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首页> 外文期刊>Journal of neuroimaging >Differences in early dynamic connectivity Between visual expansion and contraction stimulations revealed by an fMRI-directed MEG approach
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Differences in early dynamic connectivity Between visual expansion and contraction stimulations revealed by an fMRI-directed MEG approach

机译:由fMRI指导的MEG方法揭示的视觉扩展和收缩刺激之间的早期动态连通性差异

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Background And Purpose: The human visual system responds asymmetrically to visual motion stimuli in opposite directions due to the involvement of the same brain areas but different operating processes. The expansion mode is thought to invoke a vigilance mechanism, whereas the contraction mode does not. Methods: To investigate discrepancies between these modes, we produced dynamic connectivity maps based on mutual information between visual-evoked dipole sources of magnetoencephalography, which were steered by visual activity patterns in functional magnetic resonance imaging under two motion-stimulus modes. Results: In the expansion mode, information was conveyed from V1 at 50-75 ms after motion onset, fed forward to V3A and then V5. Top-down connectivity paths were evident after a latency of 100 ms. Many of these interactions occurred within 200 ms. However, in the contraction mode, information was conveyed from V3A to V5, followed by feedback, but regained from V1 after a latency of 250 ms. Although these interactions were delayed by about 250 ms, they were completed within 500 ms. Conclusions: These findings show that detect spatiotemporal differences between expansion and contraction modes can be readily detected using time-flow charts. Moreover, delay interactions could be insensitive to object motion away from the observer.
机译:背景与目的:由于涉及相同的大脑区域但操作过程不同,因此人类视觉系统对视觉运动刺激的响应方向相反。扩展模式被认为会引起警惕机制,而收缩模式则不会。方法:为了研究这些模式之间的差异,我们基于视觉诱发的磁脑电偶极子源之间的相互信息,制作了动态连通性图,这些图由功能性磁共振成像中两种运动刺激模式下的视觉活动模式控制。结果:在扩展模式下,信息在运动开始后的50-75毫秒内从V1传递,先馈给V3A,然后再传递给V5。经过100毫秒的等待时间后,自上而下的连接路径显而易见。这些互动中有许多是在200毫秒内发生的。但是,在收缩模式下,信息从V3A传递到V5,随后进行反馈,但在250 ms的等待时间后从V1重新获得。尽管这些交互被延迟了大约250毫秒,但它们在500毫秒内完成了。结论:这些发现表明,使用时间流程图可以轻松检测出扩张和收缩模式之间的时空差异。此外,延迟交互可能对对象远离观察者的运动不敏感。

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