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A novel sound sensor and its package used in lung sound diagnosis

机译:新型声音传感器及其在肺部声音诊断中的应用

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Auscultation method has been used since the early 19th century in diagnostics of heart and lung diseases. Traditional stethoscope coupled with ears of physicians detects the heart and lung sound, and it is formed by microphone, air chamber and other infrastructures. However, some disadvantages exist in this kind of detecting tools, such as bulky size, friction noise due to hand-held, and inconvenience in long-term continuing monitoring, making it impossible to be integrated with clothing and hard to be interfaced with chest or inner cloth. A novel sound sensor used in lung sound detection with small size and high sensitivity will be presented in this paper. The sound sensor and its packaging are based on asymmetrically-gapped cantilever, consisting of a movable proof mass and three connection beams with two parallel beams that integrate one piezoelectric element at the top side and one mechanical beam at the bottom of sensor. As an example of lung sound diagnosis, a sound sensor with 5g weight, 86V/g sensitivity and 40ng/√Hz minimum detection acceleration is used in this paper. Due to the advantage of small size, high sensitivity and low cost, this sensor can be used in subtle sound and acceleration detection by a long term continuous monitoring mode. The application of this sound sensor will be presented in details in the lung sound detection, with particular focus on the deep breath induced sound. The monitoring experimental results show that this new sensor makes the detection of breathing clearer and easier, and heart sound can be sensed during breath holding period. The test data for regular breathing, deep breathing, and breathing & holding cases will be reported. It has been observed that lung sound can be measured and consistent results have been achieved. In addition, heart sound was tried to be extracted from lung sound, and the heart rate for the measured person is found to be 62 pulses per minute for an individual tested.
机译:自19世纪初以来,就一直在听诊中使用听诊法来诊断心脏和肺部疾病。传统的听诊器与医师的耳朵配合使用,可以检测心脏和肺部的声音,它是由麦克风,气室和其他基础设施形成的。但是,这种检测工具存在一些缺点,例如体积大,手持引起的摩擦噪声以及长期连续监测的不便,使其无法与衣物集成在一起,也难以与胸部或胸部接口。内布。本文将介绍一种用于肺部声音检测的新型声音传感器,它具有体积小,灵敏度高的特点。声音传感器及其包装基于不对称间隙的悬臂,由一个可移动的质量块和三个连接梁以及两个平行梁组成,两个平行梁在传感器的顶部集成了一个压电元件,在传感器底部集成了一个机械梁。以肺部声音诊断为例,本文使用了重量为5g,灵敏度为86V / g,最小检测加速度为40ng /√Hz的声音传感器。由于具有体积小,灵敏度高和成本低的优点,该传感器可通过长期连续监测模式用于微妙的声音和加速度检测。该声音传感器的应用将在肺部声音检测中进行详细介绍,特别着重于深呼吸引起的声音。监测实验结果表明,这种新型传感器使呼吸的检测更加清晰和轻松,并且在屏气期间可以检测到心音。将报告常规呼吸,深呼吸以及呼吸和保持情况的测试数据。已经观察到可以测量肺音并且获得了一致的结果。另外,尝试从肺部声音中提取心音,并且对于被测人,发现被测人的心率是每分钟62个脉搏。

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