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Epidermal devices for noninvasive precise and continuous mapping of macrovascular and microvascular blood flow

机译:用于无创精确和连续绘制大血管和微血管血流的表皮设备

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摘要

Continuous monitoring of variations in blood flow is vital in assessing the status of microvascular and macrovascular beds for a wide range of clinical and research scenarios. Although a variety of techniques exist, most require complete immobilization of the subject, thereby limiting their utility to hospital or clinical settings. Those that can be rendered in wearable formats suffer from limited accuracy, motion artifacts, and other shortcomings that follow from an inability to achieve intimate, noninvasive mechanical linkage of sensors with the surface of the skin. We introduce an ultrathin, soft, skin-conforming sensor technology that offers advanced capabilities in continuous and precise blood flow mapping. Systematic work establishes a set of experimental procedures and theoretical models for quantitative measurements and guidelines in design and operation. Experimental studies on human subjects, including validation with measurements performed using state-of-the-art clinical techniques, demonstrate sensitive and accurate assessment of both macrovascular and microvascular flow under a range of physiological conditions. Refined operational modes eliminate long-term drifts and reduce power consumption, thereby providing steps toward the use of this technology for continuous monitoring during daily activities.
机译:连续监测血流变化对于评估各种临床和研究情况的微血管床和大血管床的状况至关重要。尽管存在多种技术,但是大多数技术需要完全固定受试者,从而将其效用限制在医院或临床环境中。那些可以以可穿戴格式呈现的图像遭受精度有限,运动伪影以及由于无法实现传感器与皮肤表面的紧密,非侵入性机械链接而导致的其他缺点。我们引入了一种超薄,柔软,符合皮肤的传感器技术,该技术在连续精确的血流映射中提供了先进的功能。系统的工作建立了一套用于定量测量的实验程序和理论模型,以及设计和操作指南。对人类受试者的实验研究,包括使用最先进的临床技术进行的测量验证,证明了在一系列生理条件下对大血管和微血管流量的敏感而准确的评估。完善的操作模式消除了长期漂移并降低了功耗,从而为在日常活动期间持续监控该技术提供了步骤。

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