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Feasibility of Utilizing Air Gapped Toroidal Magnetic Cores for Detecting Pulse Wave in Radial Artery

机译:利用空气撕开环形磁芯来检测径向动脉脉冲的可行性

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The feasibility study of utilization of air gapped toroidal magnetic cores for monitoring changing volume of pulsating blood in artery is shown in this paper. The changing impedance of conductive path of blood is represented by a single solid core copper wire, connected to a closed circuit with potentiometer. Commercially available toroidal magnetic cores with two different shapes of custom implemented air gaps and desired number of windings were used to induce current in copper wire. The theoretical expectation of the possibility to focus most of the reluctance of emerging magnetic field into the air gap was experimented. The location of conductive path relative to the implemented air gap was determined to be critical and the best outcome was gained when the copper wire was passing through the center of toroidal core instead of the gap itself. Also, the shape of the air gap was determined to acquire important role related to the location of the conductive path – as the flux fringing is appearing not to significantly affect the magnitude of induced current. The potentiality of monitoring pulse wave by positioning the air gap of toroidal core noninvasively onto the location of radial artery in forearm was concluded not to be feasible with the used setup. The results of on-desk measurements were validated with finite element method simulation of magnetic flux density distribution.
机译:本文示出了用于监测动脉中脉动血液体积的空隙环形磁芯的利用的可行性研究。导电路径的变化阻抗由单个固体芯铜线表示,连接到具有电位计的闭合电路。使用具有两种不同的定制空气间隙和所需绕组数量的市售环形磁芯,用于诱导铜线中的电流。实验,理论期望将大部分磁场集中在气隙中的大部分焦虑的可能性。当铜线穿过环形芯的中心而不是间隙本身时,确定导电路径相对于实施的气隙的位置是至关重要的,并且当铜线穿过环形芯的中心而不是间隙本身时获得了最佳结果。而且,确定空气间隙的形状以获取与导电路径的位置相关的重要作用 - 当出现磁通条纹时不显着影响诱导电流的大小。通过将环形核心的空气间隙定位在前臂中的径向动脉的位置来监测脉搏波的潜力是不可能与使用的设置不可行。磁通密度分布的有限元方法模拟验证了桌面测量结果。

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