University of California, Davis and VAHCS, Martinez, CA.
J Cogn Neurosci. 1997 Jul;9(4):433-40. doi: 10.1162/jocn.1997.9.4.433.
The contributions of the superior prefrontal cortex (SPFC) and the superior parietal lobule (SPL) in generating voluntary endogenous and reflexive visually guided saccades were investigated using transcranial magnetic stimulation (TMS). Subjects made choice saccades to the left or right visual field in response to a central arrowhead (endogenous go signal) or a peripheral asterisk (exogenous go signal) that were presented along with a single TMS pulse at varying temporal intervals. TMS over the SPFC increased latencies for saccades made in response to an endogenous go signal toward the contralateral hemifield. No effects were observed when the go signal was exogenous and TMS was over the SPFC or when TMS was over the SPL for either saccade type. The delayed contralateral endogenous saccades observed in this study are likely a consequence of disruption in the normal operations of the human frontal eye field.
使用经颅磁刺激(TMS)研究了前额上皮质(SPFC)和上顶叶小叶(SPL)在产生自愿的内源性和反射性视觉引导眼球跳动中的作用。受试者根据中央箭头(内源性去信号)或外围星号(外源性去信号)做出选择眼球跳动,该箭头或星号与单个 TMS 脉冲一起以不同的时间间隔呈现。TMS 在上额前皮质上的刺激会增加对相反半视野中的内源性去信号做出的眼球跳动的潜伏期。当去信号是外源性的并且 TMS 在上额前皮质上时,或者当 TMS 在上顶叶小叶上时,对于任何一种眼球跳动类型,都没有观察到效果。本研究中观察到的延迟的对侧内源性眼球跳动可能是由于人的额眼区的正常运作受到干扰所致。