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Development of thalamocortical connections between the mediodorsal thalamus and the prefrontal cortex and its implication in cognition

机译:中间丘脑和前额叶皮层之间丘脑皮质连接的发展及其在认知中的意义

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摘要

The mediodorsal thalamus (MD) represents a fundamental subcortical relay to the prefrontal cortex (PFC), and is thought to be highly implicated in modulation of cognitive performance. Additionally, it undergoes highly conserved developmental stages, which, when dysregulated, can have detrimental consequences. Embryonically, the MD experiences a tremendous surge in neurogenesis and differentiation, and disruption of this process may underlie the pathology in certain neurodevelopmental disorders. However, during the postnatal period, a vast amount of cell loss in the MD occurs. These together may represent an extended critical period for postnatal development, in which disturbances in the normal growth or reduction of the MD afferents to the PFC, can result in PFC-dependent cognitive, affective, or psychotic abnormalities. In this review, we explore the current knowledge supporting this hypothesis of a protracted critical period, and propose how developmental changes in the MD contribute to successful prefrontal cortical development and function. Specifically, we elaborate on the unique properties of MD-PFC connections compared with other thalamocortical afferents in sensory cortices, examine how MD-PFC innervation modulates synaptic transmission in the local prefrontal circuitry, and speculate on what occurs during postnatal development, particularly within the early neonatal stage, as well as juvenile and adolescent periods. Finally, we discuss the questions that remain and propose future experiments in order to provide perspective and novel insights into the cause of neuropsychiatric disorders associated with MD-PFC development.
机译:腹中丘脑(MD)代表前额叶皮层(PFC)的基本皮层下传递,并且被认为与认知能力的调节高度相关。另外,它经历了高度保守的发育阶段,当失调时,可能具有有害的后果。胚胎学上,MD在神经发生和分化中经历了巨大的增长,并且该过程的破坏可能是某些神经发育障碍的病理学基础。但是,在产后期间,MD中会发生大量细胞丢失。这些一起可能代表了产后发育的延长关键时期,其中正常生长的障碍或向PFC的MD传入的减少会导致PFC依赖的认知,情感或精神病异常。在这篇综述中,我们探索了支持长期关键时期这一假设的当前知识,并提出了MD的发育变化如何促进成功的额叶前皮质的发育和功能。具体来说,我们详细介绍了MD-PFC连接与感觉皮质中其他丘脑皮质传入神经相比的独特特性,研究了MD-PFC神经支配如何调节局部前额叶回路中的突触传递,并推测了在产后发育过程中发生的情况,特别是在早期新生儿期,以及青少年期。最后,我们讨论了仍然存在的问题并提出了未来的实验,以便为与MD-PFC发育相关的神经精神疾病的病因提供观点和新颖见解。

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