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Cerebellar–cortical dysconnectivity in resting‐state associated with sensorimotor tasks in schizophrenia

机译:精神分裂症患者感觉运动任务相关的静息状态下小脑皮质不连通性

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摘要

Abnormalities of cerebellar function have been implicated in the pathophysiology of schizophrenia. Since the cerebellum has afferent and efferent projections to diverse brain regions, abnormalities in cerebellar lobules could affect functional connectivity with multiple functional systems in the brain. Prior studies, however, have not examined the relationship of individual cerebellar lobules with motor and nonmotor resting‐state functional networks. We evaluated these relationships using resting‐state fMRI in 30 patients with a schizophrenia‐spectrum disorder and 37 healthy comparison participants. For connectivity analyses, the cerebellum was parcellated into 18 lobular and vermal regions, and functional connectivity of each lobule to 10 major functional networks in the cerebrum was evaluated. The relationship between functional connectivity measures and behavioral performance on sensorimotor tasks (i.e., finger‐tapping and postural sway) was also examined. We found cerebellar–cortical hyperconnectivity in schizophrenia, which was predominantly associated with Crus I, Crus II, lobule IX, and lobule X. Specifically, abnormal cerebellar connectivity was found to the cerebral ventral attention, motor, and auditory networks. This cerebellar–cortical connectivity in the resting‐state was differentially associated with sensorimotor task‐based behavioral measures in schizophrenia and healthy comparison participants—that is, dissociation with motor network and association with nonmotor network in schizophrenia. These findings suggest that functional association between individual cerebellar lobules and the ventral attentional, motor, and auditory networks is particularly affected in schizophrenia. They are also consistent with dysconnectivity models of schizophrenia suggesting cerebellar contributions to a broad range of sensorimotor and cognitive operations.
机译:小脑功能异常与精神分裂症的病理生理有关。由于小脑对不同的大脑区域有传入和传出的投影,因此小脑小叶的异常可能会影响大脑与多个功能系统的功能连接。然而,先前的研究并未检查单个小脑小叶与运动和非运动静止状态功能网络的关系。我们使用静息态功能磁共振成像技术对30例精神分裂症-频谱障碍患者和37名健康对照者进行了评估。为了进行连通性分析,将小脑分成18个小叶和正常区域,并评估每个小叶与大脑中10个主要功能网络的功能连通性。还检查了功能连接性度量与在感觉运动任务上的行为表现之间的关系(即,敲击手指和摆姿势)。我们发现精神分裂症的小脑皮质过度连接性主要与Crus I,Crus II,小叶IX和小叶X相关。特别是,发现小脑的连接性与大脑腹侧注意,运动和听觉网络有关。在精神分裂症和健康的比较参与者中,这种处于休息状态的小脑皮质连接与基于感觉运动任务的行为测量有不同的关联,即精神分裂症中与运动网络的分离和与非运动网络的结合。这些发现表明,在小儿精神分裂症中,小脑小叶与腹侧注意,运动和听觉网络之间的功能相关性尤其受到影响。它们也与精神分裂症的失联性模型一致,表明小脑对广泛的感觉运动和认知操作有贡献。

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