Effective connectivity between superior temporal gyrus and Heschl's gyrus during white noise listening: linear versus non-linear models.

Ka Hamid, An Yusoff, Mza Rahman, M Mohamad, Aia Hamid
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Abstract

Purpose: This fMRI study is about modelling the effective connectivity between Heschl's gyrus (HG) and the superior temporal gyrus (STG) in human primary auditory cortices. MATERIALS #ENTITYSTARTX00026;

Methods: Ten healthy male participants were required to listen to white noise stimuli during functional magnetic resonance imaging (fMRI) scans. Statistical parametric mapping (SPM) was used to generate individual and group brain activation maps. For input region determination, two intrinsic connectivity models comprising bilateral HG and STG were constructed using dynamic causal modelling (DCM). The models were estimated and inferred using DCM while Bayesian Model Selection (BMS) for group studies was used for model comparison and selection. Based on the winning model, six linear and six non-linear causal models were derived and were again estimated, inferred, and compared to obtain a model that best represents the effective connectivity between HG and the STG, balancing accuracy and complexity.

Results: Group results indicated significant asymmetrical activation (p(uncorr) < 0.001) in bilateral HG and STG. Model comparison results showed strong evidence of STG as the input centre. The winning model is preferred by 6 out of 10 participants. The results were supported by BMS results for group studies with the expected posterior probability, r = 0.7830 and exceedance probability, ϕ = 0.9823. One-sample t-tests performed on connection values obtained from the winning model indicated that the valid connections for the winning model are the unidirectional parallel connections from STG to bilateral HG (p < 0.05). Subsequent model comparison between linear and non-linear models using BMS prefers non-linear connection (r = 0.9160, ϕ = 1.000) from which the connectivity between STG and the ipsi- and contralateral HG is gated by the activity in STG itself.

Conclusion: We are able to demonstrate that the effective connectivity between HG and STG while listening to white noise for the respective participants can be explained by a non-linear dynamic causal model with the activity in STG influencing the STG-HG connectivity non-linearly.

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白噪声听力中颞上回和颞下回的有效连接:线性与非线性模型。
目的:本研究旨在建立人类初级听觉皮层颞上回(STG)与颞下回(HG)之间的有效连接模型。方法:在功能性磁共振成像(fMRI)扫描期间,要求10名健康男性受试者听白噪声刺激。使用统计参数映射(SPM)生成个体和群体脑激活图。为了确定输入区域,使用动态因果模型(DCM)构建了包括双侧HG和STG在内的两个固有连接模型。使用DCM对模型进行估计和推断,使用贝叶斯模型选择(BMS)进行分组研究的模型比较和选择。在此基础上,推导了6个线性和6个非线性因果模型,并再次进行了估计、推断和比较,以获得最能代表HG与STG之间有效连通性、平衡精度和复杂性的模型。结果:组内结果显示双侧HG和STG显著不对称激活(p(uncorr) < 0.001),模型比较结果显示STG为输入中心。10名参与者中有6人喜欢获胜的模型。分组研究的BMS结果支持该结果,期望后验概率r = 0.7830,超越概率φ = 0.9823。对获胜模型获得的连接值进行的单样本t检验表明,获胜模型的有效连接是从STG到双侧HG的单向平行连接(p < 0.05)。使用BMS的线性和非线性模型之间的后续模型比较更倾向于非线性连接(r = 0.9160, ϕ = 1.000),其中STG与单侧和对侧HG之间的连通性由STG本身的活动控制。结论:我们能够证明,在听白噪声的情况下,各被试的HG和STG之间的有效连通性可以用一个非线性动态因果模型来解释,其中STG的活动非线性地影响着STG-HG的连通性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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