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精神分裂症患者在执行双重任务时丘脑激活和丘脑皮质连接的调制紊乱。

Disrupted modulation of thalamus activation and thalamocortical connectivity during dual task performance in schizophrenia.

机构信息

Department of Psychiatry and Behavioral Sciences, Vanderbilt University Medical Center, United States of America.

Vanderbilt University Institute of Imaging Sciences, United States of America.

出版信息

Schizophr Res. 2019 Aug;210:270-277. doi: 10.1016/j.schres.2018.12.022. Epub 2019 Jan 7.

Abstract

Despite considerable evidence showing thalamus anatomy and connectivity abnormalities in schizophrenia, how these abnormalities are reflected in thalamus function during cognition is relatively understudied. Modulation of thalamic connectivity with the prefrontal cortex (PFC) is required for higher-order cognitive processes, which are often impaired in schizophrenia. To address this gap, we investigated how thalamus function and thalamus-PFC connectivity under different levels of cognitive demand may be disrupted in schizophrenia. Participants underwent fMRI scanning while performing an event-related two-alternative forced choice task under Single and Dual task conditions. In the Single task condition, participants responded either to a visual cue with a well-learned motor response, or an audio cue with a well-learned vocal response. In the Dual task condition, participants performed both tasks. Thalamic connectivity with task relevant regions of the PFC for each condition was measured using beta-series correlation. Individuals with schizophrenia demonstrated less modulation of both mediodorsal thalamus activation and thalamus-PFC connectivity with increased cognitive demand. In contrast, their ability to modulate PFC function during task performance was maintained. These results suggest that the pathophysiology of cognitive impairment in schizophrenia is associated with thalamus-PFC circuitry and suggests that the thalamus, along with the PFC, should be a focus of investigation.

摘要

尽管有大量证据表明精神分裂症患者的丘脑解剖结构和连接异常,但这些异常如何反映在认知过程中的丘脑功能上,这方面的研究相对较少。丘脑与前额叶皮层(PFC)的连接调节是进行高级认知过程所必需的,而高级认知过程在精神分裂症中经常受损。为了弥补这一空白,我们研究了在不同认知需求水平下,精神分裂症患者的丘脑功能和丘脑-前额叶皮层连接可能会受到怎样的干扰。参与者在执行与视觉或听觉刺激相关的单一任务或双重任务条件下进行 fMRI 扫描。在单一任务条件下,参与者要么对视觉线索做出经过充分学习的运动反应,要么对听觉线索做出经过充分学习的声音反应。在双重任务条件下,参与者同时执行两项任务。使用 beta 系列相关测量了每个条件下丘脑与任务相关的 PFC 区域的连接。精神分裂症患者在认知需求增加时,丘脑的活动和丘脑-前额叶皮层连接的调节能力都降低了。相比之下,他们在任务执行过程中调节前额叶皮层功能的能力得以维持。这些结果表明,精神分裂症认知障碍的病理生理学与丘脑-前额叶皮层回路有关,提示丘脑与前额叶皮层一样,应该成为研究的重点。

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