首页> 外文期刊>Behavioural Brain Research: An International Journal >Sound localization with eccentric head position.
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Sound localization with eccentric head position.

机译:声音偏心定位。

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This study investigates the influence of head-to-trunk position on auditory localization in humans. Various methods of head pointing, of two-alternative forced choice, and hand pointing were employed. Head-pointing toward actual sound sources in darkness, by using only the subjective median plane of the head as a reference, resulted in systematic underestimations of target eccentricity. The deviations of the terminal head position from the target shifted with a mean slope of approximately 0.1 degrees per degree change in head position. A corresponding shift in the localization of virtual sound sources (presented via headphones during eccentric head positions) was demonstrated by requiring forced-choice (left or right) responses with respect to the subjective median plane of the head. Head pointing toward remembered auditory targets in darkness resulted in undershoots similar to those found with actual targets. However, when a visual marker of the actual median plane of the head was additionally presented to the subject during these tasks (by a laser attached to the head that projected a spot onto a screen), sound localization was fairly accurate. Localization of eccentric auditory targets by using a swivel hand pointer also showed systematic errors similar to those found with head pointing in darkness when the head was simultaneously oriented toward the sound. When the head remained in alignment with the trunk, hand pointing resulted in overshooting responses. These results may be related to neural processes, presumably in the posterior parietal cortex, that transform auditory and visual spatial coordinates into a common, trunk-centered, frame of reference.
机译:这项研究调查了头对头位置对人类听觉定位的影响。采用了各种指向头的方法,两种选择的强制选择以及指向手的方法。通过仅将头部的主观正中平面作为参考,将头部指向黑暗中的实际声源,会导致系统地低估了目标偏心率。终端头位置与目标的偏差以头位置每度变化约0.1度的平均斜率移动。通过要求相对于头部的主观正中平面的强制选择(左或右)响应,证明了虚拟声源的定位发生了相应的变化(在偏心的头部位置时通过耳机显示)。头部指向黑暗中记住的听觉目标,导致下冲与实际目标相似。但是,当在这些任务期间(通过连接到头部的激光将点投射到屏幕上)向对象另外显示头部的实际中位平面的视觉标记时,声音定位非常准确。通过使用旋转手形指针对偏心听觉目标进行定位,还显示出系统错误,类似于当头部同时指向声音时,将头部指向黑暗。当头部保持与躯干对齐时,手指指向会导致超调响应。这些结果可能与可能位于顶叶后皮质的神经过程有关,该过程将听觉和视觉空间坐标转换为以躯干为中心的通用参照系。

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