LINP2, UPL, UFR STAPS, Université Paris Nanterre, 200 Avenue de la République, 92001 Nanterre, France.
CAYLAR, 14 Avenue du Québec, 91140 Villebonne sur Yvette, France.
Sensors (Basel). 2023 May 29;23(11):5158. doi: 10.3390/s23115158.
Upper limb exoskeletons may confer significant mechanical advantages across a range of tasks. The potential consequences of the exoskeleton upon the user's sensorimotor capacities however, remain poorly understood. The purpose of this study was to examine how the physical coupling of the user's arm to an upper limb exoskeleton influenced the perception of handheld objects. In the experimental protocol, participants were required to estimate the length of a series of bars held in their dominant right hand, in the absence of visual feedback. Their performance in conditions with an exoskeleton fixed to the forearm and upper arm was compared to conditions without the upper limb exoskeleton. Experiment 1 was designed to verify the effects of attaching an exoskeleton to the upper limb, with object handling limited to rotations of the wrist only. Experiment 2 was designed to verify the effects of the structure, and its mass, with combined movements of the wrist, elbow, and shoulder. Statistical analysis indicated that movements performed with the exoskeleton did not significantly affect perception of the handheld object in experiment 1 (BF = 2.3) or experiment 2 (BF = 4.3). These findings suggest that while the integration of an exoskeleton complexifies the architecture of the upper limb effector, this does not necessarily impede transmission of the mechanical information required for human exteroception.
上肢外骨骼在一系列任务中可能具有显著的机械优势。然而,外骨骼对用户感觉运动能力的潜在影响仍知之甚少。本研究旨在研究用户手臂与上肢外骨骼的物理耦合如何影响对手持物体的感知。在实验方案中,要求参与者在没有视觉反馈的情况下,估计他们惯用右手持有的一系列棒的长度。将外骨骼固定在前臂和上臂上的情况下与没有外骨骼的情况下进行比较。实验 1 旨在验证将外骨骼附接到上肢的效果,对象处理仅限于手腕的旋转。实验 2 旨在验证结构及其质量的影响,包括手腕、肘部和肩部的组合运动。统计分析表明,在实验 1(BF=2.3)或实验 2(BF=4.3)中,使用外骨骼进行的运动并没有显著影响对手持物体的感知。这些发现表明,尽管外骨骼的集成使上肢效应器的结构变得复杂,但这并不一定妨碍对外知觉所需的机械信息的传递。