...
首页> 外文期刊>Journal of Neurophysiology >Activity linked to externally cued saccades in single units recorded from hippocampal, parahippocampal, and inferotemporal areas of macaques.
【24h】

Activity linked to externally cued saccades in single units recorded from hippocampal, parahippocampal, and inferotemporal areas of macaques.

机译:活动与猕猴的海马,海马旁和颞下区域记录的单个单位的外部提示扫视有关。

获取原文
获取原文并翻译 | 示例

摘要

We studied whether target-directed, externally commanded saccadic eye movements (saccades) induced activity in single units in inferotemporal cortex, the hippocampal formation, and parahippocampal gyrus. The monkeys first were required to fix their gaze on a small cross presented to the left or right of center on the monitor screen. The cross was extinguished, and a random 600-1,000 ms thereafter, a small dot was presented for 200 ms. The dot was located either 10 degrees above, below, right, or left of the position on which the fixation cross had been. The monkey made a saccadic eye movement to this dot (in darkness). The neuronal activity around this goal-directed saccade was analyzed. In addition, control conditions were imposed systematically in which similar dots were presented, but the monkey's task was to withhold the saccade. We recorded 290 units from two monkeys. From this group, 134 met two criteria, they did not show visual response in control trials and they had spike rates >2 Hz. These were analyzed further; 53% (71/134) showed modulation related to the target directed saccade, and 29% (39/134) showed saccadic modulation during spontaneous eye movements. These two groups were correlated only weakly. Of the units with significant saccadic modulation, 17% (12/71) showed significant directional selectivity, and 13% (9/71) showed significant position selectivity (P < 0.01). At a lower criterion (P < 0.05), almost one-half (33/71) showed one or the other spatial selectivity. Primates use saccades to acquire visual information. The appearance of strong saccadic modulation in brain structures previously characterized as mnemonic suggests the possibility that the mnemonic circuitry uses an extraretinal signal linked to saccades to control visual memory processes, e.g., synchronizing mnemonic processes to the pulsatile visual data inflow.
机译:我们研究了在下颞叶皮层,海马结构和海马旁回的单个单元中,目标定向的,外部命令的眼跳眼运动(扫视)是否诱导了活动。首先,要求猴子将视线固定在显示器屏幕中央左侧或右侧的小十字架上。十字架被熄灭,然后随机600-1,000 ms,出现一个小点持续200 ms。该点位于固定十字所在位置的上方,下方,右侧或左侧10度。猴子对这个点(在黑暗中)进行了点眼动。分析了该目标定向扫视周围的神经元活动。另外,系统地施加了控制条件,其中出现了类似的点,但是猴子的任务是保留扫视镜。我们记录了来自两只猴子的290个单位。在这一组中,有134个满足两个标准,他们在对照试验中未显示视觉反应,并且峰值频率> 2 Hz。对这些进行了进一步分析; 53%(71/134)表现出与目标定向扫视有关的调制,而29%(39/134)表现出自发眼动过程中的眼跳调制。这两组之间的相关性很弱。在具有高声调调制的单元中,有17%(12/71)表现出显着的方向选择性,而13%(9/71)表现出显着的位置选择性(P <0.01)。在较低的标准下(P <0.05),几乎一半(33/71)表现出一种或另一种空间选择性。灵长类动物使用扫视来获取视觉信息。在先前被称为助记符的脑结构中出现强烈的跳动调制表明,助记符电路可能使用链接到扫视的视网膜外信号来控制视觉记忆过程,例如将助记符过程与脉动视觉数据流入同步。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号