首页> 外文会议>Conference on Multimodal Biomedical Imaging; 20080119-21; San Jose,CA(US) >Remote simultaneous dual wavelength imaging photoplethysmography: a further step towards 3-D mapping of skin blood microcirculation
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Remote simultaneous dual wavelength imaging photoplethysmography: a further step towards 3-D mapping of skin blood microcirculation

机译:远程同时双波长成像光体积描记术:皮肤血液微循环3D映射的进一步步骤

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This paper presents a camera-based imaging photoplethysmographic (PPG) system in the remote detection of PPG signals, which can contribute to construct a 3-D blood pulsation mapping for the assessment of skin blood microcirculation at various vascular depths. Spot measurement and contact sensor have been currently addressed as the primary limitations in the utilization of conventional PPG system. The introduction of the fast digital camera inspires the development of the imaging PPG system to allow ideally non-contact monitoring from a larger field of view and different tissue depths by applying multi-wavelength illumination sources. In the present research, the imaging PPG system has the capability of capturing the PPG waveform at dual wavelengths simultaneously: 660 and 880nm. A selected region of tissue is remotely illuminated by a ring illumination source (RIS) with dual-wavelength resonant cavity light emitting diodes (RCLEDs), and the backscattered photons are captured by a 10-bit CMOS camera at a speed of 21 frames/second for each wavelength. The waveforms from the imaging system exhibit comparable functionality characters with those from the conventional contact PPG sensor in both time domain and frequency domain. The mean amplitude of PPG pulsatile component is extracted from the PPG waveforms for the mapping of blood pulsation in a 3-D format. These results strongly demonstrate the capability of the imaging PPG system in displaying the waveform and the potential in 3-D mapping of blood microcirculation by a non-contact means.
机译:本文提出了一种基于相机的成像光电容积描记(PPG)系统,用于远程检测PPG信号,该系统可有助于构建3-D血液脉动图谱,以评估各种血管深度的皮肤血液微循环。当前已经将点测量和接触传感器作为使用常规PPG系统的主要限制。快速数码相机的引入激发了成像PPG系统的发展,通过应用多波长照明源,可以从更大的视野和不同的组织深度实现理想的非接触式监视。在本研究中,成像PPG系统具有同时捕获660和880nm双波长PPG波形的能力。选定的组织区域由具有双波长谐振腔发光二极管(RCLED)的环形照明源(RIS)进行远程照明,并且反向散射光子由10位CMOS相机以21帧/秒的速度捕获对于每个波长。来自成像系统的波形在时域和频域上均表现出与常规接触式PPG传感器可比的功能特征。从PPG波形中提取PPG脉动分量的平均幅度,以3-D格式映射血液脉动。这些结果有力地证明了成像PPG系统通过非接触方式显示血液微循环的3-D映射中的波形和潜力的能力。

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