用模型优化机器人步态训练参数,实现个性化辅助。
Model-based optimisation for the personalisation of robot-assisted gait training
- 基于人体肌肉骨骼模型构建优化算法,定制控制参数。
- 模拟显示个性化参数显著提升辅助效果,实验结果有差异。
- 适合关注康复机器人个性化设计的研究者与临床医生。
个性化康复对促进步态独立性和生活质量至关重要。机器人可通过系统化提供步态训练支持来增强治疗效果,但通常采用通用控制方法,可能不理想。本文提出一种基于模型的优化方法,用于设计和调优个性化机器人控制器。以单侧跟踪任务为例,将「按需提供辅助」作为优化目标,利用肌肉骨骼模型开发个性化干预方案。招募18名健康参与者(年龄26±4岁),获取其个性化控制参数,并对比个性化与非个性化控制器的表现。仿真结果显示个性化参数显著提升辅助效果;实验中,6人表现显著改善,8人无明显变化,4人表现更差。两种控制器均表现出高个体间和个体内差异。研究强调个性化控制在机器人辅助步态训练中的重要性,以及改进人机交互与行为建模的必要性,以充分发挥模型优化潜力。
原文摘要 · Abstract (English)
Personalised rehabilitation can be key to promoting gait independence and quality of life. Robots can enhance therapy by systematically delivering support in gait training, but often use one-size-fits-all control methods, which can be suboptimal. Here, we describe a model-based optimisation method for designing and fine-tuning personalised robotic controllers. As a case study, we formulate the objective of providing assistance as needed as an optimisation problem, and we demonstrate how musculoskeletal modelling can be used to develop personalised interventions. Eighteen healthy participants (age = 26 +/- 4) were recruited and the personalised control parameters for each were obtained to provide assistance as needed during a unilateral tracking task. A comparison was carried out between the personalised controller and the non-personalised controller. In simulation, a significant improvement was predicted when the personalised parameters were used. Experimentally, responses varied: six subjects showed significant improvements with the personalised parameters, eight subjects showed no obvious change, while four subjects performed worse. High interpersonal and intra-personal variability was observed with both controllers. This study highlights the importance of personalised control in robot-assisted gait training, and the need for a better estimation of human-robot interaction and human behaviour to realise the benefits of model-based optimisation.
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