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用于双峰可穿戴心脏监测器的多功能多孔软复合材料。

Multifunctional Porous Soft Composites for Bimodal Wearable Cardiac Monitors.

作者信息

Chen Zehua, Chen Sicheng, Andrabi Syed Muntazir, Zhao Ganggang, Xu Yadong, Ouyang Qunle, Busquets Milton E, Qian Xiaoyan, Gautam Sandeep, Chen Pai-Yen, Xie Jingwei, Yan Zheng

机构信息

Department of Chemical and Biomedical Engineering, University of Missouri, Columbia, MO 65211, USA.

Department of Surgery-Transplant and Mary and Dick Holland Regenerative Medicine Program, University of Nebraska Medical Center, Omaha, NE 68130, USA.

出版信息

AIChE J. 2024 Dec;70(12). doi: 10.1002/aic.18576. Epub 2024 Aug 13.

Abstract

Wearable heart monitors are crucial for early diagnosis and treatment of heart diseases in non-clinical settings. However, their long-term applications require skin-interfaced materials that are ultrasoft, breathable, antibacterial, and possess robust, enduring on-skin adherence-features that remain elusive. Here, we have developed multifunctional porous soft composites that meet all these criteria for skin-interfaced bimodal cardiac monitoring. The composite consists of a bilayer structure featuring phase-separated porous elastomer and slot-die-coated biogel. The porous elastomer ensures ultrasoftness, breathability, ease of handling, and mechanical integrity, while the biogel enables long-term on-skin adherence. Additionally, we incorporated ε-polylysine in the biogel to offer antibacterial properties. Also, the conductive biogel embedded with silver nanowires was developed for use in electrocardiogram sensors to reduce contact impedance and ensure high-fidelity recordings. Furthermore, we assembled a bimodal wearable cardiac monitoring system that demonstrates high-fidelity recordings of both cardiac electrical (electrocardiogram) and mechanical (seismocardiogram) signals over a 14-day testing period.

摘要

可穿戴心脏监测器对于在非临床环境中早期诊断和治疗心脏病至关重要。然而,它们的长期应用需要超柔软、透气、抗菌且具有牢固持久的皮肤附着特性的皮肤接口材料,而这些特性仍然难以实现。在此,我们开发了满足皮肤接口双峰心脏监测所有这些标准的多功能多孔软复合材料。该复合材料由具有相分离多孔弹性体和狭缝模涂覆生物凝胶的双层结构组成。多孔弹性体确保了超柔软性、透气性、易于操作和机械完整性,而生物凝胶则实现了长期的皮肤附着。此外,我们在生物凝胶中加入了ε-聚赖氨酸以提供抗菌性能。此外,还开发了嵌入银纳米线的导电生物凝胶用于心电图传感器,以降低接触阻抗并确保高保真记录。此外,我们组装了一个双峰可穿戴心脏监测系统,该系统在14天的测试期内展示了对心脏电(心电图)和机械(心震图)信号的高保真记录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/071f/11661810/11498555741e/nihms-2015139-f0001.jpg

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