Vesia Michael, Monteon Jachin A, Sergio Lauren E, Crawford J D
York University, 4700 Keele Street, Toronto, Ontario, Canada M3J 1P3.
J Neurophysiol. 2006 Dec;96(6):3016-27. doi: 10.1152/jn.00411.2006. Epub 2006 Sep 27.
Dorsal posterior parietal cortex (PPC) has been implicated through single-unit recordings, neuroimaging data, and studies of brain-damaged humans in the spatial guidance of reaching and pointing movements. The present study examines the causal effect of single-pulse transcranial magnetic stimulation (TMS) over the left and right dorsal posterior parietal cortex during a memory-guided "reach-to-touch" movement task in six human subjects. Stimulation of the left parietal hemisphere significantly increased endpoint variability, independent of visual field, with no horizontal bias. In contrast, right parietal stimulation did not increase variability, but instead produced a significantly systematic leftward directional shift in pointing (contralateral to stimulation site) in both visual fields. Furthermore, the same lateralized pattern persisted with left-hand movement, suggesting that these aspects of parietal control of pointing movements are spatially fixed. To test whether the right parietal TMS shift occurs in visual or motor coordinates, we trained subjects to point correctly to optically reversed peripheral targets, viewed through a left-right Dove reversing prism. After prism adaptation, the horizontal pointing direction for a given visual target reversed, but the direction of shift during right parietal TMS did not reverse. Taken together, these data suggest that induction of a focal current reveals a hemispheric asymmetry in the early stages of the putative spatial processing in PPC. These results also suggest that a brief TMS pulse modifies the output of the right PPC in motor coordinates downstream from the adapted visuomotor reversal, rather than modifying the upstream visual coordinates of the memory representation.
通过单神经元记录、神经成像数据以及对脑损伤患者的研究发现,顶叶后皮质背侧(PPC)在伸手和指向动作的空间引导中发挥作用。本研究通过对6名人类受试者在记忆引导的“伸手触摸”运动任务中,施加单脉冲经颅磁刺激(TMS)于左右顶叶后皮质背侧,来检验其因果效应。刺激左侧顶叶半球显著增加了终点变异性,与视野无关,且无水平偏差。相比之下,刺激右侧顶叶并没有增加变异性,而是在两个视野中均产生了显著的系统性向左指向偏移(与刺激部位对侧)。此外,左手运动时同样的偏侧化模式依然存在,这表明顶叶对指向动作的控制在空间上是固定的。为了测试右侧顶叶TMS偏移是发生在视觉坐标还是运动坐标中,我们训练受试者通过左右 Dove 反转棱镜观看,正确指向光学反转的外周目标。棱镜适应后,给定视觉目标的水平指向方向发生反转,但右侧顶叶TMS期间的偏移方向并未反转。综上所述,这些数据表明,在PPC假定的空间处理早期阶段,诱发局部电流揭示了半球不对称性。这些结果还表明,短暂的TMS脉冲在适应的视觉运动反转下游的运动坐标中改变了右侧PPC的输出,而不是改变记忆表征的上游视觉坐标。