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Effective Connectivity Reveals Right-Hemisphere Dominance in Audiospatial Perception: Implications for Models of Spatial Neglect

机译:有效的连通性揭示了音频空间感知中的右半球优势:对空间忽略模型的影响

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摘要

Detecting the location of salient sounds in the environment rests on the brain's ability to use differences in sounds arriving at both ears. Functional neuroimaging studies in humans indicate that the left and right auditory hemispaces are coded asymmetrically, with a rightward attentional bias that reflects spatial attention in vision. Neuropsychological observations in patients with spatial neglect have led to the formulation of two competing models: the orientation bias and right-hemisphere dominance models. The orientation bias model posits a symmetrical mapping between one side of the sensorium and the contralateral hemisphere, with mutual inhibition of the ipsilateral hemisphere. The right-hemisphere dominance model introduces a functional asymmetry in the brain's coding of space: the left hemisphere represents the right side, whereas the right hemisphere represents both sides of the sensorium. We used Dynamic Causal Modeling of effective connectivity and Bayesian model comparison to adjudicate between these alternative network architectures, based on human electroencephalographic data acquired during an auditory location oddball paradigm. Our results support a hemispheric asymmetry in a frontoparietal network that conforms to the right-hemisphere dominance model. We show that, within this frontoparietal network, forward connectivity increases selectively in the hemisphere contralateral to the side of sensory stimulation. We interpret this finding in light of hierarchical predictive coding as a selective increase in attentional gain, which is mediated by feedforward connections that carry precision-weighted prediction errors during perceptual inference. This finding supports the disconnection hypothesis of unilateral neglect and has implications for theories of its etiology.
机译:检测环境中突出声音的位置取决于大脑使用到达两只耳朵的声音差异的能力。对人类进行的功能性神经影像学研究表明,左听觉半空间和右听半空间是不对称编码的,右眼注意偏倚反映了视觉中的空间注意。对空间疏忽患者的神经心理学观察导致了两个相互竞争的模型的提出:定向偏差和右半球优势模型。方向偏差模型在感觉侧与对侧半球之间建立对称映射,同时抑制同侧半球。右半球优势模型在大脑的空间编码中引入了功能不对称性:左半球代表右侧,而右半球代表感觉层的两侧。我们使用了有效连通性的动态因果建模和贝叶斯模型比较,基于在听觉位置奇异球范式中获取的人类脑电图数据来裁定这些替代网络体系结构之间的关系。我们的研究结果支持了符合右半球优势模型的额顶网中的半球不对称性。我们表明,在这个额叶前额网络内,前向连接性在与感觉刺激侧对侧的半球中选择性增加。我们根据分层预测编码将这一发现解释为注意力增益的选择性增加,这是由前馈连接介导的,前馈连接在感知推理过程中携带精确加权的预测误差。这一发现支持单方面忽视的断层假说,并对其病因学理论产生了影响。

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