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Non-contact arrhythmia assessment in natural settings: a step toward preventive cardiac care

机译:自然环境中的非接触性心律失常评估:迈向预防性心脏护理的一步

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Cardiovascular disease is a major contributor to US morbidity. Taking preventive action can greatly reduce or eliminate the impact on quality of life. However, many issues often go undetected until the patient presents a physical symptom. Non-intrusive continuous cardiovascular monitoring systems may make detecting and monitoring abnormalities earlier feasible. One candidate system is photoplethysmographic imaging (PPGI), which is able to assess arterial blood pulse characteristics in one or multiple individuals remotely from a distance. In this case study, we showed that PPGI can be used to detect cardiac arrhythmia that would otherwise require contact-based monitoring techniques. Using a novel system, coded hemodynamic imaging (CHI), strong temporal blood pulse waveform signals were extracted at a distance of 1.5 m from the participant using 850-1000 nm diffuse illumination for deep tissue penetration. Data were recorded at a sampling rate of 60 Hz, providing a temporal resolution of 17 ms. The strong fidelity of the signal allowed for both temporal and spectral assessment of abnormal blood pulse waveforms, ultimately to detect the onset of abnormal cardiac events. Data from a participant with arrhythmia was analyzed and compared against normal blood pulse waveform data to validate CHI's ability to assess cardiac arrhythmia. Results indicate that CHI can be used as a non-intrusive continuous cardiac monitoring system.
机译:心血管疾病是美国发病率的主要贡献者。采取预防措施可以大大减少或消除对生活质量的影响。然而,在患者提出身体症状之前,许多问题通常会未被发现。非侵入式连续心血管监测系统可能使检测和监测异常的可行性。一个候选系统是光学溶血性成像(PPGI),其能够远离远离距离的一个或多个单独的动脉血脉冲特性。在这种情况下,我们表明PPGI可用于检测否则需要基于接触的监测技术的心脏心律失常。使用新型系统,编码血液动力成像(CHI),使用850-1000nm漫反射照明的参与者在1.5米的距离下提取强的时间血脉冲波形信号,以进行深度组织渗透。数据以60 Hz的采样率记录,提供17 ms的时间分辨率。允许信号和光谱评估异常血脉冲波形的信号的强烈保真度最终检测异常心脏事件的开始。分析来自对心律失常的参与者的数据,并与正常血脉冲波形数据进行比较,以验证CHI评估心律失常的能力。结果表明,CHI可用作非侵入式连续心脏监测系统。

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