thrombolysis function
  • Cardiovascular interventional therapy device with thrombolysis function
  • Cardiovascular interventional therapy device with thrombolysis function

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] This embodiment constructs a cardiovascular interventional therapy device with a thrombolytic function and capable of measuring the thrombolytic effect;

[0045] A cardiovascular interventional therapy device with thrombolytic function, characterized in that, the cardiovascular interventional therapy device comprises a catheter made of biocompatible and flexible materials and inserted into the blood clot; the catheter is placed at the tip of the catheter , generate the first frequency sound wave and transmit it to the first sound wave probe in the blood clot; transmit the second frequency sound wave, and receive the second sound wave probe that reflects the sound wave through the blood clot boundary; A drainage tube for sucking out the liquid after clot thrombolysis; a collection device connected with the second sound wave probe to collect reflected sound wave data; a temperature sensing device connected with the second sound wave probe to measure the blood clot temperat...

Embodiment 2

[0068] combined with Figure 1-5 , in addition to the content of the above embodiments, but also in:

[0069] The first acoustic wave probe includes a first deflection film and a second deflection film with the same spacing arrangement, and a static film placed under the second deflection film for suspending the first deflection film, the second deflection film, and the second deflection film. The support of the static film is used to fix the support and the substrate made of material silicon, and the insulator that isolates the second deflection film from the substrate; by receiving the electrical signal sent by the control circuit, through the A voltage controller for changing the deflection voltage on the first deflection film and the second deflection film to control the deflection amplitude on the first deflection film and the second deflection film, the first deflection film and the The deflection amplitude of the second deflection film is related to the distance betwee...

Embodiment 3

[0073] combined with Figure 1-5 , in addition to the content of the above embodiments, but also in:

[0074]A cardiovascular interventional therapy device with thrombolytic function, characterized in that, the cardiovascular interventional therapy device comprises a catheter made of biocompatible and flexible materials and inserted into the blood clot; the catheter is placed at the tip of the catheter , generate the first frequency sound wave and transmit it to the first sound wave probe in the blood clot; transmit the second frequency sound wave, and receive the second sound wave probe that reflects the sound wave through the blood clot boundary; A drainage tube for sucking out the liquid after clot thrombolysis; a collection device connected with the second acoustic wave probe to collect reflected acoustic wave data; a temperature sensing device connected with the second acoustic wave probe to measure the blood clot temperature signal; constructed A host for calculating bl...

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Abstract

The invention provides a cardiovascular interventional therapy device with a thrombolysis function, which comprises a catheter, a first sound wave probe, a second sound wave probe, a drainage tube, a collecting device, a temperature sensing device and a host, wherein the drainage tube is arranged on a branch of the catheter and is used for sucking out liquid after thrombolysis of blood clots, and the collecting device and the temperature sensing device are connected with the second sound wave probe; and the control circuit is connected with the host. The first sound wave probe is inserted into the blood clot through the catheter to locally transmit the high-frequency ultrasonic waves, and the second sound wave probe is used for measuring the resonant frequency of the reflected sound waves and the reflection time of the sound waves to obtain the real-time viscosity and the real-time volume of the blood clot, so that the optimal sound wave frequency for eliminating the blood clot is obtained; and the sound wave frequency is controlled by controlling the voltage controller to change the distance between the first deflection film and the second deflection film, so that the accuracy of sound thrombolysis sound wave frequency control is improved. The success rate of thrombolysis in the field is effectively increased.

Description

technical field [0001] The invention relates to the field of medical technology, in particular to a cardiovascular interventional therapy device with thrombolytic function. Background technique [0002] Thrombolytic therapy is the use of exogenous activators to activate the dissolving system in the body, dissolve the thrombus in the coronary artery, recanalize the coronary artery, improve myocardial perfusion, rescue the affected myocardium, reduce the infarct size, improve myocardial function, and achieve the goal of reducing mortality. Purpose. [0003] The experimental team has long-term browsed and researched a large number of relevant records and researches on the related technologies of ophthalmic thrombolytic surgery and cardiovascular interventional therapy. US06656136B1, JP2011512351A and CN109771006B, such as a cardiovascular intervention device in the prior art, comprising an outer tube body, an inner tube body placed in the outer tube body, and a first through h...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B17/22A61N7/00A61B8/12A61B8/08
CPCA61B17/2202A61N7/00A61B8/12A61B8/085A61B8/4444A61B8/54A61B2017/22079
Inventor 王学杰张素平陈磊杰
Owner HEBI CITY PEOPLES HOSPITAL
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