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Detection of physiological changes after exercise via a remote opto- physiological imaging system

机译:通过远程光生理成像系统检测运动后的生理变化

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A study of blood perfusion mapping was performed with a remote opto-physiological imaging (OPI) system coupling a sensitive CMOS camera and a custom-built resonant cavity light emitting diode (RCLED) ringlight. The setup is suitable for the remote assessment of blood perfusion in tissue over a wide range of anatomical locations. The purpose of this study is to evaluate the reliability and stability of the OPI system when measuring a cardiovascular variable of clinical interest, in this case, heart rate. To this end, the non-contact and contact photoplethysmographic (PPG) signals obtained from the OPI system and conventional PPG sensor were recorded simultaneously from each of 12 subjects before and after 5-min of cycling exercise. The time-frequency representation (TFR) method was used to visualize the time-dependent behavior of the signal frequency. The physiological parameters derived from the images captured by the OPI system exhibit comparable functional characteristics to those taken from conventional contact PPG pulse waveform measurements in both the time and frequency domains. Finally and more importantly, a previously developed opto-physiological model was employed to provide a 3-D representation of blood perfusion in human tissue which could provide a new insight into clinical assessment and diagnosis of circulatory pathology in various tissue segments.
机译:使用耦合敏感的CMOS摄像头和定制的谐振腔发光二极管(RCLED)环形灯的远程光生理成像(OPI)系统对血液灌注图进行了研究。该设置适合在广泛的解剖位置上远程评估组织中的血液灌注。这项研究的目的是在测量具有临床意义的心血管变量(在这种情况下为心率)时评估OPI系统的可靠性和稳定性。为此,在循环运动5分钟之前和之后,分别从12位受试者中分别记录了从OPI系统和常规PPG传感器获得的非接触式和容积式光电容积描记(PPG)信号。时频表示(TFR)方法用于可视化信号频率随时间变化的行为。从OPI系统捕获的图像得出的生理参数在时域和频域均表现出与常规接触PPG脉冲波形测量结果相当的功能特性。最后,更重要的是,采用先前开发的光生理模型来提供人体组织中血液灌注的3-D表示,这可以为临床评估和诊断各种组织节段中的循环病理学提供新的见识。

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