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精神分裂症患者在眨眼条件反射任务中的小脑激活缺陷

Cerebellar Activation Deficits in Schizophrenia During an Eyeblink Conditioning Task.

作者信息

Lundin Nancy B, Kim Dae-Jin, Tullar Rachel L, Moussa-Tooks Alexandra B, Kent Jerillyn S, Newman Sharlene D, Purcell John R, Bolbecker Amanda R, O'Donnell Brian F, Hetrick William P

机构信息

Department of Psychological and Brain Sciences, Indiana University, Bloomington, IN, USA.

Program in Neuroscience, Indiana University, Bloomington, IN, USA.

出版信息

Schizophr Bull Open. 2021 Aug 28;2(1):sgab040. doi: 10.1093/schizbullopen/sgab040. eCollection 2021 Jan.

Abstract

The cognitive dysmetria theory of psychotic disorders posits that cerebellar circuit abnormalities give rise to difficulties coordinating motor and cognitive functions. However, brain activation during cerebellar-mediated tasks is understudied in schizophrenia. Accordingly, this study examined whether individuals with schizophrenia have diminished neural activation compared to controls in key regions of the delay eyeblink conditioning (dEBC) cerebellar circuit (eg, lobule VI) and cerebellar regions associated with cognition (eg, Crus I). Participants with schizophrenia-spectrum disorders ( = 31) and healthy controls ( = 43) underwent dEBC during functional magnetic resonance imaging (fMRI). Images were normalized using the Spatially Unbiased Infratentorial Template (SUIT) of the cerebellum and brainstem. Activation contrasts of interest were "early" and "late" stages of paired tone and air puff trials minus unpaired trials. Preliminary whole brain analyses were conducted, followed by cerebellar-specific SUIT and region of interest (ROI) analyses of lobule VI and Crus I. Correlation analyses were conducted between cerebellar activation, neuropsychological test scores, and psychotic symptom scores. In controls, the largest clusters of cerebellar activation peaked in lobule VI during early dEBC and Crus I during late dEBC. The schizophrenia group showed robust cortical activation to unpaired trials but no significant conditioning-related cerebellar activation. Crus I ROI activation during late dEBC was greater in the control than schizophrenia group. Greater Crus I activation correlated with higher working memory scores in the full sample and lower positive psychotic symptom severity in schizophrenia. Findings indicate functional cerebellar abnormalities in schizophrenia which relate to psychotic symptoms, lending direct support to the cognitive dysmetria framework.

摘要

精神障碍的认知失调理论认为,小脑回路异常会导致运动和认知功能协调困难。然而,在精神分裂症中,小脑介导任务期间的大脑激活情况尚未得到充分研究。因此,本研究调查了与对照组相比,精神分裂症患者在延迟眨眼条件反射(dEBC)小脑回路的关键区域(如小叶VI)和与认知相关的小脑区域(如 Crus I)中神经激活是否减少。患有精神分裂症谱系障碍的参与者(n = 31)和健康对照组(n = 43)在功能磁共振成像(fMRI)期间接受了dEBC。使用小脑和脑干的空间无偏幕下模板(SUIT)对图像进行归一化。感兴趣的激活对比是配对音调和吹气试验的“早期”和“晚期”阶段减去非配对试验。进行了初步的全脑分析,随后对小叶VI和Crus I进行了小脑特异性SUIT和感兴趣区域(ROI)分析。对小脑激活、神经心理测试分数和精神病症状分数进行了相关分析。在对照组中,小脑激活的最大簇在dEBC早期出现在小叶VI,在晚期出现在Crus I。精神分裂症组对非配对试验表现出强烈的皮层激活,但没有明显的与条件反射相关的小脑激活。在dEBC晚期,对照组的Crus I ROI激活大于精神分裂症组。在整个样本中,Crus I激活程度越高,工作记忆分数越高,在精神分裂症中,阳性精神病症状严重程度越低。研究结果表明精神分裂症患者存在功能性小脑异常,这与精神病症状有关,直接支持了认知失调框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b35/8443466/d8f8d483de4d/sgab040f0001.jpg

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