PWV capacity pressure
收藏ieee-dataport.org2025-03-23 收录
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Data based on capacitive and pressure measurement on physical vascular model developed at out university. We used capacitve sensing for dielectric volume change of artificial arterial segment on two measurement sites. For verification we used pressure sensors commonly used in medical applications to measure blood pressure or fluid pressure within the human body. Overall, your approach combining capacitive sensing and pressure measurements provides a comprehensive analysis of the dielectric volume changes in the artificial arterial segment. This interdisciplinary approach, merging principles from electrical engineering (capacitive sensing) and medical practice (pressure sensing), enables a more comprehensive understanding of the vascular model and its behavior.
本数据集基于我大学开发的真实血管模型的电容和压力测量数据。我们利用电容传感技术,对人工动脉段的两个测量点进行介电体积变化的检测。为验证目的,我们采用了在医疗应用中常用的压力传感器,以测量人体内的血压或流体压力。总体而言,您的方案将电容传感与压力测量相结合,对人工动脉段的介电体积变化进行了全面分析。这种跨学科的方法,将电气工程(电容传感)与医疗实践(压力传感)的原理相融合,有助于更深入地理解血管模型及其行为。
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