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Task demands affect spatial reference frame weighting during tactile localization in sighted and congenitally blind adults

机译:任务需求会影响有视力和先天性盲人的触觉定位过程中的空间参考系权重

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摘要

Task demands modulate tactile localization in sighted humans, presumably through weight adjustments in the spatial integration of anatomical, skin-based, and external, posture-based information. In contrast, previous studies have suggested that congenitally blind humans, by default, refrain from automatic spatial integration and localize touch using only skin-based information. Here, sighted and congenitally blind participants localized tactile targets on the palm or back of one hand, while ignoring simultaneous tactile distractors at congruent or incongruent locations on the other hand. We probed the interplay of anatomical and external location codes for spatial congruency effects by varying hand posture: the palms either both faced down, or one faced down and one up. In the latter posture, externally congruent target and distractor locations were anatomically incongruent and vice versa. Target locations had to be reported either anatomically (“palm” or “back” of the hand), or externally (“up” or “down” in space). Under anatomical instructions, performance was more accurate for anatomically congruent than incongruent target-distractor pairs. In contrast, under external instructions, performance was more accurate for externally congruent than incongruent pairs. These modulations were evident in sighted and blind individuals. Notably, distractor effects were overall far smaller in blind than in sighted participants, despite comparable target-distractor identification performance. Thus, the absence of developmental vision seems to be associated with an increased ability to focus tactile attention towards a non-spatially defined target. Nevertheless, that blind individuals exhibited effects of hand posture and task instructions in their congruency effects suggests that, like the sighted, they automatically integrate anatomical and external information during tactile localization. Moreover, spatial integration in tactile processing is, thus, flexibly adapted by top-down information—here, task instruction—even in the absence of developmental vision.
机译:任务要求调节有视力的人的触觉定位,大概是通过对基于皮肤的解剖信息和基于外部的姿势信息的空间整合中的重量调整进行调整。相反,以前的研究表明,先天性盲人默认情况下不进行自动空间整合,而仅使用基于皮肤的信息来定位触摸。在这里,有视力和先天性盲人的参与者将触觉目标定位在一只手的手掌或后背,而另一方面却忽略了同时触觉牵张器在一致或不一致的位置。我们通过改变手的姿势来探究解剖学和外部位置代码之间的相互作用,以达到空间一致性的效果:手掌要么面向下,要么一面向下再一面向上。在后一种姿势中,外部一致的目标和牵张器位置在解剖学上不一致,反之亦然。必须通过解剖学(手的“掌”或“后”)或外部(空间的“上”或“下”)报告目标位置。在解剖学指导下,对于解剖学上一致的目标,其性能要比目标/干扰物对不一致时的结果更为准确。相反,在外部指令的指导下,与外部不一致的对相比,外部一致的性能更准确。这些调节在有视力和盲人中很明显。值得注意的是,尽管目标干扰物的识别性能相当,但盲人的干扰物效果总体上要弱于视觉参与者。因此,缺乏发育视力似乎与将触觉注意力集中于非空间定义的目标的能力增强有关。然而,盲人在其一致性效果中表现出手势和任务指令的效果表明,与视力正常人一样,他们在触觉定位过程中会自动整合解剖学信息和外部信息。而且,即使在缺乏发展视野的情况下,触觉处理中的空间整合也可以通过自上而下的信息(此处为任务指令)灵活地调整。

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