Giovannelli F, Borgheresi A, Balestrieri F, Ragazzoni A, Zaccara G, Cincotta M, Ziemann U
Unità Operativa di Neurologia, Azienda Sanitaria di Firenze, Ospedale S. Maria Nuova, Florence, Italy.
Exp Brain Res. 2006 Nov;175(4):633-40. doi: 10.1007/s00221-006-0581-9. Epub 2006 Jun 23.
A distributed cortical network enables the lateralization of intended unimanual movements, i.e., the transformation from a default mirror movement to a unimanual movement. Little is known about the exact functional organization of this "non-mirror transformation" network. Involvement of the right dorsal premotor cortex (dPMC) was suggested because its virtual lesion by high-frequency repetitive transcranial magnetic stimulation (rTMS) increased the excitability of the left primary motor cortex (M1) during unilateral isometric contraction of a left hand muscle (Cincotta et al., Neurosci Lett 367: 189-93, 2004). However, no behavioural effects were observed in that experimental protocol. Here we tested behaviourally twelve healthy volunteers to find out whether focal disruption of the right dPMC by "off-line" One Hz rTMS (900 pulses, 115% of resting motor threshold) enhances "physiological" mirroring. This was measured by an established protocol (Mayston et al., Ann Neurol 45: 583-94, 1999) that quantifies the mirror increase in the electromyographic (EMG) level in the isometrically contracting abductor pollicis brevis (APB) muscle of one hand during brief phasic contractions performed with the APB of the other hand. Mirroring in the right APB significantly increased after real rTMS of the right dPMC. In contrast, no change in mirroring was seen with sham rTMS of the right dPMC, real rTMS of the right M1, or real rTMS of the left dPMC. These findings strongly support the hypothesis that the right dPMC is part of the non-mirror transformation cortical network.
一个分布式的皮层网络促成了预期的单手运动的侧化,即从默认的镜像运动转变为单手运动。关于这个“非镜像转换”网络的确切功能组织,人们知之甚少。有人提出右侧背侧运动前皮层(dPMC)参与其中,因为在左手肌肉的单侧等长收缩过程中,高频重复经颅磁刺激(rTMS)对其进行虚拟损伤会增加左侧初级运动皮层(M1)的兴奋性(Cincotta等人,《神经科学快报》367: 189 - 93, 2004)。然而,在该实验方案中未观察到行为效应。在这里,我们对12名健康志愿者进行了行为测试,以探究通过“离线”1赫兹rTMS(900个脉冲,静息运动阈值的115%)对右侧dPMC进行局部干扰是否会增强“生理性”镜像。这是通过一个既定方案(Mayston等人,《神经病学纪事》45: 583 - 94, 1999)来测量的,该方案量化了在一只手的拇短展肌(APB)进行短暂相位收缩时,另一只手的APB等长收缩过程中肌电图(EMG)水平的镜像增加。在对右侧dPMC进行真正的rTMS后,右侧APB的镜像显著增加。相比之下,对右侧dPMC进行假rTMS、对右侧M1进行真正的rTMS或对左侧dPMC进行真正的rTMS时,镜像均未发生变化。这些发现有力地支持了右侧dPMC是非镜像转换皮层网络一部分的假说。