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Cerebellar Morphology and Procedural Learning Impairment in Neuroleptic-Naive Youth at Ultrahigh Risk of Psychosis

机译:极度精神病高风险的初次使用抗精神病药的青年人的小脑形态学和程序学习障碍

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摘要

Despite evidence suggesting a role for cerebellar abnormalities in the pathogenesis of psychosis, the structure has yet to receive attention in individuals at ultrahigh risk for psychosis (UHR). Accumulating research has suggested that the cerebellum helps modulate cognition and movement, domains in which UHR individuals show impairment; understanding putative markers of risk, such as structural abnormalities and behavioral correlates, is essential. In this study, participants underwent a high-resolution structural brain scan and participated in a pursuit rotor experiment. Cerebellar regions associated with movement (anterior cerebellum) and cognition (crus I) were subsequently analyzed. UHR participants showed impaired performance on the pursuit rotor task, learned at a slower rate, and showed smaller cerebellar volumes compared with control participants. Left crus I volume was significantly associated with poor rate of learning. The present results suggest that cerebellar abnormalities and their behavioral correlates (poor learning and motor control) precede the onset of psychosis.
机译:尽管有证据表明小脑异常在精神病的发病机理中起作用,但该结构尚未引起精神病超高风险(UHR)个体的关注。越来越多的研究表明,小脑有助于调节认知和运动,这是UHR个人表现出障碍的领域。理解风险的假定标记(例如结构异常和行为相关)至关重要。在这项研究中,参与者进行了高分辨率的结构性脑部扫描,并参加了追踪转子实验。随后分析了与运动(前小脑)和认知(第一类)相关的小脑区域。与对照参与者相比,UHR参与者在追踪旋翼任务上的表现受损,学习速度较慢,并且小脑体积较小。左室I容量与学习率差显着相关。目前的结果表明,小脑畸形及其行为相关性(学习不良和运动控制差)先于精神病发作。

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