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Design of a high SNR electronic heart sound sensor based on a MEMS bionic hydrophone

机译:基于MEMS仿生水器的高SNR电子心声传感器设计

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摘要

Since most of the contact conduction type of heart sound sensors don’t take into account the acoustic signal attenuation problem caused by the heart sound signal transmitting to a sensor whose filling materials’ impedance is different to human soft tissue, the signal-to-noise ratio (SNR) of the heart sound sensors is not very well. Human heart is immersed in blood. If the sensor’s core sensitive element can be immersed in fluid, the attenuation of heart sound signal may be decreased greatly. Inspired by the principle of hydroacoustic signal’s detection, this paper proposes the design of heart sound sensor based on the bionic vector hydrophone. Then theoretical analysis and finite element method (FEM) simulation about the sensor have been carried out. Combined sensitivity with resonant frequency, the optimum dimension of the sensor’s structure has been determined. The sensor’s micro-structure has been fabricated by using Micro-Electro-Mechanical System (MEMS) technology and coupling encapsulated by choosing a kind of medical coupling agent as the filling material. Finally, the performance of the proposed sensor is tested. The fact is that the proposed sensor can work well with either healthy people or patients with heart disease. The obtained data clearly show that: the SNR of the proposed heart sound sensor is superior to 3200-type of 3M Littmann 8.2 dB.
机译:由于大多数接触式导电类型的心声传感器不考虑由传输到填充材料的阻抗与人软组织不同的传感器引起的声音信号引起的声音信号衰减问题,因此信号 - 噪声心声传感器的比率(SNR)不是很好的。人的心脏浸入血液中。如果传感器的核心敏感元件可以浸入流体中,则可以大大降低心声信号的衰减。通过水声信号检测原理启发,本文提出了基于仿生载体水听器的心声传感器设计。然后已经执行了关于传感器的理论分析和有限元方法(FEM)模拟。结合谐振频率的敏感性,已经确定了传感器结构的最佳尺寸。通过使用微机电系统(MEMS)技术和偶联来制造传感器的微结构,通过选择一种药物偶联剂作为填充材料来制造。最后,测试了所提出的传感器的性能。事实是,所提出的传感器可以与健康的人或心脏病患者合作。所获得的数据清楚地表明:所提出的心声传感器的SNR优于3200型3M Littmann 8.2 dB。

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