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Feature-based attention potentiates recovery of fine direction discrimination in cortically blind patients

机译:基于特征的注意力增强了在皮质盲患者中恢复了良好方向歧视

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摘要

Training chronic, cortically-blind (CB) patients on a coarse [left-right] direction discrimination and integration (CDDI) task recovers performance on this task at trained, blind field locations. However, fine direction difference (FDD) thresholds remain elevated at these locations, limiting the usefulness of recovered vision in daily life. Here, we asked if this FDD impairment can be overcome by training CB subjects with endogenous, feature-based attention (FBA) cues. Ten CB subjects were recruited and trained on CDDI and FDD with an FBA cue or FDD with a neutral cue. After completion of each training protocol, FDD thresholds were re-measured with both neutral and FBA cues at trained, blind-field locations and at corresponding, intact-field locations. In intact portions of the visual field, FDD thresholds were lower when tested with FBA than neutral cues. Training subjects in the blind field on the CDDI task improved FDD performance to the point that a threshold could be measured, but these locations remained impaired relative to the intact field. FDD training with neutral cues resulted in better blind field FDD thresholds than CDDI training, but thresholds remained impaired relative to intact field levels, regardless of testing cue condition. Importantly, training FDD in the blind field with FBA lowered FDD thresholds relative to CDDI training, and allowed the blind field to reach thresholds similar to the intact field, even when FBA trained subjects were tested with a neutral rather than FBA cue. Finally, FDD training appeared to also recover normal integration thresholds at trained, blind-field locations, providing an interesting double dissociation with respect to CDDI training. In summary, mechanisms governing FBA appear to function normally in both intact and impaired regions of the visual field following V1 damage. Our results mark the first time that FDD thresholds in CB fields have been seen to reach intact field levels of performance. Moreover, FBA can be leveraged during visual training to recover normal, fine direction discrimination and integration performance at trained, blind-field locations, potentiating visual recovery of more complex and precise aspects of motion perception in cortically-blinded fields.
机译:培训慢性,皮质盲(CB)患者在粗[右]方向歧视和集成(CDDI)任务中在训练有素的盲目场位置恢复了此任务的表现。然而,精细方向差(FDD)阈值在这些位置保持升高,限制了日常生活中恢复的视觉的有用性。在这里,我们询问此FDD损伤是否可以通过培训具有内生,特征的注意力(FBA)提示的CB受试者来克服。在CDDI和FDD上招募了十个CB科目,用FBA Cue或FDD培训,具有中性提示。在完成每个训练协议之后,在训练有素的,盲 - 场位置和相应的完整场位置,用中性和FBA线索重新测量FDD阈值。在视野的完整部分中,当用FBA测试时,FDD阈值比中立线本提示更低。 CDDI任务盲区训练主题在CDDI任务中改进了FDD性能,以测量阈值,但这些位置相对于完整场仍然受损。与中性线索的FDD训练导致更好的盲目场FDD阈值,而不是CDDI训练,但无论测试提示状况如何,阈值都相对于完整的场级别受损。重要的是,即使使用中性的FBA培训的受试者用中性而不是FBA培训的受试者使用中性而不是FBA培训的受试者,使用FBA训练FBA的盲电场中的FDD阈值降低了FBA阈值的FDD阈值。最后,FDD培训还似乎还在训练有素的盲目场位置恢复正常的集成阈值,为CDDI培训提供了一个有趣的双重解离。总之,管理FBA的机制似乎在V1损坏后视场的完整和受损区域中的正常工作。我们的结果首次标记了CB字段中的FDD阈值,已被看到达到完整的现场性能。此外,在视觉训练期间可以利用FBA,以在训练,盲场地区恢复正常,精细方向歧视和集成性能,增强了在有皮质蒙蔽田地中的运动感知的更复杂和精确方面的视觉恢复。

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