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Evidence for the default network's role in spontaneous cognition.默认网络在自发性认知中的作用的证据。
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Dissociable connectivity within human angular gyrus and intraparietal sulcus: evidence from functional and structural connectivity.人类角回和顶内沟内的分离连接:来自功能和结构连接的证据。
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The amodal system for conscious word and picture identification in the absence of a semantic task.无语义任务下意识的词和图识别的非模态系统。
Neuroimage. 2010 Feb 15;49(4):3295-307. doi: 10.1016/j.neuroimage.2009.12.005. Epub 2009 Dec 29.
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Investigating the functional heterogeneity of the default mode network using coordinate-based meta-analytic modeling.使用基于坐标的元分析模型研究默认模式网络的功能异质性。
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When less is more: TPJ and default network deactivation during encoding predicts working memory performance.少即是多:编码时 TPJ 和默认网络的去激活可预测工作记忆表现。
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左侧角回的功能细分,在那里语义系统与默认网络交汇并分道扬镳。

Functional subdivisions in the left angular gyrus where the semantic system meets and diverges from the default network.

机构信息

Wellcome Trust Centre for Neuroimaging, Institute of Neurology, University College London, London WC1N 3BG, United Kingdom.

出版信息

J Neurosci. 2010 Dec 15;30(50):16809-17. doi: 10.1523/JNEUROSCI.3377-10.2010.

DOI:10.1523/JNEUROSCI.3377-10.2010
PMID:21159952
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3105816/
Abstract

The left angular gyrus (AG) is reliably activated across a wide range of semantic tasks, and is also a consistently reported component of the so-called default network that it is deactivated during all goal-directed tasks. We show here that there is only partial overlap between the semantic system and the default network in left AG and the overlap defines a reliable functional landmark that can be used to segregate functional subdivisions within AG. In 94 healthy human subjects, we collected functional magnetic resonance imaging (fMRI) data during fixation and eight goal directed tasks that involved semantic matching, perceptual matching or speech production in response to familiar or unfamiliar stimuli presented in either verbal (letters) or nonverbal (pictures) formats. Our results segregated three different left AG regions that were all activated by semantic relative to perceptual matching: (1) a midregion (mAG) that overlapped with the default network because it was deactivated during all tasks relative to fixation; (2) a dorsomesial region (dAG) that was more activated by all tasks relative to fixation; and (3) a ventrolateral region (vAG) that was only activated above fixation during semantic matching. By examining the effects of task and stimuli in each AG subdivision, we propose that mAG is involved in semantic associations regardless of the presence or absence of a stimulus; dAG is involved in searching for semantics in all visual stimuli, and vAG is involved in the conceptual identification of visual inputs. Our findings provide a framework for reporting and interpreting AG activations with greater definition.

摘要

左侧角回在广泛的语义任务中都被可靠地激活,并且它也是所谓的默认网络的一个一致报告的组成部分,在所有目标导向任务中都会被去激活。我们在这里表明,在左侧角回中,语义系统和默认网络之间只有部分重叠,而这种重叠定义了一个可靠的功能地标,可以用来分离角回的功能细分。在 94 名健康的人类受试者中,我们在固定和八个目标导向任务期间收集了功能磁共振成像(fMRI)数据,这些任务涉及语义匹配、知觉匹配或对熟悉或不熟悉的刺激(以言语或非言语格式呈现)的言语产生反应。我们的结果将三个不同的左侧角回区域分开,这些区域都通过语义相对于知觉匹配而被激活:(1)一个位于中部的区域(mAG),因为它在所有任务中相对于固定而被去激活,所以与默认网络重叠;(2)一个背侧中部的区域(dAG),在所有任务中相对于固定而被更强烈地激活;(3)一个腹外侧区域(vAG),仅在语义匹配期间相对于固定而被激活。通过检查每个 AG 细分中的任务和刺激的影响,我们提出 mAG 参与语义联想,无论是否存在刺激;dAG 参与在所有视觉刺激中寻找语义,而 vAG 参与视觉输入的概念识别。我们的发现为报告和解释角回激活提供了一个更具定义性的框架。