神经康复
可穿戴计算机
计算机科学
共形矩阵
透皮
杠杆(统计)
神经调节
系统工程
生物医学工程
材料科学
医学
工程类
康复
嵌入式系统
人工智能
药理学
刺激
内科学
复合材料
物理疗法
作者
Sicheng Chen,Qunle Ouyang,Xuan-Bo Miao,Feng Zhang,Zehua Chen,Xiaoyan Qian,Jinwei Xie,Zheng Yan
标识
DOI:10.1007/s40820-025-01890-2
摘要
Abstract Wearable ultrasound devices represent a transformative advancement in therapeutic applications, offering noninvasive, continuous, and targeted treatment for deep tissues. These systems leverage flexible materials (e.g., piezoelectric composites, biodegradable polymers) and conformable designs to enable stable integration with dynamic anatomical surfaces. Key innovations include ultrasound-enhanced drug delivery through cavitation-mediated transdermal penetration, accelerated tissue regeneration via mechanical and electrical stimulation, and precise neuromodulation using focused acoustic waves. Recent developments demonstrate wireless operation, real-time monitoring, and closed-loop therapy, facilitated by energy-efficient transducers and AI-driven adaptive control. Despite progress, challenges persist in material durability, clinical validation, and scalable manufacturing. Future directions highlight the integration of nanomaterials, 3D-printed architectures, and multimodal sensing for personalized medicine. This technology holds significant potential to redefine chronic disease management, postoperative recovery, and neurorehabilitation, bridging the gap between clinical and home-based care.
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