Inside Back Cover: Volume 3 Issue 5

IF 24.5 Q1 CHEMISTRY, PHYSICAL Interdisciplinary Materials Pub Date : 2024-09-11 DOI:10.1002/idm2.12220
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Abstract

Inside Back Cover: In a study reported at doi:10.1002/idm2.12198, a novel flexible, conductive, and self-adhesive dry electrode was designed that can steadily collect bioelectrical signals from the human brain, heart, and muscles during sustained exercise. Even under stretched and deformed conditions, the electrode maintains good conductivity, as evidenced by the sustained brightness of a connected light bulb. This innovation opens up new possibilities for long-term medical monitoring in complex daily environments and will pave the way for the further development of wearable medical devices and remote health monitoring.

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封底内页第 3 卷 第 5 期
封底内页:doi:10.1002/idm2.12198上报道的一项研究设计出了一种新型柔性、导电和自粘干式电极,它能在持续运动过程中稳定地收集来自人脑、心脏和肌肉的生物电信号。即使在拉伸和变形的条件下,电极也能保持良好的导电性,连接灯泡的持续亮度就是证明。这项创新为在复杂的日常环境中进行长期医疗监测提供了新的可能性,并将为可穿戴医疗设备和远程健康监测的进一步发展铺平道路。
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Issue Information Outside Front Cover: Volume 3 Issue 5 Inside Front Cover: Volume 3 Issue 5 Inside Back Cover: Volume 3 Issue 5 Outside Back Cover: Volume 3 Issue 5
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