计算机科学
回廊的
动态心电图
实时计算
纳米技术
生物医学工程
材料科学
医学
内科学
作者
Xun Zhao,Yihao Zhou,William Kwak,Aaron Li,Shaolei Wang,Marklin Dallenger,Songyue Chen,Yuqi Zhang,Allison Lium,Jun Chen
标识
DOI:10.1038/s41467-024-52462-8
摘要
Abstract The severe mismatch between solid bioelectronics and dynamic biological tissues has posed enduring challenges in the biomonitoring community. Here, we developed a reconfigurable liquid cardiac sensor capable of adapting to dynamic biological tissues, facilitating ambulatory cardiac monitoring unhindered by motion artifacts or interference from other biological activities. We employed an ultrahigh-resolution 3D scanning technique to capture tomographic images of the skin on the wrist. Then, we established a theoretical model to gain a deep understanding of the intricate interaction between our reconfigurable sensor and dynamic biological tissues. To properly elucidate the advantages of this sensor, we conducted cardiac monitoring alongside benchmarks such as the electrocardiogram. The liquid cardiac sensor was demonstrated to produce stable signals of high quality (23.1 dB) in ambulatory settings.
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