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首页> 外文期刊>Journal of Neurophysiology >Muscimol-induced inactivation of monkey frontal eye field: effects on visually and memory-guided saccades.
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Muscimol-induced inactivation of monkey frontal eye field: effects on visually and memory-guided saccades.

机译:麝香酚诱导的猴子额叶视野的失活:对视觉和记忆引导扫视的影响。

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Muscimol-induced inactivation of the monkey frontal eye field: effects on visually and memory-guided saccades. Although neurophysiological, anatomic, and imaging evidence suggest that the frontal eye field (FEF) participates in the generation of eye movements, chronic lesions of the FEF in both humans and monkeys appear to cause only minor deficits in visually guided saccade generation. Stronger effects are observed when subjects are tested in tasks with more cognitive requirements. We tested oculomotor function after acutely inactivating regions of the FEF to minimize the effects of plasticity and reallocation of function after the loss of the FEF and gain more insight into the FEF contribution to the guidance of eye movements in the intact brain. Inactivation was induced by microinjecting muscimol directly into physiologically defined sites in the FEF of three monkeys. FEF inactivation severely impaired the monkeys' performance of both visually guided and memory-guided saccades. The monkeys initiated fewer saccades to the retinotopic representation of the inactivated FEF site than to any other location in the visual field. The saccades that were initiated had longer latencies, slower velocities, and larger targeting errors than controls. These effects were present both for visually guided and for memory-guided saccades, although the memory-guided saccades were more disrupted. Initially, the effects were restricted spatially, concentrating around the retinotopic representation at the center of the inactivated site, but, during the course of several hours, these effects spread to flanking representations. Predictability of target location and motivation of the monkey also affected saccadic performance. For memory-guided saccades, increases in the time during which the monkey had to remember the spatial location of a target resulted in further decreases in the accuracy of the saccades and in smaller peak velocities, suggesting a progressive loss of the capacity to maintain a representation of target location in relation to the fovea after FEF inactivation. In addition, the monkeys frequently made premature saccades to targets in the hemifield ipsilateral to the injection site when performing the memory task, indicating a deficit in the control of fixation that could be a consequence of an imbalance between ipsilateral and contralateral FEF activity after the injection. There was also a progressive loss of fixation accuracy, and the monkeys tended to restrict spontaneous visual scanning to the ipsilateral hemifield. These results emphasize the strong role of the FEF in the intact monkey in the generation of all voluntary saccadic eye movements, as well as in the control of fixation.
机译:麝香酚诱导的猴子额叶视野的失活:对视觉和记忆引导扫视的影响。尽管神经生理学,解剖学和影像学证据表明额叶视野(FEF)参与了眼球运动的产生,但人类和猴子中FEF的慢性损伤似乎在视觉引导的扫视镜产生中仅引起较小的缺陷。当在具有更多认知要求的任务中测试对象时,会观察到更强的效果。我们测试了FEF急性失活区域后的动眼功能,以最大程度地减少FEF丢失后可塑性和功能重新分配的影响,并进一步了解FEF对完整大脑中眼球运动的指导作用。通过将麝香酚直接显微注射到三只猴子的FEF中的生理定义部位来诱导灭活。 FEF失活严重损害了猴子的视觉引导和记忆引导扫视运动。与视野中任何其他位置相比,猴子对灭活的FEF部位的视网膜原位表现的扫视运动更少。发起扫视的潜伏期较长,速度较慢,并且定位误差比控件大。这些效果在视觉引导的扫视和记忆引导的扫视中均表现出来,尽管记忆引导的扫视更加混乱。最初,这些影响在空间上受到限制,集中在灭活位点中心的视黄醛代表处,但是在几个小时的过程中,这些影响扩散到了侧面代表处。猴子目标位置和动机的可预测性也影响了扫视性能。对于记忆引导的扫视镜,猴子必须记住目标的空间位置的时间增加,导致扫视镜的精度进一步降低,峰值速度更小,这表明保持表征的能力逐渐丧失FEF灭活后相对于中央凹的目标位置的变化。此外,在执行记忆任务时,猴子经常对注射部位同侧半场的目标进行过早的扫视,这表明注视后同侧和对侧FEF活性不平衡可能导致固定控制的缺陷。 。固定精度也逐渐下降,猴子倾向于将自发视觉扫描限制在同侧半视野。这些结果强调了FEF在完整的猴子中,在所有自愿性眼跳运动的产生以及固定控制中的强大作用。

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