Flores África, López-Santos Diego, García-Alías Guillermo
Department of Cell Biology, Physiology and Immunology, Institute of Neuroscience, Universitat Autònoma de Barcelona and Centro de Investigación Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED), Bellaterra, Spain.
Institut Guttmann de Neurorehabilitació, Badalona, Spain.
Front Rehabil Sci. 2021 Dec 7;2:755963. doi: 10.3389/fresc.2021.755963. eCollection 2021.
Electrical neuromodulation has strongly hit the foundations of spinal cord injury and repair. Clinical and experimental studies have demonstrated the ability to neuromodulate and engage spinal cord circuits to recover volitional motor functions lost after the injury. Although the science and technology behind electrical neuromodulation has attracted much of the attention, it cannot be obviated that electrical stimulation must be applied concomitantly to sensorimotor rehabilitation, and one would be very difficult to understand without the other, as both need to be finely tuned to efficiently execute movements. The present review explores the difficulties faced by experimental and clinical neuroscientists when attempting to neuromodulate and rehabilitate manual dexterity in spinal cord injured subjects. From a translational point of view, we will describe the major rehabilitation interventions employed in animal research to promote recovery of forelimb motor function. On the other hand, we will outline some of the state-of-the-art findings when applying electrical neuromodulation to the spinal cord in animal models and human patients, highlighting how evidences from lumbar stimulation are paving the path to cervical neuromodulation.
电神经调节已对脊髓损伤与修复的基础产生了重大影响。临床和实验研究已证明,神经调节和激活脊髓回路具有恢复损伤后丧失的自主运动功能的能力。尽管电神经调节背后的科学技术已备受关注,但不可忽视的是,电刺激必须与感觉运动康复同时应用,而且两者缺一很难理解,因为它们都需要精细调整才能有效地执行动作。本综述探讨了实验和临床神经科学家在试图对脊髓损伤患者进行神经调节和恢复手部灵巧性时所面临的困难。从转化医学的角度来看,我们将描述动物研究中用于促进前肢运动功能恢复的主要康复干预措施。另一方面,我们将概述在动物模型和人类患者中对脊髓应用电神经调节时的一些最新研究结果,强调来自腰部刺激的证据如何为颈部神经调节铺平道路。