Guerra Andrea, López-Alonso Virginia, Cheeran Binith, Suppa Antonio
Department of Human Neuroscience, Sapienza University of Rome, Viale dell'Università 30, 00185, Rome, Italy.
Department of Physical Activity and Sport Sciences, "Centro de Enseñanza Superior Alberta Giménez" Comillas Pontifical University, Costa de Saragossa 16, 07013, Palma, Spain.
Neurosci Lett. 2020 Feb 6;719:133332. doi: 10.1016/j.neulet.2017.12.060. Epub 2017 Dec 30.
In the last three decades, a number of non-invasive brain stimulation (NIBS) protocols, capable of assessing and modulating plasticity in the human motor cortex (M1), have been described. For almost as long, NIBS has delivered the tantalising prospect of non-invasive neuromodulation as a therapeutic intervention for neurorehabilitation, psychiatry, chronic pain and other disease states. Apart from modest effects in depression, this early promise has not been realised since the symptomatic improvements produced by NIBS are generally weak. One key factor explaining this lack of clinical translation concerns variability in response to NIBS. Several studies have demonstrated a number of physiological, technical and statistical factors accounting for intra- and inter-subject variability. However, solutions to overcome this problem are still under debate. In the present review, we have provided a detailed description of methodological and technical solutions to control known factors influencing variability. We have also suggested potential strategies to strengthen and stabilize NIBS-induced after-effects. Finally, we propose new possible outcome variables which better reflect intrinsic cortical activity, allowing a more sensitive measurement and valid interpretation of responses to NIBS.
在过去三十年中,已经描述了许多能够评估和调节人类运动皮层(M1)可塑性的非侵入性脑刺激(NIBS)方案。几乎与此同时,NIBS带来了非侵入性神经调节的诱人前景,可作为神经康复、精神病学、慢性疼痛和其他疾病状态的治疗干预手段。除了对抑郁症有一定效果外,NIBS的这一早期承诺并未实现,因为NIBS产生的症状改善通常较弱。解释这种缺乏临床转化的一个关键因素是对NIBS反应的变异性。多项研究已经证明了一些生理、技术和统计因素导致个体内和个体间的变异性。然而,克服这一问题的解决方案仍在争论中。在本综述中,我们详细描述了控制影响变异性的已知因素的方法和技术解决方案。我们还提出了加强和稳定NIBS诱导的后效应的潜在策略。最后,我们提出了新的可能的结果变量,这些变量能更好地反映内在皮层活动,从而更敏感地测量和有效解释对NIBS的反应。