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Advanced passive 3D bioelectronics:powerful tool for the cardiac electrophysiology investigation
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作者 Keda Shi Chengwen He +5 位作者 Hui Pan Dong Liu Ji Zhang Weili Han Yuting Xiang Ning Hu 《Microsystems & Nanoengineering》 2025年第2期1-15,共15页
Cardiovascular diseases(CVDs)are the first cause of death globally,posing a significant threat to human health.Cardiac electrophysiology is pivotal for the understanding and management of CVDs,particularly for address... Cardiovascular diseases(CVDs)are the first cause of death globally,posing a significant threat to human health.Cardiac electrophysiology is pivotal for the understanding and management of CVDs,particularly for addressing arrhythmias.A significant proliferation of micro-nano bioelectric devices and systems has occurred in the field of cardiomyocyte electrophysiology.These bioelectronic platforms feature distinctive electrode geometries that improve the fidelity of native electrophysiological signals.Despite the prevalence of planar microelectrode arrays(MEAs)for simultaneous multichannel recording of cellular electrophysiological signals,extracellular recordings often yield suboptimal signal quality.In contrast,three-dimensional(3D)MEAs and advanced penetration strategies allow highfidelity intracellular signal detection.3D nanodevices are categorized into the active and the passive.Active devices rely on external power sources to work,while passive devices operate without external power.Passive devices possess simplicity,biocompatibility,stability,and lower power consumption compared to active ones,making them ideal for sensors and implantable applications.This review comprehensively discusses the fabrication,geometric configuration,and penetration strategies of passive 3D micro/nanodevices,emphasizing their application in drug screening and disease modeling.Moreover,we summarize existing challenges and future opportunities to develop passive micro/nanobioelectronic devices from cardiac electrophysiological research to cardiovascular clinical practice. 展开更多
关键词 cardiomyocyte electrophysiologythese cardiac electrophysiology ARRHYTHMIAS cardiovascular diseases cvds bioelectronic platforms electrode geometries cardiovascular diseases addressing arrhythmiasa
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