Cordes Axel, Foussier Jerome, Leonhardt Steffen
Philips Chair for of Medical Information Technology, RWTH Aachen University, Aachen, Germany.
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:2767-70. doi: 10.1109/IEMBS.2009.5333863.
For monitoring the health status of individuals, detection of breathing and heart activity is important. From an electrical point of view, it is known that breathing and heart activity change the electrical impedance distribution in the human body over the time due to ventilation (high impedance) and blood shifts (low impedance). Thus, it is possible to detect both important vital parameters by measuring the impedance of the thorax or the region around lung and heart. For some measurement scenarios it is also essential to detect these parameters contactless. For instance, monitoring bus drivers health could help to limit accidents, but directly connected systems limit the drivers free moving space. One measurement technology for measuring the impedance changes in the chest without cables is the magnetic impedance tomography (MIT). This article describes a portable measurement system we developed for this scenario that allows to measure breathing contactless. Furthermore, first measurements with five volunteers were performed and analyzed.
为监测个人的健康状况,检测呼吸和心脏活动至关重要。从电学角度来看,众所周知,由于通气(高阻抗)和血液流动(低阻抗),呼吸和心脏活动会随时间改变人体的电阻抗分布。因此,通过测量胸部或肺部及心脏周围区域的阻抗,可以检测这两个重要的生命参数。对于某些测量场景,非接触式检测这些参数也很重要。例如,监测公交车司机的健康状况有助于减少事故,但直接连接的系统会限制司机的自由活动空间。一种无需电缆测量胸部阻抗变化的测量技术是磁阻抗断层成像(MIT)。本文描述了我们针对这种场景开发的一种便携式测量系统,该系统能够非接触式测量呼吸。此外,还对五名志愿者进行了首次测量并进行了分析。