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Working memory encoding and maintenance deficits in schizophrenia: neural evidence for activation and deactivation abnormalities.精神分裂症工作记忆的编码和维持缺陷:激活和去激活异常的神经证据。
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Negative and nonemotional interference with visual working memory in schizophrenia.精神分裂症患者视觉工作记忆的负性和非情绪性干扰。
Biol Psychiatry. 2011 Dec 15;70(12):1159-68. doi: 10.1016/j.biopsych.2011.07.010. Epub 2011 Aug 20.
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Emotion effects on attention, amygdala activation, and functional connectivity in schizophrenia.精神分裂症患者的情绪对注意力、杏仁核激活和功能连接的影响。
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Thalamic pathology in schizophrenia.精神分裂症中的丘脑病理学
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Emotion processing and the amygdala: from a 'low road' to 'many roads' of evaluating biological significance.情绪处理与杏仁核:从评估生物意义的“低路”到“多 路”。
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Failure of schizophrenia patients to overcome salient distractors during working memory encoding.精神分裂症患者在工作记忆编码过程中无法克服突出的干扰物。
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Working memory overload: fronto-limbic interactions and effects on subsequent working memory function.工作记忆过载:额-边缘系统相互作用及其对随后工作记忆功能的影响。
Brain Imaging Behav. 2010 Mar;4(1):96-108. doi: 10.1007/s11682-010-9089-9.
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Resisting emotional interference: brain regions facilitating working memory performance during negative distraction.抵抗情绪干扰:在负面干扰下促进工作记忆表现的大脑区域。
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一个破损的过滤器:精神分裂症工作记忆干扰期间前额叶功能连接异常。

A broken filter: prefrontal functional connectivity abnormalities in schizophrenia during working memory interference.

机构信息

Department of Psychiatry, Yale University School of Medicine, 300 George Street, New Haven, CT 06511, USA.

出版信息

Schizophr Res. 2012 Oct;141(1):8-14. doi: 10.1016/j.schres.2012.07.007. Epub 2012 Aug 3.

DOI:10.1016/j.schres.2012.07.007
PMID:22863548
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3879404/
Abstract

Characterizing working memory (WM) abnormalities represents a fundamental challenge in schizophrenia research given the impact of cognitive deficits on life outcome in patients. In prior work we demonstrated that dorsolateral prefrontal cortex (DLPFC) activation was related to successful distracter resistance during WM in healthy controls, but not in schizophrenia. Although understanding the impact of regional functional deficits is critical, functional connectivity abnormalities among nodes within WM networks may constitute a final common pathway for WM impairment. Therefore, this study tested the hypothesis that schizophrenia is associated with functional connectivity abnormalities within DLPFC networks during distraction conditions in WM. 28 patients and 24 controls completed a delayed non-verbal WM task that included transient visual distraction during the WM maintenance phase. We computed DLPFC whole-brain task-based functional connectivity (tb-fcMRI) specifically during the maintenance phase in the presence or absence of distraction. Results revealed that patients failed to modulate tb-fcMRI during distracter presentation in both cortical and sub-cortical regions. Specifically, controls demonstrated reductions in tb-fcMRI between DLPFC and the extended amygdala when distraction was present. Conversely, patients failed to demonstrate a change in coupling with the amygdala, but showed greater connectivity with medio-dorsal thalamus. While controls showed more positive coupling between DLPFC and other prefrontal cortical regions during distracter presentation, patients failed to exhibit such a modulation. Taken together, these findings support the notion that observed distracter resistance deficit involves a breakdown in coupling between DLPFC and distributed regions, encompassing both subcortical (thalamic/limbic) and control region connectivity.

摘要

描述工作记忆(WM)异常是精神分裂症研究中的一个基本挑战,因为认知缺陷对患者的生活结果有影响。在之前的工作中,我们证明了背外侧前额叶皮层(DLPFC)的激活与健康对照组在 WM 中抵抗分心物的成功有关,但在精神分裂症患者中则不然。虽然理解区域功能缺陷的影响至关重要,但 WM 网络中节点之间的功能连接异常可能构成 WM 损伤的最终共同途径。因此,这项研究检验了这样一个假设,即在 WM 分心条件下,精神分裂症与 DLPFC 网络内的功能连接异常有关。28 名患者和 24 名对照者完成了一项延迟非言语 WM 任务,该任务在 WM 维持阶段包括短暂的视觉分心。我们在存在或不存在分心的情况下,在 WM 维持阶段计算了整个大脑的 DLPFC 基于任务的功能连接(tb-fcMRI)。结果表明,患者在皮质和皮质下区域的分心物呈现时无法调节 tb-fcMRI。具体来说,当存在分心时,对照组在 DLPFC 和扩展杏仁核之间显示出 tb-fcMRI 的减少。相反,患者未能表现出与杏仁核的耦合变化,但与中背侧丘脑的连接增加。当存在分心时,对照组在 DLPFC 和其他前额叶皮质区域之间显示出更多的正耦合,而患者则未能表现出这种调节。总的来说,这些发现支持这样一种观点,即观察到的抵抗分心物的缺陷涉及到 DLPFC 和分布式区域之间的耦合中断,包括皮质下(丘脑/边缘)和控制区域的连接。