基于缺陷态结构的体外超声信号高效聚焦溶栓机制研究
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1.中北大学信息与通信工程学院 太原 030051;2.东莞市西喆电子有限公司 东莞 523015

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TB55

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国家自然科学基金项目(61671414)资助


Study on the mechanism of efficient focused thrombolysis based on defective state structure of in vitro ultrasound signal
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1.School of Information and Communication Engineering, North University of China,Taiyuan 030051, China; 2.LIDIT International Co. LRD., Dongguan 523015, China

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    摘要:

    在治疗血栓性疾病方面,体外超声溶栓治疗突破了常规治疗和体内介入式溶栓的局限性,显现了巨大优势。但体外溶栓所使用的超声波换能器发射功率较低,易受环境影响,超声信号难以通过人体组织到达病变区域,很难实现对血栓结构的破坏。为了解决这一问题,本文基于缺陷态结构思想,采用有限元分析方法设计了一种新型体外超声溶栓模型,并进行了仿真实验。实验结果表明这种结构模型能够在10~20kHz超声波低频频带部分有良好的声场局域效应和声波强度提升作用,当声波频为率14.9 kHz时,结构模型具有良好的身体穿透效应,有一定可能在体外对血栓产生结构破坏,达到血栓清理的作用。这些研究对高效安全的体外血栓清理方法的研究有很重要的意义。

    Abstract:

    In the treatment of thrombotic diseases, extracorporeal ultrasound thrombolysis breaks through the limitations of conventional treatment and in vivo interventional thrombolysis and shows great advantages.However, the ultrasonic transducer used for extracorporeal thrombolysis has low transmitting power and is easily influenced by the environment, which makes it difficult for the ultrasonic signal to reach the lesion area through human tissues and to achieve the destruction of the thrombus structure.In order to solve this problem, a new model of extracorporeal ultrasonic thrombolysis was designed and simulated based on the idea of defective state structure and finite element analysis in this paper.The experimental results show that this structural model can have good acoustic field localization effect and acoustic intensity enhancement effect in the low frequency band part of 10~20 kHz ultrasonic waves, and when the acoustic frequency is rate 14.9 kHz, the structural model has good body penetration effect and has certain possibility to produce structural damage to thrombus in vitro and achieve the effect of thrombus cleaning.These studies are of great importance for the research of efficient and safe in vitro thrombus clearance methods.

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尉浪浪,韩建宁,杨 鹏,赵欣洒,马瑜涓.基于缺陷态结构的体外超声信号高效聚焦溶栓机制研究[J].电子测量技术,2022,45(3):12-18

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  • 在线发布日期: 2024-06-14
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