Brain Imaging and NeuroStimulation Laboratory, Department of Neurology, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.
J Neurosci. 2013 May 22;33(21):9039-49. doi: 10.1523/JNEUROSCI.4094-12.2013.
Since GABAA-mediated intracortical inhibition has been shown to underlie plastic changes throughout the lifespan from development to aging, here, the aging motor system was used as a model to analyze the interdependence of plastic alterations within the inhibitory motorcortical network and level of behavioral performance. Double-pulse transcranial magnetic stimulation (dpTMS) was used to examine inhibition by means of short-interval intracortical inhibition (SICI) of the contralateral primary motor cortex in a sample of 64 healthy right-handed human subjects covering a wide range of the adult lifespan (age range 20-88 years, mean 47.6 ± 20.7, 34 female). SICI was evaluated during resting state and in an event-related condition during movement preparation in a visually triggered simple reaction time task. In a subgroup (N = 23), manual motor performance was tested with tasks of graded dexterous demand. Weak resting-state inhibition was associated with an overall lower manual motor performance. Better event-related modulation of inhibition correlated with better performance in more demanding tasks, in which fast alternating activation of cortical representations are necessary. Declining resting-state inhibition was associated with weakened event-related modulation of inhibition. Therefore, reduced resting-state inhibition might lead to a subsequent loss of modulatory capacity, possibly reflecting malfunctioning precision in GABAAergic neurotransmission; the consequence is an inevitable decline in motor function.
由于 GABA A 介导的皮层内抑制被证明是从发育到衰老的整个生命周期中可塑性变化的基础,因此,本研究选择衰老的运动系统作为模型,分析抑制性运动皮层网络内的可塑性变化和行为表现水平之间的相互依赖性。使用双脉冲经颅磁刺激(dpTMS)通过对 64 名健康右利手人类受试者对侧初级运动皮层的短间隔皮层内抑制(SICI)来检查抑制作用,这些受试者的年龄范围从 20 岁到 88 岁,平均年龄为 47.6 ± 20.7 岁,其中 34 名为女性。在静息状态下和视觉触发的简单反应时间任务的运动准备期间的事件相关条件下评估 SICI。在一个亚组(N=23)中,使用分级灵巧需求任务来测试手动运动性能。较弱的静息状态抑制与整体较低的手动运动表现相关。更好的事件相关抑制调节与更具挑战性任务中的更好表现相关,在这些任务中,皮质代表的快速交替激活是必要的。静息状态抑制的下降与事件相关抑制调节的减弱相关。因此,静息状态抑制的减少可能导致随后的调节能力丧失,这可能反映了 GABA A 能神经传递的精密功能障碍;其后果是运动功能不可避免地下降。