Gao Run Ze, Marriott Kendal, Dickerson Clark R, Maly Monica R, Ren Carolyn L
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:4502-4505. doi: 10.1109/EMBC44109.2020.9175677.
A dynamic and low-profile unloader tibiofemoral knee brace is designed and prototyped by synergizing concepts from the fields of microfluidics and soft robotics. Microfluidics provides strategies for miniaturization and multiplexing while soft robotics afford the tools to create soft fluidic actuators and allow compliant and inherently safe robotic assistance as part of clothing. The unloader knee brace provides dynamic response during the gait cycle, where a three-point leverage torque is provided only during the stance phase to contribute to joint stability when required and enhance comfort and compliance.Clinical Relevance- This novel soft robotic brace has the potential to reduce device abandonment due to aesthetics, user non-compliance and discomfort due to a constant three-point leverage torque during the gait cycle. Also, this air microfluidics enabled soft robotic knee brace could be expanded upon to improve the efficacy of braces in general and augment the effects of physical therapy, rehabilitation and treatment of musculoskeletal conditions.
一种动态且外形低调的卸载式胫股膝关节支具,通过融合微流体学和软机器人技术领域的概念进行设计和原型制作。微流体学提供了小型化和多路复用的策略,而软机器人技术则提供了创建软流体致动器的工具,并允许作为衣物一部分提供柔顺且本质安全的机器人辅助。卸载式膝关节支具在步态周期中提供动态响应,其中仅在站立阶段提供三点杠杆扭矩,以在需要时有助于关节稳定性,并提高舒适度和顺应性。临床相关性——这种新型软机器人支具有潜力减少因美观、用户不依从以及步态周期中持续的三点杠杆扭矩导致的不适而造成的设备弃用情况。此外,这种基于空气微流体学的软机器人膝关节支具可以进一步改进,以总体上提高支具的功效,并增强对肌肉骨骼疾病的物理治疗、康复和治疗效果。