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Where did that noise come from? Memory for sound locations is exceedingly eccentric both in front and in rear space

机译:那噪音来自哪里? 声音位置的内存非常偏心,两者都在前面和后面空间

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Few studies have examined the stability of the representation of the position of sound sources in spatial working memory. The goal of this study was to verify whether the memory of sound position declines as maintenance time increases. In two experiments, we tested the influence of the delay between stimulus and response in a sound localization task. In Experiment 1, blindfolded participants listened to bursts of white noise originating from 16 loudspeakers equally spaced in a 360-degree circular space around the listener in such a way that the nose was aligned to the zero-degree coordinate. Their task was to indicate sounds' position using a digital pointer when prompted at varying delays: 0, 3, and 6 s after stimulus offset. In Experiment 2, the task was analogous to Exp. 1 with stimulus-response delays of 0 or 10 s. Results of the two experiments show that increasing stimulus-response delays up to 10 s do not impair sound localization. Participants systematically overestimated the eccentricity of the auditory stimulus by shifting their responses either toward the 90-degree coordinate, in alignment with the right ear, or toward the 270-degree coordinate, in alignment with the left ear. Such bias was analogous in the front and in the rear azimuthal space and was only marginally influenced by the delay conditions. We conclude that the representation of auditory space in working memory is stable, but directionally biased with systematic overestimation of eccentricity.
机译:很少有研究已经检查了空间工作记忆中声源位置表示的稳定性。本研究的目标是验证声音位置的记忆是否随着维护时间的增加而下降。在两个实验中,我们在声音定位任务中测试了刺激和响应之间的延迟的影响。在实验1中,蒙帘参与者倾听了源自16位横向于听众的360度圆形空间中的16个扬声器的白噪声的突发,使得鼻子与零坐标对齐。他们的任务是在刺激偏移后提示时使用数字指针指示声音的位置:0,3和6秒。在实验2中,任务类似于EXP。 1刺激响应延迟为0或10秒。结果的结果表明,增加刺激反应延迟高达10秒不会损害声音定位。参与者通过将它们的响应转移到与右耳的对准或朝向270度坐标的对准以与左耳对准来系统地高估了听觉刺激的偏心刺激。这种偏差类似于前端和后端方形空间,并且仅受延迟条件的略微影响。我们得出结论,工作记忆中的听觉空间的表示是稳定的,但方向偏向于偏心的系统高估。

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