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首页> 外文期刊>The European Journal of Neuroscience >Crossed unilateral lesions of temporal lobe structures and cholinergic cell bodies impair visual conditional and object discrimination learning in monkeys.
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Crossed unilateral lesions of temporal lobe structures and cholinergic cell bodies impair visual conditional and object discrimination learning in monkeys.

机译:颞叶结构和胆碱能细胞体的交叉单侧损伤损害了猴子的视觉条件和物体识别学习。

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摘要

Monkeys with excitotoxic lesions of the CA1/subiculum region in the right hemisphere and with immunotoxic lesions of the cholinergic cells of the diagonal band in the left hemisphere were impaired on a visual conditional task. In this task, correct choice of one of two objects depends on which of two background fields both objects are presented against, irrespective of the spatial positions of the objects. They were not impaired on simple object or shape discrimination tasks. The pattern of impairments is the same as that seen after bilateral excitotoxic lesions of CA1/subiculum, implying that the diagonal band lesion disables the ipsilateral CA1/subiculum. It also argues that CA1/subiculum, sustained by its cholinergic input, is necessary for some forms of nonspatial conditional learning. Addition of an inferotemporal (IT) cortical ablation to the left hemisphere did not affect simple visual discrimination learning, although all the monkeys then failed to learn a new visual conditional task. This demonstrates that intact IT cortex in only one hemisphere is sufficient to sustain simple visual discrimination learning but implies that the cholinergic input and the inferotemporal cortical input to the hippocampus both contribute to visual conditional learning. The subsequent addition of an immunotoxic lesion of the basal nucleus of Meynert in the right hemisphere resulted in an additional impairment on a difficult shape discrimination. This argues that it is the cholinergic projection to the inferotemporal cortex, rather than to the rest of the cortex, which contributes to visual discrimination learning and memory.
机译:在视觉上有条件的任务损害了在右半球具有CA1 / succulumum区的兴奋性毒性损害而在左半球具有对角线胆碱能细胞的免疫毒性损害的猴子。在此任务中,对两个对象之一的正确选择取决于两个对象针对两个背景场中的哪个呈现,而与对象的空间位置无关。他们在简单的物体或形状辨别任务上没有受到损害。损伤的模式与CA1 /双侧双侧兴奋性毒性损伤后所见的模式相同,这意味着对角带损伤使同侧CA1 /双侧滑膜失去功能。它还认为,CA1 / subiculum由其胆碱能输入维持,对于某些形式的非空间条件学习是必需的。左半球下颞叶皮层消融术不会影响简单的视觉辨别力学习,尽管随后所有的猴子都无法学习新的视觉条件任务。这表明仅在一个半球中完整的IT皮质足以维持简单的视觉辨认学习,但意味着海马的胆碱能输入和颞下皮质输入均有助于视觉条件学习。随后在右半球中添加了Meynert基底核的免疫毒性病变,导致形状辨别困难而导致了额外的损伤。这表明,它是颞下皮质的胆碱能投射,而不是其余皮质的胆碱能投射,这有助于视觉辨别学习和记忆。

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