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首页> 外文期刊>Neuroscience and Biobehavioral Reviews >The neurobiology of thalamic amnesia: Contributions of medial thalamus and prefrontal cortex to delayed conditional discrimination
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The neurobiology of thalamic amnesia: Contributions of medial thalamus and prefrontal cortex to delayed conditional discrimination

机译:丘脑健忘症的神经生物学:内侧丘脑和前额叶皮层对延迟性条件歧视的贡献

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摘要

Although medial thalamus is well established as a site of pathology associated with global amnesia, there is uncertainty about which structures are critical and how they affect memory function. Evidence from human and animal research suggests that damage to the mammillothalamic tract and the anterior, mediodorsal (MD), midline (M), and intralaminar (IL) nuclei contribute to different signs of thalamic amnesia. Here we focus on MD and the adjacent M and IL nuclei, structures identified in animal studies as critical nodes in prefrontal cortex (PFC)-related pathways that are necessary for delayed conditional discrimination. Recordings of PFC neurons in rats performing a dynamic delayed non-matching-to position (DNMTP) task revealed discrete populations encoding information related to planning, execution, and outcome of DNMTP-related actions and delay-related activity signaling previous reinforcement. Parallel studies recording the activity of MD and IL neurons and examining the effects of unilateral thalamic inactivation on the responses of PFC neurons demonstrated a close coupling of central thalamic and PFC neurons responding to diverse aspects of DNMTP and provide evidence that thalamus interacts with PFC neurons to give rise to complex goal-directed behavior exemplified by the DNMTP task. (c) 2015 Elsevier Ltd. All rights reserved.
机译:尽管内侧丘脑已被确立为与整体性失忆症相关的病理学部位,但尚不确定哪些结构至关重要以及它们如何影响记忆功能。来自人类和动物研究的证据表明,对乳腺丘脑束和前,中枢(MD),中线(M)和椎板内(IL)核的损害导致丘脑健忘症的不同体征。在这里,我们重点研究MD和相邻的M和IL核,这些结构在动物研究中被确定为前额叶皮层(PFC)相关通路中的关键节点,对于延迟条件辨别是必不可少的。在大鼠中执行动态延迟不匹配位置(DNMTP)任务的PFC神经元的记录揭示了离散群体,这些群体编码与DNMTP相关动作和延迟相关活动的计划,执行和结果有关的信息,而延迟相关活动则表示先前的强化。平行研究记录了MD和IL神经元的活性,并检查了单侧丘脑失活对PFC神经元反应的影响,结果表明,丘脑中枢神经元和PFC神经元对DNMTP的不同反应紧密耦合,并提供了丘脑与PFC神经元相互作用的证据。会导致复杂的目标导向行为,例如DNMTP任务。 (c)2015 Elsevier Ltd.保留所有权利。

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