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在表现良好的精神分裂症患者工作记忆过程中,长程伽马相位同步作为一种补偿策略。

Long-range gamma phase synchronization as a compensatory strategy during working memory in high-performing patients with schizophrenia.

作者信息

So Rachel P, Kegeles Lawrence S, Mao Xiangling, Shungu Dikoma C, Stanford Arielle D, Chen Chi-Ming A

机构信息

a Psychological Sciences , University of Connecticut , Storrs , CT , USA.

b Clinical Psychiatry (in Radiology) , Columbia University , New York , NY , USA.

出版信息

J Clin Exp Neuropsychol. 2018 Sep;40(7):663-681. doi: 10.1080/13803395.2017.1420142. Epub 2018 Feb 1.

Abstract

Working memory deficits in schizophrenia may be associated with impairments in the integration of neural activity across a distributed network of cortical areas. However, evaluation of the contribution of this integration to working memory impairments in patients is severely confounded by behavioral performance. In the present multidimensional-neuroimaging study, measures of neural oscillations at baseline and during a working memory task, baseline gamma-aminobutyric acid (GABA) level in the left dorsolateral prefrontal cortex (DLPFC), and behavioral performance were obtained. Controlling behavioral performance by recruiting only "high-performing" patients with schizophrenia, we investigated whether the strength of cross-area communications differs between patients with schizophrenia and healthy participants under accurate and equivalent behavioral performance. Results of phase-locking value indicated that these high-performing patients recruited significantly more between frontal and occipital regions in the left hemisphere, t(13) = -2.16, p = .05, Cohen's d = -1.20, and between frontal and temporal regions in the right hemisphere, t(13) = -2.63, p = .02, Cohen's d = -1.46. These cross-area communication patterns may be associated with visuoverbal and visuospatial working memory networks of the left and right hemispheres, respectively. Moreover, correlations of patient's cross-area communication with in vivo GABA levels of the left DLPFC revealed a significant positive relationship (r = .77, p = .04), demonstrating that the critical role of GABA functions in gamma band oscillations may go beyond local neuronal assemblies in the left DLPFC. Altogether, these exploratory findings point to the heterogeneity among schizophrenia patients and highlight the notion that high-performing patients may engage in potential compensatory mechanisms and may represent a subgroup of patients that may be categorically or dimensionally divergent in psychopathology.

摘要

精神分裂症患者的工作记忆缺陷可能与跨皮质区域分布式网络中神经活动整合的受损有关。然而,这种整合对患者工作记忆损伤的贡献评估因行为表现而严重混淆。在本多维神经影像学研究中,获取了基线和工作记忆任务期间的神经振荡测量值、左侧背外侧前额叶皮质(DLPFC)的基线γ-氨基丁酸(GABA)水平以及行为表现。通过仅招募精神分裂症“高表现”患者来控制行为表现,我们研究了在准确且等效的行为表现下,精神分裂症患者与健康参与者之间跨区域通信强度是否存在差异。锁相值结果表明,这些高表现患者在左半球额叶和枕叶区域之间的募集显著更多,t(13) = -2.16,p = .05,Cohen's d = -1.20,在右半球额叶和颞叶区域之间也是如此,t(13) = -2.63,p = .02,Cohen's d = -1.46。这些跨区域通信模式可能分别与左右半球的视觉语言和视觉空间工作记忆网络相关。此外,患者跨区域通信与左侧DLPFC体内GABA水平的相关性显示出显著的正相关关系(r = .77,p = .04),表明GABA功能在γ波段振荡中的关键作用可能超越左侧DLPFC中的局部神经元集合。总之,这些探索性发现指出了精神分裂症患者之间的异质性,并强调了高表现患者可能参与潜在补偿机制的观点,且可能代表了在精神病理学上可能在分类或维度上存在差异的患者亚组。

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