Bruin Biometrics LLC (BBI), 10877 Wilshire Blvd., Suite 1600, Los Angeles, CA 90024, USA.
Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv 6997801, Israel.
Med Eng Phys. 2019 Nov;73:92-99. doi: 10.1016/j.medengphy.2019.07.011. Epub 2019 Jul 26.
The noninvasive SEM Scanner technology described herein assesses the fluid contents of human skin and subdermal tissues to a depth of several millimeters. The device makes a direct steady-state measurement of the capacitance of its sensor, which is affected by the equivalent dielectric constant of the material (i.e. the layered tissue structures) that is within the electric field between the sensor electrodes. Calculation of a "delta" value that compares measurements from several sites, some of which will be healthy tissue, compensates for systemic changes and provides a consistent measure of tissue health condition. We describe the hardware, software and rigorous laboratory testing and computational modeling of the principles of operation of the SEM Scanner, for the first time in the literature. These studies revealed a detection depth of approximately 4 mm for an electric potential of 0.3 V. The novel SEM Scanner provides the first useful technological means to assess the health status of tissues below the stratum corneum in patients who are at-risk for pressure injuries.
本文所述的无创 SEM 扫描仪技术可评估人类皮肤和皮下组织的几毫米深度的流体含量。该设备对其传感器的电容进行直接稳态测量,该电容受电场中传感器电极之间的材料(即分层组织结构)等效介电常数的影响。通过计算“差值”值来比较来自多个部位的测量值,其中一些将是健康组织,从而补偿系统变化并提供组织健康状况的一致衡量标准。我们首次在文献中描述了 SEM 扫描仪的硬件、软件和操作原理的严格实验室测试和计算建模。这些研究表明,对于 0.3V 的电势,检测深度约为 4 毫米。新型 SEM 扫描仪为评估处于压力性损伤风险中的患者角质层以下组织的健康状况提供了第一个有用的技术手段。