Bioinspired nanoplatforms for human-machine interfaces: Recent progress in materials and device applications

纳米技术 可穿戴计算机 生物相容性材料 可穿戴技术 生物电子学 计算机科学 人类健康 专区 系统工程 工程类 材料科学 生物传感器 医学 生物医学工程 嵌入式系统 环境卫生 工程物理
作者
Pasha W. Sayyad,Sang‐Joon Park,Tae‐Jun Ha
出处
期刊:Biotechnology Advances [Elsevier]
卷期号:70: 108297-108297 被引量:3
标识
DOI:10.1016/j.biotechadv.2023.108297
摘要

The panoramic characteristics of human–machine interfaces (HMIs) have prompted the needs to update the biotechnology community with the recent trends, developments, and future research direction toward next-generation bioelectronics. Bioinspired materials are promising for integrating various bioelectronic devices to realize HMIs. With the advancement of scientific biotechnology, state-of-the-art bioelectronic applications have been extensively investigated to improve the quality of life by developing and integrating bioinspired nanoplatforms in HMIs. This review highlights recent trends and developments in the field of biotechnology based on bioinspired nanoplatforms by demonstrating recently explored materials and cutting-edge device applications. Section 1 introduces the recent trends and developments of bioinspired nanomaterials for HMIs. Section 2 reviews various flexible, wearable, biocompatible, and biodegradable nanoplatforms for bioinspired applications. Section 3 furnishes recently explored substrates as carriers for advanced nanomaterials in developing HMIs. Section 4 addresses recently invented biomimetic neuroelectronic, nanointerfaces, biointerfaces, and nano/microfluidic wearable bioelectronic devices for various HMI applications, such as healthcare, biopotential monitoring, and body fluid monitoring. Section 5 outlines designing and engineering of bioinspired sensors for HMIs. Finally, the challenges and opportunities for next-generation bioinspired nanoplatforms in extending the potential on HMIs are discussed for a near-future scenario. We believe this review can stimulate the integration of bioinspired nanoplatforms into the HMIs in addition to wearable electronic skin and health-monitoring devices while addressing prevailing and future healthcare and material-related problems in biotechnologies.
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