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一种用于健康、诊断以及术中与术后监测的重症监护病房级透气心脏电子皮肤。

An ICU-grade breathable cardiac electronic skin for health, diagnostics, and intraoperative and postoperative monitoring.

作者信息

Zhuang Qiuna, Yao Kuanming, Song Xian, Zhang Qiang, Zhang Chi, Wang Huiming, Yang Ruofan, Zhao Guangyao, Li Shanghang, Shu Haihua, Huang Qiyao, Chai Yunfei, Yu Xinge, Zheng Zijian

机构信息

Laboratory for Advanced Interfacial Materials and Devices, Department of Applied Biology and Chemical Technology, Hong Kong Polytechnic University, Hong Kong SAR, China.

Department of Biomedical Engineering, City University of Hong Kong, Hong Kong SAR, China.

出版信息

Sci Adv. 2025 Mar 21;11(12):eadu3146. doi: 10.1126/sciadv.adu3146. Epub 2025 Mar 19.

Abstract

Cardiovascular digital health technologies potentially outperform traditional clinical equipment through their noninvasive, on-body, and portable monitoring with mass cardiac data beyond the confines of inpatient settings. However, existing cardiovascular wearables have difficulty with providing medical-grade accuracy with a chronically comfortable and stable patient/consumer device interface for reliable clinical decision-making. Here, we develop an intensive care unit (ICU)-grade breathable cardiac electronic skin system (BreaCARES) for real-time, wireless, continuous, and comfortable cardiac care. BreaCARES enables a novel digital cardiac care platform for health care, outpatient diagnostics, stable intraoperative monitoring during heart surgery, and continuous and comfortable inpatient postoperative cardiac care, exhibiting ICU-grade accuracy while having superior anti-interference stability, portability, and long-term on-skin biocompatibility to the clinically and commercially available cardiac monitors in cardiovascular ICUs.

摘要

心血管数字健康技术可能通过其非侵入性、可穿戴式和便携式监测方式,超越传统临床设备,获取超出住院环境限制的大量心脏数据。然而,现有的心血管可穿戴设备难以提供医疗级别的准确性,难以在长期舒适且稳定的患者/消费者设备界面上实现可靠的临床决策。在此,我们开发了一种重症监护病房(ICU)级别的透气心脏电子皮肤系统(BreaCARES),用于实时、无线、连续且舒适的心脏护理。BreaCARES为医疗保健、门诊诊断、心脏手术期间稳定的术中监测以及连续且舒适的住院术后心脏护理提供了一个全新的数字心脏护理平台,在心血管重症监护病房中,该系统展现出ICU级别的准确性,同时具有优于临床和商业可用心脏监测器的抗干扰稳定性、便携性和长期皮肤生物相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/135f/11922033/282632f0146d/sciadv.adu3146-f1.jpg

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