Mirino Pierandrea, Pecchinenda Anna, Boccia Maddalena, Capirchio Adriano, D'Antonio Fabrizia, Guariglia Cecilia
Department of Psychology, "Sapienza" University of Rome, 00185 Rome, Italy.
Ph.D. Program in Behavioral Neuroscience, "Sapienza" University of Rome, 00185 Rome, Italy.
Brain Sci. 2022 Apr 20;12(5):523. doi: 10.3390/brainsci12050523.
The cerebellum has a homogeneous structure and performs different computational functions such as modulation/coordination of the communication between cerebral regions, and regulation/integration of sensory information. Albeit cerebellar activity is generally associated with motor functions, several recent studies link it to various cognitive functions, including spatial navigation. In addition, cerebellar activity plays a modulatory role in different cognitive domains and brain processes. Depending on the network involved, cerebellar damage results in specific functional alterations, even when no function loss might be detected. In the present review, we discuss evidence of brainstem degeneration and of a substantial reduction of neurons in nuclei connected to the inferior olivary nucleus in the early stages of Alzheimer's disease. Based on the rich patterns of afferences from the inferior olive nucleus to the cerebellum, we argue that the subtle alterations in spatial navigation described in the early stages of dementia stem from alterations of the neuromodulatory functions of the cerebellum.
小脑结构均匀,执行不同的计算功能,如调节/协调大脑区域之间的通信,以及调节/整合感觉信息。尽管小脑活动通常与运动功能相关,但最近的几项研究将其与各种认知功能联系起来,包括空间导航。此外,小脑活动在不同的认知领域和大脑过程中起调节作用。根据所涉及的网络,小脑损伤会导致特定的功能改变,即使可能未检测到功能丧失。在本综述中,我们讨论了阿尔茨海默病早期脑干变性以及与下橄榄核相连的核团中神经元大量减少的证据。基于从下橄榄核到小脑的丰富传入模式,我们认为痴呆早期描述的空间导航细微改变源于小脑神经调节功能的改变。