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The temporal dynamics of the effects in occipital cortex of visual-spatial selective attention.

机译:视觉空间选择性注意在枕皮质中的影响的时间动态。

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The temporal dynamics of the effects of lateralized visual selective attention within the lower visual field were studied with the combined application of event-related potentials (ERPs) and positron emission tomography (15O PET). Bilateral stimuli were rapidly presented to the lower visual field while subjects either passively viewed them or covertly attended to a designated side to detect occasional targets. Lateralized attention resulted in strongly enhanced PET activity in contralateral dorsal occipital cortex, while ERPs showed an enhanced positivity (P1 effect, 80-160 ms) for all stimuli (both non-targets and targets) over contralateral occipital scalp. Dipole modeling seeded by the dorsal occipital PET foci yielded an excellent fit for the peak P1 attention effect. However, more detailed ERP modeling throughout the P1 latency window (90-160 ms) suggested a spatial-temporal movement of the attention-related enhancement that roughly paralleled the shape of the dorsal occipital PET attention-related activations-likely reflecting the sequential attention-related enhancement of early visual cortical areas. Lateralized spatial attention also resulted in a longer-latency contralateral enhanced negativity (N2 effect, 230-280 ms) with a highly similar distribution to the earlier P1 effect. Dipole modeling seeded by the same dorsal occipital PET foci also yielded an excellent fit. This pattern of results provides evidence for re-entrance of attention-enhanced activation to the same retinotopically organized region of dorsal extrastriate cortex. Finally, target stimuli in the attended location elicited an additional prolonged enhancement of the longer-latency negativity over contralateral occipital cortex. The combination of PET activation and dipole modeling suggested contribution from a ventral-occipital generator to this target-related activity.
机译:结合事件相关电位(ERP)和正电子发射断层扫描(15O PET)的应用,研究了下部视野内偏侧视觉选择性注意的影响的时间动态。双边刺激迅速呈现给较低的视野,而受试者要么被动地观看它们,要么秘密地到指定的一侧看望偶然的目标。侧向注意导致对侧后枕皮层的PET活性大大增强,而ERPs对对侧枕头皮的所有刺激(非目标和目标)均显示出增强的阳性反应(P1效应,80-160 ms)。枕骨背侧PET灶植入的偶极子模型非常适合峰值P1注意效果。但是,在整个P1潜伏期(90-160毫秒)内,更详细的ERP建模表明,注意力相关增强的时空运动大致与背枕PET注意力相关激活的形状相似,可能反映了顺序注意力早期视觉皮层区域的相关增强。侧向空间注意力的集中还导致对侧消极时间延长(N2效应为230-280毫秒),其分布与早期P1效应高度相似。由相同的后枕部PET灶植入的偶极子模型也产生了很好的拟合度。这种结果模式为注意力增强激活重新进入背侧皮层皮质的同一视网膜组织区域提供了证据。最后,在受诊部位的目标刺激引起对侧枕叶皮层的更长潜伏期负性的进一步延长。 PET激活和偶极建模的结合表明腹枕生成器对该靶标相关活性的贡献。

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