Williams Andrew D, Vette Albert H
Department of Biomedical Engineering, University of Alberta.
Department of Biomedical Engineering, University of Alberta; Department of Mechanical Engineering, University of Alberta; Glenrose Rehabilitation Hospital, Alberta Health Services;
J Vis Exp. 2019 Jan 20(143). doi: 10.3791/58611.
Postural perturbations, motion tracking, and sensory feedback are modern techniques used to challenge, assess, and train upright sitting, respectively. The goal of the developed protocol is to construct and operate a sitting platform that can be passively destabilized while an inertial measurement unit quantifies its motion and vibrating elements deliver tactile feedback to the user. Interchangeable seat attachments alter the stability level of the device to safely challenge sitting balance. A built-in microcontroller allows fine-tuning of the feedback parameters to augment sensory function. Posturographic measures, typical of balance assessment protocols, summarize the motion signals acquired during timed balance trials. No dynamic sitting protocol to date provides variable challenge, quantification, and sensory feedback free of laboratory constraints. Our results demonstrate that non-disabled users of the device exhibit significant changes in posturographic measures when balance difficulty is altered or vibrational feedback provided. The portable, versatile device has potential applications in rehabilitation (following skeletal, muscular, or neurological injury), training (for sports or spatial awareness), entertainment (via virtual or augmented reality), and research (of sitting-related disorders).
姿势扰动、运动跟踪和感官反馈是分别用于挑战、评估和训练直立坐姿的现代技术。所开发方案的目标是构建并操作一个坐姿平台,该平台可被动地使其不稳定,同时惯性测量单元对其运动进行量化,并且振动元件向用户提供触觉反馈。可互换的座椅附件可改变设备的稳定程度,以安全地挑战坐姿平衡。内置微控制器允许对反馈参数进行微调,以增强感官功能。姿势描记测量是平衡评估方案的典型方法,它总结了在定时平衡试验期间获取的运动信号。迄今为止,尚无动态坐姿方案能在不受实验室限制的情况下提供可变的挑战、量化和感官反馈。我们的结果表明,当改变平衡难度或提供振动反馈时,该设备的非残疾用户在姿势描记测量方面会出现显著变化。这种便携式、多功能设备在康复(骨骼、肌肉或神经损伤后)、训练(用于运动或空间感知)、娱乐(通过虚拟现实或增强现实)和研究(与坐姿相关的疾病)方面具有潜在应用。