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Modeling photoplethysmographic signals in camera-based perfusion measurements: optoelectronic skin phantom

机译:在基于相机的灌注测量中建模光电容积描记信号:光电皮肤幻像

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摘要

The remote acquisition of photoplethysmographic (PPG) signals via a video camera, also known as photoplethysmography imaging (PPGI), is not yet standardized. In general, PPGI is investigated with test persons in a laboratory setting. While these in-vivo tests have the advantage of generating real-life data, they suffer from the lack of repeatability and are comparatively effort-intensive because human subjects are required. Consequently, studying changes in signal morphology, for example, due to aging or pathological effects, is practically impossible. As a tool to study these effects, a hardware PPG simulator has been developed: this is a phantom which simulates and generates both 1D and locally resolved 2D optical PPG signals. Here, we demonstrate that it is possible to generate PPG-like signals with various signal morphologies by means of a purely optoelectronic setup, namely an LED array, and to analyze them by means of PPGI. Signals extracted via a camera show good agreement with simulated generated signals. In fact, the first phantom design is suitable to demonstrate this qualitatively.
机译:尚未通过视频摄像机远程捕获光电容积描记术(PPG)信号,也称为光电容积描记术成像(PPGI)。通常,PPGI是在实验室中由测试人员进行调查的。尽管这些体内测试具有生成真实数据的优势,但它们却缺乏可重复性,并且由于需要人类受试者而相对耗费大量精力。因此,实际上不可能研究例如由于衰老或病理效应而引起的信号形态变化。作为研究这些影响的工具,已经开发了硬件PPG模拟器:这是一种幻像,可以模拟和生成1D和本地解析的2D PPG光学信号。在这里,我们证明可以通过纯光电装置(即LED阵列)生成具有各种信号形态的类PPG信号,并通过PPGI对其进行分析。通过摄像机提取的信号与模拟生成的信号显示出良好的一致性。实际上,第一个幻像设计适合定性地证明这一点。

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