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用于定量心血管监测的滚动快门散斑体积描记法。

Rolling shutter speckle plethysmography for quantitative cardiovascular monitoring.

作者信息

Lee Yujin, Byun Sangjun, Yi Changyoon, Jung Jaewoo, Lee Seung Ah

机构信息

School of Electrical and Electronic Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.

出版信息

Biomed Opt Express. 2024 Feb 9;15(3):1540-1552. doi: 10.1364/BOE.511755. eCollection 2024 Mar 1.

Abstract

We propose a new speckle-based plethysmography technique, termed rolling shutter speckle plethysmography (RSSPG), which can quantitatively measure the velocity and volume fluctuations of blood flow during the cardiac cycle. Our technique is based on the rolling shutter speckle imaging, where the short row-by-row time differences in the rolling shutter image sensors are used to measure the temporal decorrelation behavior of vertically elongated speckles from a single image capture. Temporal analysis of the speckle field provides rich information regarding the dynamics of the scattering media, such as both the dynamic scattering fraction and the speckle decorrelation time. Using a sequence of images, RSSPG can monitor fluctuations in the blood flow dynamics while separating velocity and volume changes in blood vessels and obtaining high-quality plethysmography waveforms compared to regular photoplethysmography. We demonstrate the quantitative RSSPG based on accurate fitting of the speckle dynamics model, as well as the qualitative RSSPG based on simple row-by-row correlation (RIC) calculation for fast and robust analysis. Based on exploratory experiment, we show that RSSPG can reliably measure pulsatile waveforms and heart rate variations in various conditions, potentially providing physiologically relevant information for cardiovascular monitoring.

摘要

我们提出了一种新的基于散斑的体积描记术技术,称为卷帘式散斑体积描记术(RSSPG),它可以定量测量心动周期期间血流的速度和体积波动。我们的技术基于卷帘式散斑成像,其中卷帘式图像传感器中逐行的短时间差用于测量单次图像捕获中垂直拉长散斑的时间去相关行为。散斑场的时间分析提供了有关散射介质动力学的丰富信息,例如动态散射分数和散斑去相关时间。使用一系列图像,与常规光电容积描记术相比,RSSPG可以监测血流动力学的波动,同时分离血管中的速度和体积变化并获得高质量的体积描记术波形。我们展示了基于散斑动力学模型精确拟合的定量RSSPG,以及基于简单逐行相关性(RIC)计算的定性RSSPG,用于快速且稳健的分析。基于探索性实验,我们表明RSSPG可以在各种条件下可靠地测量搏动波形和心率变化,有可能为心血管监测提供生理相关信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6655/10942690/cc335de44f68/boe-15-3-1540-g001.jpg

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