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A Pulsatile Optical Tissue Phantom for the Investigation of Light-Tissue Interaction in Reflectance Photoplethysmography

机译:用于反射光体积描记法中光组织相互作用研究的脉冲光学组织体模

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The aim of this study was to investigate the effect of emitter-detector separation distance and arterial depth in reflectance photoplethysmography (PPG), utilizing a homogenous pulsatile phantom that exhibits the broad optical absorbance and scattering properties of human tissue. The developed phantom comprised of embedded silicone arteries (outer diameter = 4 mm) that were arranged parallel to one another at nine increasing depths (3.2 mm to 24.4 mm). A pulsatile pump (Harvard Apparatus, MA, USA) circulated a blood imitating fluid through the vessels at the desired heart rate (60 bpm) and stroke volume (5 Lmin-1). The PPG sensor’s emitter and detector were isolated on a translation bridge to provide a computer-controlled separation distance between them. Recordings were taken at each vessel depth for emitter-detector separation distances from 2 mm to 8 mm in 0.1 mm steps. The optimum separation distance between the emitter and detector for vessels between depths of 3.2 mm and 10.5 mm was between 3.7 and 4.3 mm, suggesting that the maximum penetration of IR (930 nm) light in a homogenous pulsatile phantom is no greater than 10.5 mm.
机译:这项研究的目的是利用均匀的脉动体模,表现出人体组织广泛的光吸收和散射特性,研究发射器-探测器分离距离和动脉深度在反射光体积描记法(PPG)中的作用。发达的幻像由嵌入的硅树脂动脉(外径= 4 mm)组成,它们以九个递增的深度(3.2 mm至24.4 mm)彼此平行排列。脉动泵(哈佛大学设备,美国马萨诸塞州,美国)以所需的心率(60 bpm)和中风量(5 Lmin)使模拟血管的血液循环通过血管 -1 )。 PPG传感器的发射器和检测器在平移桥上隔离,以在它们之间提供计算机控制的分隔距离。在每个容器深度处以0.1 mm的步距记录从2 mm到8 mm的发射器与探测器的距离。深度在3.2毫米和10.5毫米之间的容器的发射器和检测器之间的最佳分隔距离在3.7到4.3毫米之间,这表明在均匀的脉动体模中IR(930 nm)光的最大穿透力不大于10.5 mm。

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