Pressure-difference monitoring device based on heart coronary artery stent and method thereof

A coronary artery and monitoring device technology, applied in stents, cardiac catheterization, diagnostic recording/measurement, etc., can solve the problems of long cycle, slow effect, and large side effects, and achieve the effects of reducing costs and risks, reducing pain, and avoiding pain

Inactive Publication Date: 2016-09-21
任勇
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This technology allows medical professionals to detect changes caused by stress on the body's vasculature that affect them better than before they visit hospitals or treatments with drugs like angiotensin converting agents (ACE). By doing this, it saves time and money compared to traditional methods such as X ray fluoroscopy. Additionally, when these new technologies were introduced into clinics, people could see how well certain medications work over time instead of waiting until after being taken out from the doctor’s office. Overall, this innovation helps improve prevention measures against disease risk factors and reduces costly procedures associated therewith.

Problems solved by technology

This patented technical problem addressed by this patent relates to treatments used to prevent damage caused by excessive inflammation due to various types of stressors like smoking cigarettes, alcohol consumption, obstructive sleep apnea syndrome (OSAS), hypertension, diabetes mellitus, metabolism disorders, cancer chemotheraphylaxis, etc., which can lead to tissue injury after angioplasty procedures. Current medical practice involves administering antiplatelet agents alone but these may be associated with increased risk of bleeding at certain parts of the body when they should remain active over time. Therefore, new ways to reduce the likelihood of developing resistance against current medications would help improve patient outcomes while reducing their burden of care costs during those timescalities.

Method used

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  • Pressure-difference monitoring device based on heart coronary artery stent and method thereof
  • Pressure-difference monitoring device based on heart coronary artery stent and method thereof
  • Pressure-difference monitoring device based on heart coronary artery stent and method thereof

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Embodiment Construction

[0022] The present invention will be described in detail below in conjunction with the accompanying drawings. However, it should be understood that the accompanying drawings are provided only for better understanding of the present invention, and they should not be construed as limiting the present invention.

[0023] Such as figure 1 As shown, the pressure difference monitoring device based on the coronary artery stent of the present invention includes a coronary artery stent, two integrated circuits and an external processing device; the coronary artery stent is used as an antenna for energy and signal transmission, and the two integrated circuits They are respectively fixed at the entrance and exit of coronary artery stent vessels, and each integrated circuit includes an energy supply module, a pressure sensor, a memory, a data processor and a first radio frequency transceiver module. Each energy supply module receives the electromagnetic waves radiated into the body by th...

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Abstract

The invention relates to a pressure-difference monitoring device based on a heart coronary artery stent and a method thereof. The pressure-difference monitoring device based on the heart coronary artery stent and the method thereof are characterized in that the monitoring device comprises a heart coronary artery stent, two integrated circuits and an external processing device; the heart coronary artery stent is used as an antenna, and the two integrated circuits are fixedly arranged at an inlet and an outlet of a blood vessel of the heart coronary artery stent respectively; all the integrated circuits comprise energy supplying modules, pressure sensors, storages, data processors and first radio-frequency receiving and dispatching modules, and all the energy supplying modules are used for supplying power to the integrated circuits; the pressure sensors transmit detected blood pressure signals to the data processors through the storages, the blood pressure signals are converted into digital signals through the data processors, and the first radio-frequency receiving and dispatching modules transmit the digital signals to the external processing device through the heart coronary artery stent. The pressure-difference monitoring device based on the heart coronary artery stent and the method thereof can be widely applied to state monitoring of cardiovascular diseases.

Description

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Claims

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Application Information

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Owner 任勇
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