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反应抑制功能网络的有效连接性分析

Effective connectivity analysis of response inhibition functional network.

作者信息

Di Giuliano Monica, Schumann Andy, de la Cruz Feliberto, Da Silva Pedro Henrique Rodrigues, Bär Karl-Jürgen

机构信息

Lab for Autonomic Neuroscience, Imaging and Cognition (LANIC), Department of Psychosomatic Medicine and Psychotherapy, Jena University Hospital, Jena, Germany.

Institute of Psychiatry of the Hospital das Clínicas of the Faculty of Medicine of the University of São Paulo, Ribeirão Preto, Brazil.

出版信息

Front Neurosci. 2025 Apr 7;19:1525038. doi: 10.3389/fnins.2025.1525038. eCollection 2025.

Abstract

INTRODUCTION

Inhibition mechanisms are essential in daily life, helping individuals adapt to environmental demands. However, the causal interactions between large-scale functional networks involved in response inhibition remain poorly understood.

METHODS

In this study, we examined the effective connectivity (EC) underlying inhibitory processes in the brain using dynamic causal modeling (DCM) and independent component analysis (ICA). We conducted a Go-NoGo fMRI task with 19 healthy participants to investigate these networks.

RESULTS

Our results identified four functional networks activated during correct motor response inhibition: the salience network (SN), the right and left executive control networks (ECNs), and the ventral default mode network (vDMN). We observed a significant causal inhibitory influence from the vDMN to the left ECN (lECN). Under conditions of unsuccessful response inhibition, the SN, bilateral ECNs, and somatomotor network (SMN) were found to be prominently activated. Furthermore, we identified a significant correlation between the inhibitory influence from the SMN to the SN and the commission error rate. Finally, correlation analyses between self-reported impulsivity levels and causal network interactions revealed that highly impulsive individuals require greater interhemispheric integration between the right and left ECNs for effective inhibition, as well as a causal excitatory modulation from the right executive control network (rECN) to the vDMN.

DISCUSSION

In summary, our study reveals complex hierarchical dynamics among functional networks during response inhibition. These findings offer valuable insight into the neural mechanisms supporting inhibition and provide avenues for future research on the neural underpinnings of this critical cognitive function across the lifespan.

摘要

引言

抑制机制在日常生活中至关重要,有助于个体适应环境需求。然而,参与反应抑制的大规模功能网络之间的因果相互作用仍知之甚少。

方法

在本研究中,我们使用动态因果模型(DCM)和独立成分分析(ICA)来研究大脑中抑制过程背后的有效连接性(EC)。我们对19名健康参与者进行了一项Go-NoGo功能磁共振成像任务,以研究这些网络。

结果

我们的结果确定了在正确的运动反应抑制过程中激活的四个功能网络:突显网络(SN)、左右执行控制网络(ECN)和腹侧默认模式网络(vDMN)。我们观察到vDMN对左侧ECN(lECN)有显著的因果抑制影响。在反应抑制未成功的情况下,发现SN、双侧ECN和躯体运动网络(SMN)显著激活。此外,我们确定了SMN对SN的抑制影响与 commission 错误率之间存在显著相关性。最后,自我报告的冲动水平与因果网络相互作用之间的相关性分析表明,高冲动性个体在有效抑制时需要左右ECN之间更大的半球间整合,以及从右侧执行控制网络(rECN)到vDMN的因果兴奋性调制。

讨论

总之,我们的研究揭示了反应抑制过程中功能网络之间复杂的层次动态。这些发现为支持抑制的神经机制提供了有价值的见解,并为未来关于这一关键认知功能在整个生命周期中的神经基础的研究提供了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/010f/12009941/d3052a408cde/fnins-19-1525038-g001.jpg

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