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通过非侵入性策略实现上肢假肢的本体感觉融合:综述。

Integration of proprioception in upper limb prostheses through non-invasive strategies: a review.

机构信息

Research Unit of Neurophysiology and Neuroengineering of Human-Technology Interaction (NeXTlab), Università Campus Bio-Medico Di Roma, Via Álvaro Del Portillo 21, 00128, Rome, Italy.

Research Unit of Neurology, Department of Medicine and Surgery, Università Campus Bio-Medico Di Roma, Via Alvaro del Portillo, 21, 00128, Rome, Italy.

出版信息

J Neuroeng Rehabil. 2023 Sep 9;20(1):118. doi: 10.1186/s12984-023-01242-4.

Abstract

Proprioception plays a key role in moving our body dexterously and effortlessly. Nevertheless, the majority of investigations evaluating the benefits of providing supplemental feedback to prosthetics users focus on delivering touch restitution. These studies evaluate the influence of touch sensation in an attempt to improve the controllability of current robotic devices. Contrarily, investigations evaluating the capabilities of proprioceptive supplemental feedback have yet to be comprehensively analyzed to the same extent, marking a major gap in knowledge within the current research climate. The non-invasive strategies employed so far to restitute proprioception are reviewed in this work. In the absence of a clearly superior strategy, approaches employing vibrotactile, electrotactile and skin-stretch stimulation achieved better and more consistent results, considering both kinesthetic and grip force information, compared with other strategies or any incidental feedback. Although emulating the richness of the physiological sensory return through artificial feedback is the primary hurdle, measuring its effects to eventually support the integration of cumbersome and energy intensive hardware into commercial prosthetic devices could represent an even greater challenge. Thus, we analyze the strengths and limitations of previous studies and discuss the possible benefits of coupling objective measures, like neurophysiological parameters, as well as measures of prosthesis embodiment and cognitive load with behavioral measures of performance. Such insights aim to provide additional and collateral outcomes to be considered in the experimental design of future investigations of proprioception restitution that could, in the end, allow researchers to gain a more detailed understanding of possibly similar behavioral results and, thus, support one strategy over another.

摘要

本体感觉在使我们的身体灵巧而轻松地运动中起着关键作用。然而,评估向假肢使用者提供补充反馈的益处的大多数研究都集中在提供触觉恢复上。这些研究评估了触觉感觉的影响,试图提高当前机器人设备的可控性。相反,评估本体感觉补充反馈能力的研究尚未得到全面分析,这在当前研究环境中是一个重要的知识空白。本文回顾了迄今为止用于恢复本体感觉的非侵入性策略。在缺乏明显占优策略的情况下,与其他策略或任何偶然反馈相比,使用振动触觉、电触觉和皮肤拉伸刺激的方法在考虑运动觉和握力信息时,能获得更好和更一致的结果。尽管通过人工反馈来模拟生理感觉反馈的丰富性是主要的障碍,但测量其效果最终支持将繁琐且能源密集型的硬件集成到商业假肢设备中可能是一个更大的挑战。因此,我们分析了以前研究的优缺点,并讨论了将客观测量(如神经生理参数)以及假肢体现和认知负荷的测量与性能的行为测量相结合的可能好处。这些见解旨在为未来本体感觉恢复的研究实验设计提供额外的和附带的结果,这最终可以使研究人员更详细地了解可能相似的行为结果,并因此支持一种策略而不是另一种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b000/10493033/da2b2df3a885/12984_2023_1242_Fig1_HTML.jpg

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