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Does localisation blindsight extend to two-dimensional targets?

机译:定位盲视是否扩展到二维目标?

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Residual sensorimotor skills which survive compromise of the geniculostriate visual system may depend on activity of the dorsal stream of extrastriate occipitoparietal cortex. These circuits are crucial for controlling hand and eye movements to targets in a three-dimensional world. Remarkably, demonstrations of above chance localisation by hand and by eye in blindsight patients have used luminous targets that were only varied in one spatial dimension. These limitations result in experimental confounds. In the present study we examined saccadic and manual localisation in a well-studied patient (DB) to positions that were varied in 1 or 2 dimensions, using targets which control for luminance artefacts. We found that his good manual localisation without awareness in 1D conditions was relatively preserved when the targets were varied in 2D. In stark contrast, saccadic performance was completely attenuated with 2D targets. These paradoxical results are difficult to reconcile with feedforward models of eye-hand coordination and with accounts of localisation that depend on intact multidimensional representations of the visual fields in non-geniculostriate systems.
机译:残留的感觉运动技能幸免于肌视觉系统的损害,可能取决于枕外顶皮质皮层背流的活动。这些电路对于控制手和眼睛向三维世界中目标的运动至关重要。值得注意的是,在视力不佳的患者中,通过手和眼睛进行的偶然机会定位的演示使用了仅在一个空间维度上变化的发光目标。这些限制导致实验混乱。在本研究中,我们使用能够控制亮度伪影的目标,对经过充分研究的患者(DB)的眼动和手动定位进行了1或2维变化的定位。我们发现,当目标在2D模式下变化时,相对较好地保留了他在1D条件下无意识的良好手动定位。与之形成鲜明对比的是,使用2D目标时,扫视性能会完全减弱。这些矛盾的结果很难与眼手协调的前馈模型以及依赖于非基因纤维素系统中视野的完整多维表示的定位说明相协调。

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