用于无监督监测区域麻醉效果的远程光电容积脉搏波描记系统

U. Rubins, A. Miscuks, Z. Marcinkevics, M. Lange
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引用次数: 3

摘要

确定区域麻醉(RA)水平对麻醉师和外科医生都至关重要,了解RA水平可以保护患者并减少手术时间。通常检测RA的水平,通常采用简单的主观(敏感性试验)和复杂的定量方法(热成像、神经肌图等),但目前还没有一种标准化的客观检测和评估RA的方法。在这项研究中,先进的远程光电体积脉搏成像(rPPG)系统用于无监督监测人类手掌RA。rPPG系统由带有绿色滤光片的紧凑型摄像机、作为光源的手术灯和带有定制开发软件的计算机组成。算法在Matlab软件中实现,识别手掌和两个皮节(内侧神经支配和尺神经支配),实时计算灌注图和灌注变化,检测RA的效果。7例接受手外科手术的患者(年龄18-80岁)在测量期间接受了周围神经臂丛阻滞。临床实验表明,我们的rPPG系统能够对RA进行无监督监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remote photoplethysmography system for unsupervised monitoring regional anesthesia effectiveness
Determining the level of regional anesthesia (RA) is vitally important to both an anesthesiologist and surgeon, also knowing the RA level can protect the patient and reduce the time of surgery. Normally to detect the level of RA, usually a simple subjective (sensitivity test) and complicated quantitative methods (thermography, neuromyography, etc.) are used, but there is not yet a standardized method for objective RA detection and evaluation. In this study, the advanced remote photoplethysmography imaging (rPPG) system for unsupervised monitoring of human palm RA is demonstrated. The rPPG system comprises compact video camera with green optical filter, surgical lamp as a light source and a computer with custom-developed software. The algorithm implemented in Matlab software recognizes the palm and two dermatomes (Medial and Ulnar innervation), calculates the perfusion map and perfusion changes in real-time to detect effect of RA. Seven patients (aged 18-80 years) undergoing hand surgery received peripheral nerve brachial plexus blocks during the measurements. Clinical experiments showed that our rPPG system is able to perform unsupervised monitoring of RA.
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