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Cognitive Functions and Neurodevelopmental Disorders Involving the Prefrontal Cortex and Mediodorsal Thalamus

机译:涉及前额叶皮层和中枢丘脑的认知功能和神经发育障碍

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摘要

The mediodorsal nucleus of the thalamus (MD) has been implicated in executive functions (such as planning, cognitive control, working memory, and decision-making) because of its significant interconnectivity with the prefrontal cortex (PFC). Yet, whilst the roles of the PFC have been extensively studied, how the MD contributes to these cognitive functions remains relatively unclear. Recently, causal evidence in monkeys has demonstrated that in everyday tasks involving rapid updating (e.g., while learning something new, making decisions, or planning the next move), the MD and frontal cortex are working in close partnership. Furthermore, researchers studying the MD in rodents have been able to probe the underlying mechanisms of this relationship to give greater insights into how the frontal cortex and MD might interact during the performance of these essential tasks. This review summarizes the circuitry and known neuromodulators of the MD, and considers the most recent behavioral, cognitive, and neurophysiological studies conducted in monkeys and rodents; in total, this evidence demonstrates that MD makes a critical contribution to cognitive functions. We propose that communication occurs between the MD and the frontal cortex in an ongoing, fluid manner during rapid cognitive operations, via the means of efference copies of messages passed through transthalamic routes; the conductance of these messages may be modulated by other brain structures interconnected to the MD. This is similar to the way in which other thalamic structures have been suggested to carry out forward modeling associated with rapid motor responding and visual processing. Given this, and the marked thalamic pathophysiology now identified in many neuropsychiatric disorders, we suggest that changes in the different subdivisions of the MD and their interconnections with the cortex could plausibly give rise to a number of the otherwise disparate symptoms (including changes to olfaction and cognitive functioning) that are associated with many different neuropsychiatric disorders. In particular, we will focus here on the cognitive symptoms of schizophrenia and suggest testable hypotheses about how changes to MD-frontal cortex interactions may affect cognitive processes in this disorder.
机译:丘脑的中枢神经核(MD)已与执行功能(例如计划,认知控制,工作记忆和决策)相关,因为它与前额叶皮层(PFC)具有显着的相互联系。然而,尽管已经对PFC的作用进行了广泛研究,但MD如何促进这些认​​知功能仍然相对不清楚。最近,猴子的因果证据表明,在涉及快速更新的日常任务中(例如,在学习新知识,制定决策或计划下一步行动的同时),医学博士和额叶皮层正在密切合作。此外,在啮齿动物中研究MD的研究人员已经能够探究这种关系的潜在机制,从而更深入地了解额叶皮层和MD在执行这些基本任务期间可能如何相互作用。这篇综述总结了MD的电路和已知的神经调节剂,并考虑了在猴子和啮齿动物中进行的最新行为,认知和神经生理学研究。总体而言,该证据表明MD对认知功能做出了重要贡献。我们建议通过快速穿过丘脑途径的信息的有效拷贝,在快速的认知操作过程中以持续,流畅的方式在MD和额叶皮层之间进行交流。这些消息的传导性可以通过与MD互连的其他大脑结构进行调节。这类似于已建议其他丘脑结构进行与快速运动响应和视觉处理相关的正向建模的方式。考虑到这一点,并且现在在许多神经精神疾病中都发现了明显的丘脑病理生理学,我们建议在MD的不同细分区域及其与皮质的相互连接中的变化可能会引起许多其他不同的症状(包括嗅觉改变和认知功能)与许多不同的神经精神疾病有关。特别是,我们将在此集中讨论精神分裂症的认知症状,并提出关于MD额叶皮层相互作用的变化如何影响这种疾病的认知过程的可验证假设。

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