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Design of a capacitive ECG sensor for unobtrusive heart rate measurements

机译:用于不引人注心的心率测量的电容式ECG传感器的设计

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The increased prevalence of cardiovascular disease among the aging population has prompted greater interest in the field of smart home monitoring and unobtrusive cardiac measurements. This paper introduces the design of a capacitive electrocardiogram (ECG) sensor that measures heart rate with no conscious effort from the user. The sensor consists of two active electrodes and an analog processing circuit that is low cost and customizable to the surfaces of common household objects. Prototype testing was performed in a home laboratory by embedding the sensor into a couch, walker, office and dining chairs. The sensor produced highly accurate heart rate measurements (< 2.3% error) via either direct skin contact or through one and two layers of clothing. The sensor requires no gel dielectric and no grounding electrode, making it particularly suited to the "zero-effort" nature of an autonomous smart home environment. Motion artifacts caused by deviations in body contact with the electrodes were identified as the largest source of unreliability in continuous ECG measurements and will be a primary focus in the next phase of this project.
机译:老龄化人口中心血管疾病的患病率增加促使对智能家庭监测和不引人注心的心脏测量领域的更大兴趣。本文介绍了一种电容式心电图(ECG)传感器的设计,测量心率没有来自用户的有意识的努力。传感器由两个有源电极和模拟处理电路组成,其成本低,可定制于普通家庭对象的表面。通过将传感器嵌入沙发,助行器,办公室和餐椅中,在家庭实验室进行原型测试。传感器通过直接皮肤接触或通过一层和两层衣物生产高精度的心率测量(<2.3%误差)。传感器不需要凝胶电介质和没有接地电极,使其特别适用于自主智能家庭环境的“零努力”性质。由于身体接触与电极的偏差引起的运动伪影被确定为连续的心电图测量中的不可靠性的最大来源,并且将是该项目的下一阶段的主要重点。

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