首页> 外文期刊>Journal of Neurophysiology >Perception of auditory, visual, and egocentric spatial alignment adapts differently to changes in eye position.
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Perception of auditory, visual, and egocentric spatial alignment adapts differently to changes in eye position.

机译:听觉,视觉和以自我为中心的空间排列的感知方式会不同地适应眼睛位置的变化。

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Vision and audition represent the outside world in spatial synergy that is crucial for guiding natural activities. Input conveying eye-in-head position is needed to maintain spatial congruence because the eyes move in the head while the ears remain head-fixed. Recently, we reported that the human perception of auditory space shifts with changes in eye position. In this study, we examined whether this phenomenon is 1) dependent on a visual fixation reference, 2) selective for frequency bands (high-pass and low-pass noise) related to specific auditory spatial channels, 3) matched by a shift in the perceived straight-ahead (PSA), and 4) accompanied by a spatial shift for visual and/or bimodal (visual and auditory) targets. Subjects were tested in a dark echo-attenuated chamber with their heads fixed facing a cylindrical screen, behind which a mobile speaker/LED presented targets across the frontal field. Subjects fixated alternating reference spots (0, +/-20 degrees ) horizontally or vertically while either localizing targets or indicating PSA using a laser pointer. Results showed that the spatial shift induced by ocular eccentricity is 1) preserved for auditory targets without a visual fixation reference, 2) generalized for all frequency bands, and thus all auditory spatial channels, 3) paralleled by a shift in PSA, and 4) restricted to auditory space. Findings are consistent with a set-point control strategy by which eye position governs multimodal spatial alignment. The phenomenon is robust for auditory space and egocentric perception, and highlights the importance of controlling for eye position in the examination of spatial perception and behavior.
机译:视觉和听觉代表着空间协同作用中的外部世界,这对于引导自然活动至关重要。需要输入输入的头对头位置来保持空间一致,因为眼睛在头部中移动,而耳朵保持头部固定。最近,我们报道了人类对听觉空间的感知随着眼位置的变化而变化。在这项研究中,我们检查了这种现象是否是1)依赖于视觉注视参考; 2)对与特定听觉空间通道相关的频带(高通和低通噪声)具有选择性; 3)视听觉移动而匹配的现象。 (4)视觉和/或双峰(视觉和听觉)目标伴随着空间偏移。在黑暗回声衰减室中对受试者进行测试,其头部面向圆柱屏幕,固定在其后,移动扬声器/ LED在整个前场呈现目标。受试者水平或垂直固定交替的参考点(0,+ /-20度),同时定位目标或使用激光指示器指示PSA。结果表明,由眼偏心引起的空间移位是:1)保留给听觉目标,没有视觉固定参考; 2)泛化了所有频带,因此泛滥了所有听觉空间通道; 3)与PSA移位平行,以及4)限于听觉空间。研究结果与设定点控制策略一致,该方法通过眼睛位置控制多峰空间对齐。这种现象对于听觉空间和以自我为中心的感知是有力的,并且突出了在检查空间感知和行为中控制眼位的重要性。

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