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Development of optoelectronic monitoring system for ear arterial pressure waveforms

机译:耳动脉压波形光电监测系统的开发

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Abstract: Invasive intra-arterial blood pressure measurement is the most accurate method but not practical if the subject is in motion. The apparatus developed by Wesseling et al., based on a volume-clamp method of Penaz (Finapres), is able to monitor continuous finger arterial pressure waveforms noninvasively. The limitation of Finapres is the difficulty in measuring the pressure of a subject during work that involves finger or arm action. Because the Finapres detector is attached to subject's finger, the measurements are affected by inertia of blood and hydrostatic effect cause by arm or finger motion. To overcome this problem, the authors made a detector that is attached to subject's ear and developed and optoelectronic monitoring systems for ear arterial pressure waveform (Earpres). An IR LEDs, photodiode, and air cuff comprised the detector. The detector was attached to a subject's ear, and the space adjusted between the air cuff and the rubber plate on which the LED and photodiode were positioned. To evaluate the accuracy of Earpres, the following tests were conducted with participation of 10 healthy male volunteers. The subjects rested for about five minutes, then performed standing and squatting exercises to provide wide ranges of systolic and diastolic arterial pressure. Intra- and inter-individual standard errors were calculated according to the method of van Egmond et al. As a result, average, the averages of intra-individual standard errors for earpres appeared small (3.7 and 2.7 mmHg for systolic and diastolic pressure respectively). The inter-individual standard errors for Earpres were about the same was Finapres for both systolic and diastolic pressure. The results showed the ear monitor was reliable in measuring arterial blood pressure waveforms and might be applicable to various fields such as sports medicine and ergonomics. !17
机译:摘要:有创动脉内血压测量是最准确的方法,但如果对象在运动中则不可行。 Wesseling等人开发的设备基于Penaz的体积钳制方法(Finapres),能够无创地监测连续的手指动脉压力波形。 Finapres的局限性在于在涉及手指或手臂动作的工作过程中难以测量对象的压力。由于Finapres检测器连接到对象的手指上,因此测量受到血液惯性和手臂或手指运动引起的静水效应的影响。为了克服这个问题,作者制造了一种连接到受试者耳朵的检测器,并开发了用于耳动脉压力波形(Earpres)的光电监控系统。检测器包括一个IR LED,光电二极管和气囊。将检测器连接到受试者的耳朵,并调节气囊和橡胶板之间的空间,LED和光电二极管位于橡胶板上。为了评估Earpres的准确性,在10名健康男性志愿者的参与下进行了以下测试。受试者休息约五分钟,然后进行站立和下蹲运动,以提供广泛的收缩压和舒张压。个体内和个体间标准误是根据van Egmond等人的方法计算的。结果,平均而言,耳塞的个体内标准误平均值似乎很小(收缩压和舒张压分别为3.7和2.7 mmHg)。 Earpres的个体间标准误与收缩压和舒张压的Finapres大致相同。结果表明该耳塞监测器在测量动脉血压波形方面是可靠的,并且可能适用于运动医学和人体工程学等各个领域。 !17

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