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Temporal dynamics of neural adaptation effect in the human visual ventral stream

机译:人体视觉腹流神经适应效应的时间动态

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When the same visual stimulus is repeatedly presented with a brief interval, the brain's responses to that stimulus are attenuated relative to those at first presentation (neural adaptation, NA). Although this effect has been widely observed in various regions of human brain, its temporal dynamics as a neuronal population has been mostly unclear. In the present study, we used a magnetoencephalography (MEG) and conducted a macrolevel investigation of the temporal profiles of the NA occurring in the human visual ventral stream. We dissociated three dimensions of the NA: activation strength, peak latency, and temporal duration of neural response. The results revealed that visual responses to the repeated as compared with novel stimulus showed a significant reduction in both activation strength and peak latency but not in the duration of neural processing. These results indicate that (i) the NA involves brain response changes in the temporal domain as well as the response attenuation reported previously, and (ii) this temporal change is mainly observed as a rapid rising of 'what' responses rather than a temporal shortening of neural response curves within the visual ventral stream as previously considered.
机译:当用短暂间隔重复呈现相同的视觉刺激,大脑对该刺激的反应相对于第一次呈现(神经适应,NA)衰减。虽然这种效果在人类大脑的各个地区被广泛观察到,但其作为神经元群的时间动态主要是不清楚的。在本研究中,我们使用了磁性脑图(MEG)并进行了在人类视觉腹部流中发生的NA的时间谱的MACROLEVEL研究。我们解离三个NA:激活强度,峰值等待时间和神经应答的时间持续时间。结果表明,与新型刺激相比重复的视觉响应显示出激活强度和峰值潜伏期的显着降低,但不在神经处理的持续时间内。这些结果表明(i)NA涉及时间域的脑反应变化以及先前报告的响应衰减,并且(ii)该时间变化主要被认为是“什么”的回答而不是时间缩短的快速上升如先前考虑的视觉腹部流内的神经反应曲线。

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