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楔前叶的theta爆发刺激调节左颞极的静息态连接。

Theta Burst Stimulation of the Precuneus Modulates Resting State Connectivity in the Left Temporal Pole.

作者信息

Mancini Matteo, Mastropasqua Chiara, Bonnì Sonia, Ponzo Viviana, Cercignani Mara, Conforto Silvia, Koch Giacomo, Bozzali Marco

机构信息

Department of Engineering, University of Rome, "Roma Tre", Via Vito Volterra 62, 00154, Rome, Italy.

Neuroimaging Laboratory, IRCCS Santa Lucia Foundation, Via Ardeatina 306, 00179, Rome, Italy.

出版信息

Brain Topogr. 2017 May;30(3):312-319. doi: 10.1007/s10548-017-0559-x. Epub 2017 Mar 14.

Abstract

It has been shown that continuous theta burst stimulation (cTBS) over the precuneus acts on specific memory retrieval abilities. In order to study the neural mechanisms beyond these findings, we combined cTBS and resting-state functional magnetic resonance imaging. Our experimental protocol involved stimulation and sham conditions on a group of healthy subjects, and each condition included a baseline and two follow-up acquisitions (5 and 15 min after baseline) after cTBS. We analysed brain functional connectivity by means of graph theoretical measures, with a specific focus on the network modular structure. Our results showed that cTBS of the precuneus selectively affects the left temporal pole, decreasing its functional connectivity in the first follow-up. Moreover, we observed a significant increase in the size of the module of the precuneus in the second follow-up. Such effects were absent in the sham condition. We observed here a modulation of functional connectivity as a result of inhibitory stimulation over the precuneus. Such a modulation first acts indirectly on the temporal area and then extends the connectivity of the precuneus itself by a feed-back mechanism. Our current findings extend our previous behavioural observations and increase our understanding of the mechanisms underlying the stimulation of the precuneus.

摘要

已有研究表明,对楔前叶进行连续theta爆发刺激(cTBS)可作用于特定的记忆检索能力。为了研究这些发现背后的神经机制,我们将cTBS与静息态功能磁共振成像相结合。我们的实验方案包括对一组健康受试者进行刺激和假刺激条件,每种条件在cTBS后包括一个基线和两次随访采集(基线后5分钟和15分钟)。我们通过图论方法分析脑功能连接,特别关注网络模块化结构。我们的结果表明,楔前叶的cTBS选择性地影响左颞极,在第一次随访中降低其功能连接。此外,我们在第二次随访中观察到楔前叶模块大小显著增加。在假刺激条件下未出现此类效应。我们在此观察到由于对楔前叶的抑制性刺激导致的功能连接调制。这种调制首先间接作用于颞叶区域,然后通过反馈机制扩展楔前叶自身的连接性。我们目前的发现扩展了我们之前的行为观察结果,并增进了我们对楔前叶刺激潜在机制的理解。

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