Synaptic Immunopathology Lab, Department of Systems Medicine, Tor Vergata University, Rome.
Unit of Neurology, IRCCS Neuromed, Pozzilli, IS.
Curr Opin Neurol. 2020 Jun;33(3):255-261. doi: 10.1097/WCO.0000000000000816.
Multiple sclerosis (MS) is a neurological disorder that heavily affects quality of life (QoL) and demands a multidisciplinary therapeutic approach. This includes multiple protocols and techniques of physical rehabilitation, ranging from conventional exercise paradigms to noninvasive brain stimulation (NIBS). Recently, studies showing the clinical efficacy of physical rehabilitation have remarkably increased, suggesting its disease-modifying potential.
Studies in animal models of MS have shown that physical exercise ameliorates the main disease pathological hallmarks, acting as a pro-myelinating and immunomodulatory therapy. NIBS techniques have been successfully applied to treat pain and urinary symptoms and lower limb function and spasticity, especially in combination with physical rehabilitation. Physical rehabilitation is reported to be well tolerated and effective in improving muscle function and fitness even in more disabled patients, and to enhance balance, walking and upper limb functional movements. Moreover, the dual motor--cognitive task performance can be improved by combined training protocols.
The literature here reviewed indicates the importance of clinical and preclinical research in addressing the impact of neurorehabilitation on MS disability, highlighting the need of further studies to reach a more comprehensive understanding of the mechanisms involved, the best combination of techniques and the proper timing of application.
多发性硬化症(MS)是一种严重影响生活质量(QoL)的神经系统疾病,需要采用多学科治疗方法。这包括多种物理康复方案和技术,从传统的运动模式到非侵入性脑刺激(NIBS)。最近,研究表明物理康复具有明显的临床疗效,提示其具有疾病修饰潜力。
MS 动物模型研究表明,体育锻炼可改善主要疾病的病理特征,起到促髓鞘形成和免疫调节作用。NIBS 技术已成功应用于治疗疼痛、尿症状、下肢功能和痉挛,尤其是与物理康复联合应用。有报道称,物理康复在改善肌肉功能和体能方面具有良好的耐受性和疗效,甚至在功能障碍更严重的患者中也是如此,还可以提高平衡、行走和上肢功能运动。此外,联合训练方案还可以提高双重运动认知任务的表现。
本文综述的文献表明,临床前和临床研究在解决神经康复对 MS 残疾的影响方面具有重要意义,突出了需要进一步研究以更全面地了解相关机制、最佳技术组合以及应用的最佳时机。