Yoon Jaeyoung, Joo Yunsik, Oh Eunho, Lee Byeongmoon, Kim Daesik, Lee Seunghwan, Kim Taehoon, Byun Junghwan, Hong Yongtaek
Department of Electrical and Computer Engineering Inter University Semiconductor Research Center (ISRC) Seoul National University Seoul 08826 Republic of Korea.
Department of Mechanical and Aerospace Engineering Institute of Advanced Machines and Design (IAMD) Soft Robotics Research Center (SRRC) Seoul National University Seoul 08826 Republic of Korea.
Adv Sci (Weinh). 2018 Dec 20;6(5):1801682. doi: 10.1002/advs.201801682. eCollection 2019 Mar 6.
Precise monitoring of human body signals can be achieved by soft, conformal contact and precise arrangement of wearable devices to the desired body positions. So far, no design and fabrication methodology in soft wearable devices is able to address the variations in the form factor of the human body such as the various sizes and shapes of individual body parts, which can significantly cause misalignments and the corresponding inaccurate monitoring. Here, a concept of soft modular electronic blocks (SMEBs) enabling the assembly of soft wearable systems onto human skin with functions and layouts tailored to the form factors of individuals' bodies is presented. Three types of SMEBs are developed as fundamental building blocks for functional modularization. The physical design of SMEBs is optimized for a mechanically stable island-bridge configuration. The prepared SMEBs can be integrated onto a target body part through rapid, room-temperature (RT) assembly (<5 s) using an oxygen plasma-induced siloxane bonding method. A soft metacarpophalangeal (MP) joints flexion monitoring system that is tailored to allow for accurate monitoring for multiple individuals with unique joint and hand sizes is demonstrated.
通过柔软、贴合的接触以及将可穿戴设备精确布置到人体所需位置,可以实现对人体信号的精确监测。到目前为止,软可穿戴设备的设计和制造方法都无法解决人体外形因素的变化问题,比如各个身体部位的不同尺寸和形状,这可能会显著导致错位以及相应的监测不准确。在此,提出了一种软模块化电子块(SMEB)的概念,它能够将软可穿戴系统组装到人体皮肤上,其功能和布局可根据个体身体的外形因素进行定制。开发了三种类型的SMEB作为功能模块化的基本构建块。SMEB的物理设计针对机械稳定的岛桥结构进行了优化。使用氧等离子体诱导的硅氧烷键合方法,通过快速室温(RT)组装(<5秒),可以将制备好的SMEB集成到目标身体部位上。展示了一种软掌指(MP)关节屈曲监测系统,该系统经过定制,能够对具有独特关节和手部尺寸的多个个体进行准确监测。