可穿戴神经假体改善神经病患者的活动能力并减轻疼痛

Noemi Gozzi, Lauren Chee, Ingrid Odermatt, Sanne Kikkert, Greta Preatoni, Giacomo Valle, Nikolai Pfender, Felix Beuschlein, Nicole Wenderoth, Carl Zipser, Stanisa Raspopovic
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摘要

周围神经病变(PN)是糖尿病最常见的并发症。其特点是感觉缺失,通常会对健康造成严重影响,包括足部溃疡、慢性疼痛、行动不便和跌倒风险增加。然而,目前的治疗方法并不能解决该病的病因,即缺乏感觉反馈,而是旨在缓解部分和暂时的症状(如止痛药或用于溃疡愈合的药膏)。电刺激是一种很有前景的感官恢复解决方案,但它是否能引起 PN 受损神经的可感知感觉,以及是否能带来任何健康或功能方面的益处,目前还不得而知。为此,我们设计了一种可穿戴的感觉神经假体(NeuroStep),在脚踝处提供定向神经刺激,以恢复脚部失去的感觉。我们在 14 名患有 PN 的参与者中进行了测试,评估了其对功能结果和疼痛的影响,以及与恢复感觉相关的皮层激活情况。我们的系统能够恢复所有参与者失去的感觉。与健康人(22 人)相比,PN 患者的神经兴奋性和敏感性明显降低。得益于神经刺激,参与者的步幅和功能性步态都得到了改善,跌倒风险较高的人改善得更明显。全天使用 NeuroStep 可使神经病理性疼痛在临床上显著减轻 30.4% ± 9.2%。通过 fMRI 测量,恢复的感觉激活了大脑皮层模式,类似于脚部的自然感觉,因此无需用户进行训练。NeuroStep 恢复了 PN 参与者的直观感觉,改善了活动能力并减轻了疼痛,有可能取代多种低效治疗方法。由于其功能和健康方面的优势,它有望大幅提高患者的生活质量,同时为新的有效神经调控疗法铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wearable neuroprosthesis improves mobility and reduces pain in neuropathic participants
Peripheral neuropathy (PN) is the most common complication of diabetes. It is characterized by sensory loss which often causes major health consequences including foot ulceration, chronic pain, poor mobility and increased risk of falls. However, present treatments do not counteract the cause of the disease, namely lack of sensory feedback, but rather aim at partial and temporal symptoms relief (e.g. analgesics for pain or creams for ulcers healing). Electrical stimulation is a promising solution for sensory restoration, but it is yet unknown if it can elicit perceivable sensations in PN damaged nerves and whether it could lead to any health or functional benefits. To this aim, we designed a wearable sensory neuroprosthesis providing targeted neurostimulation at the ankle level (NeuroStep) restoring feet lost sensations. We tested it in 14 participants with PN, evaluating its effects on functional outcomes and pain, and the cortical activation related to the restored sensations. Our system was able to restore lost sensations in all participants. The nerves of PN participants resulted significantly less excitable and sensitive than healthy individuals (N=22). Thanks to the neurostimulation, participants improved cadence and functional gait, with even stronger improvements in individuals with higher risk of falls. A full day of NeuroStep use led to a clinically significant reduction of 30.4% ± 9.2% in neuropathic pain. Restored sensations activated cortical patterns, as measured via fMRI, similar to the naturally located foot sensations, thus not requiring training by the user. NeuroStep restores intuitive sensations in PN participants, improving mobility and decreasing pain, possibly replacing multiple inefficient treatments. It holds potential to drastically improve patients’ quality of life thanks to functional and health benefits, while paving the way to new effective neuromodulation treatments.
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