在延迟非匹配轨迹任务中光遗传学沉默前扣带回皮层的效果。

Oxford open neuroscience Pub Date : 2024-02-08 eCollection Date: 2024-01-01 DOI:10.1093/oons/kvae002
Ana S Cruz, Sara Cruz, Miguel Remondes
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引用次数: 0

摘要

工作记忆是一种基本的认知能力,它使我们能够在完成特定任务所需的时间内将信息保存在记忆中。实现这些功能的是一个复杂的神经回路,其中包括前扣带回皮层(CG)。扣带回皮层在功能和解剖上与内侧前额叶、后脾叶、中扣带回皮层、海马以及运动皮层相连,在需要选择和控制适当行为时,扣带回皮层与检索适当信息有关。由于缺乏在工作记忆的特定时段可逆地干扰扣带皮层活动的研究,扣带皮层在工作记忆指导行为中的作用仍不清楚。我们使用eNpHR3.0在动物执行标准延迟非匹配轨迹任务时沉默扣带回神经元,结果发现,在检索期间沉默扣带回神经元虽然不会造成工作记忆的绝对损伤,但与在编码期间沉默扣带回神经元相比,在检索期间沉默扣带回神经元会降低平均成绩。与 eNpHR3.0+ 动物相比,当向对照组动物提供光照时,这种与检索相关的变化伴随着更长的延迟,这与额外认知资源的适应性招募是一致的。
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Effects of optogenetic silencing the anterior cingulate cortex in a delayed non-match to trajectory task.

Working memory is a fundamental cognitive ability, allowing us to keep information in memory for the time needed to perform a given task. A complex neural circuit fulfills these functions, among which is the anterior cingulate cortex (CG). Functionally and anatomically connected to the medial prefrontal, retrosplenial, midcingulate and hippocampus, as well as motor cortices, CG has been implicated in retrieving appropriate information when needed to select and control appropriate behavior. The role of cingulate cortex in working memory-guided behaviors remains unclear due to the lack of studies reversibly interfering with its activity during specific epochs of working memory. We used eNpHR3.0 to silence cingulate neurons while animals perform a standard delayed non-match to trajectory task, and found that, while not causing an absolute impairment in working memory, silencing cingulate neurons during retrieval decreases the mean performance if compared to silencing during encoding. Such retrieval-associated changes are accompanied by longer delays observed when light is delivered to control animals, when compared to eNpHR3.0+ ones, consistent with an adaptive recruitment of additional cognitive resources.

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