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Tracking perceptual decision mechanisms through changes in interhemispheric functional connectivity in human visual cortex

机译:通过人类视觉皮层半球间功能连通性的变化跟踪知觉决策机制

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摘要

The role of long-range integration mechanisms underlying visual perceptual binding and their link to interhemispheric functional connectivity, as measured by fMRI, remains elusive. Only inferences on anatomical organization from resting state data paradigms not requiring coherent binding have been achieved. Here, we used a paradigm that allowed us to study such relation between perceptual interpretation and functional connectivity under bistable interhemispheric binding vs. non-binding of visual surfaces. Binding occurs by long-range perceptual integration of motion into a single object across hemifields and non-binding reflects opponent segregation of distinct moving surfaces into each hemifield. We hypothesized that perceptual integration vs. segregation of surface motion, which is achieved in visual area hMT+, is modulated by changes in interhemispheric connectivity in this region. Using 7T fMRI, we found that perceptual long-range integration of bistable motion can be tracked by changes in interhemispheric functional connectivity between left/right hMT+. Increased connectivity was tightly related with long-range perceptual integration. Our results indicate that hMT+ interhemispheric functional connectivity reflects perceptual decision, suggesting its pivotal role on long-range disambiguation of bistable physically constant surface motion. We reveal for the first time, at the scale of fMRI, a relation between interhemispheric functional connectivity and decision based perceptual binding.
机译:通过fMRI测量,视觉感知结合及其与半球间功能连接之间的联系的远程整合机制的作用仍然难以捉摸。仅获得了从静止状态数据范例对解剖组织的推断,而这些范例不需要相干绑定。在这里,我们使用了一个范式,使我们能够研究在双稳态半球间绑定与非绑定视觉表面之间的感知解释与功能连接之间的关系。绑定是通过将​​运动的远距离感知整合到跨半场的单个对象中而发生的,而非绑定则反映了不同运动表面的对手对每个半场的隔离。我们假设在视觉区域hMT +中实现的表面运动的感知整合与分离受该区域半球间连通性变化的调节。使用7T功能磁共振成像,我们发现双稳态运动的感知远距离整合可以通过左右hMT +之间的半球功能连通性变化进行跟踪。连接性的提高与远程感知集成紧密相关。我们的结果表明,hMT +半球间功能连接反映了感知决策,表明其在双稳态物理恒定表面运动的远距离消歧中起关键作用。我们首次揭示了在功能磁共振成像的规模上,半球间功能连接性与基于决策的知觉结合之间的关系。

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