Department of Neurology I.C., Oasi Institute for Research on Mental Retardation and Brain Aging (IRCCS), Via Conte Ruggero, 73, 94018 Troina, EN, Italy.
Department of Neurology I.C., Oasi Institute for Research on Mental Retardation and Brain Aging (IRCCS), Via Conte Ruggero, 73, 94018 Troina, EN, Italy.
Sleep Med Rev. 2015 Feb;19:39-50. doi: 10.1016/j.smrv.2014.04.001. Epub 2014 Apr 13.
Altered responses to transcranial magnetic stimulation (TMS) in obstructive sleep apnea syndrome (OSAS), restless legs syndrome (RLS), insomnia, and sleep-deprived healthy subjects have been reported. We have reviewed the relevant literature in order to identify eventual distinctive electrocortical profiles based on single and paired-pulse TMS, sensorimotor modulation, plasticity-related and repetitive TMS measures. Although obtained from heterogeneous studies, the detected changes might be the result of the different pathophysiological substrates underlying OSAS, RLS, insomnia and sleep deprivation rather than reflect the general effect of non-specific sleep loss and instability. OSAS tends to exhibit an increased motor cortex inhibition, which is reduced in RLS; intracortical excitability seems to be in favor of an "activating" profile in chronic insomnia and in sleep-deprived healthy individuals. Abnormal plasticity-related TMS phenomena have been demonstrated in OSAS and RLS. This review provides a perspective of TMS techniques by further understanding the role of neurotransmission pathways and plastic remodeling of neuronal networks involved in common sleep disorders. TMS might be considered a valuable tool in the assessment of sleep disorders, the evaluation of the effect of therapy and the design of non-pharmacological approaches.
已经有报道称,在阻塞性睡眠呼吸暂停综合征(OSAS)、不安腿综合征(RLS)、失眠和睡眠剥夺的健康受试者中,经颅磁刺激(TMS)的反应发生了改变。我们已经回顾了相关文献,以便根据单脉冲和双脉冲 TMS、感觉运动调节、与可塑性相关的和重复 TMS 测量来确定最终的独特的皮质电谱。尽管这些变化是从不同的研究中得出的,但可能是由于 OSAS、RLS、失眠和睡眠剥夺的不同病理生理基础造成的,而不是反映非特异性睡眠缺失和不稳定的一般影响。OSAS 倾向于表现出运动皮层抑制增加,而 RLS 则减少;皮质内兴奋性似乎有利于慢性失眠和睡眠剥夺的健康个体中的“激活”特征。在 OSAS 和 RLS 中已经证明了与可塑性相关的 TMS 现象异常。通过进一步了解涉及常见睡眠障碍的神经递质传递途径和神经元网络的可塑性重塑,本综述提供了 TMS 技术的视角。TMS 可能被认为是评估睡眠障碍、评估治疗效果和设计非药物方法的有价值的工具。