神经假体
帕金森病
物理医学与康复
功能性电刺激
脑深部刺激
医学
神经科学
步态
脊髓
腰骶关节
脊髓损伤
疾病
心理学
刺激
病理
作者
Tomislav Milekovic,Eduardo Martin Moraud,Nicolo Macellari,Charlotte Moerman,Flavio Raschellà,Shiqi Sun,Matthew G. Perich,Camille Varescon,Robin Demesmaeker,Alice Bruel,Léa Bole-Feysot,Giuseppe Schiavone,Elvira Pirondini,Cheng YunLong,Hao Li,Andrea Gálvez,Sergio Daniel Hernandez-Charpak,Grégory Dumont,Jimmy Ravier,Camille G. Le Goff-Mignardot
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2023-11-01
卷期号:29 (11): 2854-2865
被引量:46
标识
DOI:10.1038/s41591-023-02584-1
摘要
People with late-stage Parkinson's disease (PD) often suffer from debilitating locomotor deficits that are resistant to currently available therapies. To alleviate these deficits, we developed a neuroprosthesis operating in closed loop that targets the dorsal root entry zones innervating lumbosacral segments to reproduce the natural spatiotemporal activation of the lumbosacral spinal cord during walking. We first developed this neuroprosthesis in a non-human primate model that replicates locomotor deficits due to PD. This neuroprosthesis not only alleviated locomotor deficits but also restored skilled walking in this model. We then implanted the neuroprosthesis in a 62-year-old male with a 30-year history of PD who presented with severe gait impairments and frequent falls that were medically refractory to currently available therapies. We found that the neuroprosthesis interacted synergistically with deep brain stimulation of the subthalamic nucleus and dopaminergic replacement therapies to alleviate asymmetry and promote longer steps, improve balance and reduce freezing of gait. This neuroprosthesis opens new perspectives to reduce the severity of locomotor deficits in people with PD. A spinal cord neuroprosthesis targeting leg motor neurons in real time improves walking and reduces freezing of gait in non-human primate models and in one individual with advanced Parkinson's disease.
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