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海马硬化对工作记忆编码期间有效连通性的远程影响:连接性离断现象?

Remote effects of hippocampal sclerosis on effective connectivity during working memory encoding: a case of connectional diaschisis?

机构信息

Department of Basic Psychology, Autonoma University of Madrid, 28049 Madrid, Spain.

出版信息

Cereb Cortex. 2012 Jun;22(6):1225-36. doi: 10.1093/cercor/bhr201. Epub 2011 Aug 1.

Abstract

Accumulating evidence suggests a role for the medial temporal lobe (MTL) in working memory (WM). However, little is known concerning its functional interactions with other cortical regions in the distributed neural network subserving WM. To reveal these, we availed of subjects with MTL damage and characterized changes in effective connectivity while subjects engaged in WM task. Specifically, we compared dynamic causal models, extracted from magnetoencephalographic recordings during verbal WM encoding, in temporal lobe epilepsy patients (with left hippocampal sclerosis) and controls. Bayesian model comparison indicated that the best model (across subjects) evidenced bilateral, forward, and backward connections, coupling inferior temporal cortex (ITC), inferior frontal cortex (IFC), and MTL. MTL damage weakened backward connections from left MTL to left ITC, a decrease accompanied by strengthening of (bidirectional) connections between IFC and MTL in the contralesional hemisphere. These findings provide novel evidence concerning functional interactions between nodes of this fundamental cognitive network and sheds light on how these interactions are modified as a result of focal damage to MTL. The findings highlight that a reduced (top-down) influence of the MTL on ipsilateral language regions is accompanied by enhanced reciprocal coupling in the undamaged hemisphere providing a first demonstration of "connectional diaschisis."

摘要

越来越多的证据表明,内侧颞叶(MTL)在工作记忆(WM)中起作用。然而,对于其在支持 WM 的分布式神经网络中与其他皮质区域的功能相互作用,知之甚少。为了揭示这一点,我们利用 MTL 损伤的受试者,并在他们进行 WM 任务时描述有效连接的变化。具体来说,我们比较了来自颞叶癫痫患者(左海马硬化)和对照组在言语 WM 编码期间的脑磁图记录中提取的动态因果模型。贝叶斯模型比较表明,最佳模型(跨受试者)证明了双侧、前向和后向连接,连接颞下回(ITC)、额下回(IFC)和 MTL。MTL 损伤削弱了左 MTL 到左 ITC 的后向连接,这种减少伴随着对侧半球 IFC 和 MTL 之间(双向)连接的增强。这些发现为这个基本认知网络节点之间的功能相互作用提供了新的证据,并阐明了由于 MTL 的局灶性损伤,这些相互作用是如何被修饰的。这些发现强调了 MTL 对同侧语言区域的(自上而下)影响降低,同时未受损半球的相互耦合增强,这首次证明了“连接性去抑制”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0268/3357177/bae638bc2af2/cercorbhr201f01_4c.jpg

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