Moorman David E, Olson Carl R
Center for the Neural Basis of Cognition, Carnegie Mellon University, Pittsburgh, PA 15213-2683, USA.
J Neurophysiol. 2007 May;97(5):3554-66. doi: 10.1152/jn.00061.2007. Epub 2007 Feb 28.
Neurons in the macaque supplementary eye field (SEF) fire at different rates in conjunction with planning saccades in different directions. They also exhibit object-centered spatial selectivity, firing at different rates when the target of the saccade is at the left or right end of a horizontal bar. To compare the rate of incidence of the two kinds of signal, and to determine how they combine, we recorded from SEF neurons while monkeys performed a task in which the target (a dot or the left or right end of a horizontal bar) could appear in any visual field quadrant. During the period when the target was visible on the screen and the monkey was preparing to make a saccade, many neurons exhibited selectivity for saccade direction, firing at a rate determined by the direction of the impending saccade irrespective of whether the target was a dot or the end of a bar. On bar trials, many of the same neurons exhibited object-centered selectivity, firing more strongly when the target was at the preferred end of the bar regardless of saccade direction. The rate of incidence of object-centered selectivity (33%) was lower overall than that of saccade-direction selectivity (56%). Signals related to saccade direction and the object-centered location of the target tended to combine additively. The results suggest that the SEF is at a transitional stage between representing the object-centered command and specifying the parameters of the saccade.
猕猴辅助眼区(SEF)中的神经元在计划不同方向的扫视时,会以不同的速率放电。它们还表现出以物体为中心的空间选择性,当扫视目标位于水平条的左端或右端时,会以不同的速率放电。为了比较这两种信号的发生率,并确定它们如何组合,我们在猴子执行一项任务时记录了SEF神经元的活动,在该任务中,目标(一个点或水平条的左端或右端)可以出现在任何视野象限中。在屏幕上可见目标且猴子准备进行扫视的期间,许多神经元表现出对扫视方向的选择性,无论目标是一个点还是条的末端,它们都以即将进行的扫视方向所决定的速率放电。在条形试验中,许多相同的神经元表现出以物体为中心的选择性,无论扫视方向如何,当目标位于条形的首选末端时,它们放电更强。以物体为中心的选择性发生率(33%)总体上低于扫视方向选择性发生率(56%)。与扫视方向和目标以物体为中心的位置相关的信号倾向于相加组合。结果表明,SEF处于代表以物体为中心的指令和指定扫视参数之间的过渡阶段。