Department of Psychological and Brain Sciences, University of Iowa, Iowa City, Iowa, USA.
Iowa Neuroscience Institute, University of Iowa, Iowa City, Iowa, USA.
Hippocampus. 2022 Feb;32(2):89-97. doi: 10.1002/hipo.23334. Epub 2021 May 4.
The hippocampal formation plays established roles in learning, memory, and related cognitive functions. Recent findings also suggest that the hippocampus integrates sensory feedback from self-generated movements to modulate ongoing motor responses in a changing environment. Such findings support the view of Bland and Oddie (Behavioural Brain Research, 2001, 127, 119-136) that the hippocampus is a site of sensorimotor integration. In further support of this view, we review neurophysiological evidence in developing rats that hippocampal function is built on a sensorimotor foundation and that this foundation is especially evident early in development. Moreover, at those ages when the hippocampus is first establishing functional connectivity with distant sensory and motor structures, that connectivity is preferentially expressed during periods of active (or REM) sleep. These findings reinforce the notion that sleep, as the predominant state of early infancy, provides a critical context for sensorimotor development, including development of the hippocampus and its associated network.
海马结构在学习、记忆和相关认知功能中发挥着既定的作用。最近的发现还表明,海马体将来自自主运动的感觉反馈整合到不断变化的环境中,以调节持续的运动反应。这些发现支持 Bland 和 Oddie(《行为脑研究》,2001 年,127,119-136)的观点,即海马体是感觉运动整合的部位。进一步支持这一观点,我们回顾了发育中的大鼠的神经生理学证据,表明海马体的功能建立在感觉运动基础上,并且这种基础在发育早期尤为明显。此外,在海马体最初与远距离感觉和运动结构建立功能连接的那些年龄,这种连接在活跃(或 REM)睡眠期间优先表达。这些发现强化了这样一种观念,即睡眠作为婴儿期的主要状态,为感觉运动发育提供了一个关键的背景,包括海马体及其相关网络的发育。