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对同侧运动皮层施加1赫兹的重复经颅磁刺激会影响不同复杂程度的连续手指运动的表现。

1-Hz repetitive TMS over ipsilateral motor cortex influences the performance of sequential finger movements of different complexity.

作者信息

Avanzino Laura, Bove Marco, Trompetto Carlo, Tacchino Andrea, Ogliastro Carla, Abbruzzese Giovanni

机构信息

Department of Neurosciences, Ophthalmology and Genetics, University of Genoa, Italy.

出版信息

Eur J Neurosci. 2008 Mar;27(5):1285-91. doi: 10.1111/j.1460-9568.2008.06086.x. Epub 2008 Feb 29.

DOI:10.1111/j.1460-9568.2008.06086.x
PMID:18312586
Abstract

To elucidate the role of ipsilateral motor cortex (M1) in the control of unilateral finger movements (UFMs) in humans we used a conditioning protocol of 1-Hz repetitive transcranial magnetic stimulation (1-Hz rTMS) over M1 in 11 right-handed healthy subjects. We analysed the effects of conditioning rTMS on UFMs of different complexity (simple vs sequential finger movements), and performed with a different modality (internally vs externally paced movements). UFMs were monitored with a sensor-engineered glove, and a quantitative evaluation of the following parameters was performed: touch duration (TD); inter-tapping interval (ITI); timing error (TE); and number of errors (NE). 1-Hz rTMS over ipsilateral M1 was able to affect the performance of a sequence of finger opposition movements in a metronome-paced condition, significantly increasing TD and reducing ITI without TE changes. The effects on motor behaviour had a different magnitude as a function of the sequence complexity. Further, we found a different effect of the ipsilateral 1-Hz rTMS on externally paced movements with respect to an internally paced condition. All these findings indicate that ipsilateral M1 plays an important role in the execution of sequential UFMs. Interestingly, NE did not change in any experimental condition, suggesting that ipsilateral M1 influences only the temporal and not the spatial accuracy of UFMs. Finally, the duration (up to 30 min) of 1-Hz rTMS effects on ipsilateral M1 can indicate its direct action on the mechanisms of cortical plasticity, suggesting that rTMS can be used to modulate the communication between the two hemispheres in rehabilitative protocols.

摘要

为了阐明同侧运动皮层(M1)在人类单侧手指运动(UFM)控制中的作用,我们对11名右利手健康受试者的M1施加1赫兹重复经颅磁刺激(1-Hz rTMS)的条件刺激方案。我们分析了条件刺激rTMS对不同复杂程度(简单与连续手指运动)的UFM的影响,并以不同方式(内部与外部节奏运动)进行。使用传感器设计的手套监测UFM,并对以下参数进行定量评估:接触持续时间(TD);敲击间隔(ITI);定时误差(TE);以及错误数量(NE)。同侧M1上的1-Hz rTMS能够在节拍器节奏条件下影响一系列手指对掌运动的表现,显著增加TD并减少ITI,而TE无变化。对运动行为的影响因序列复杂性而异。此外,我们发现同侧1-Hz rTMS对外部节奏运动的影响与内部节奏条件不同。所有这些发现表明同侧M1在连续UFM的执行中起重要作用。有趣的是,在任何实验条件下NE均未改变,这表明同侧M1仅影响UFM的时间而非空间准确性。最后,1-Hz rTMS对同侧M1的影响持续时间(长达30分钟)可表明其对皮质可塑性机制的直接作用,这表明rTMS可用于在康复方案中调节两个半球之间的通信。

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