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Auditory self-motion simulation is facilitated by haptic and vibrational cues suggesting the possibility of actual motion

机译:触觉和振动提示促进了听觉自运动模拟,提示了实际运动的可能性

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摘要

Sound fields rotating around stationary blindfolded listeners sometimes elicit auditory circular vection, the illusion that the listener is physically rotating. Experiment 1 investigated whether auditory circular vection depends on participants‘ situational awareness of “movability,” that is, whether they sense/know that actual motion is possible or not. While previous studies often seated participants on movable chairs to suspend the disbelief of self-motion, it has never been investigated whether this does, in fact, facilitate auditory vection. To this end, 23 blindfolded participants were seated on a hammock chair with their feet either on solid ground (“movement impossible”) or suspended (“movement possible”) while listening to individualized binaural recordings of two sound sources rotating synchronously at 60/s. Although participants never physically moved, situational awareness of movability facilitated auditory vection. Moreover, adding slight vibrations like the ones result ing from actual chair rotation increased the frequency and intensity of vection. Experiment 2 extended these findings and showed that nonindividualized binaural recordings were as effective in inducing auditory circular vection as individualized recordings. These results have important implications both for our theoretical understanding of self-motion perception and for the applied field of self-motion simulations, where vibrations, nonindividualized binaural sound, and the cognitive/perceptual framework of movability can typically be provided at minimal cost and effort.
机译:围绕固定的被蒙住双眼的听者旋转的声场有时会引起听觉圆形运动,这种幻觉是听者在物理上旋转。实验1研究了听觉圆形对流是否取决于参与者对“可动性”的情境意识,即他们是否感知/知道实际运动是否可能。尽管以前的研究通常将参与者坐在可移动的椅子上以中止对自我运动的怀疑,但从未研究过这是否确实有助于听觉通气。为此,将23位蒙着眼睛的参与者坐在吊床上,双脚放在坚实的地面(“无法移动”)或悬吊(“可能移动”)上,同时聆听以60 / s同步旋转的两个声源的个性化双耳录音。尽管参与者从不动弹,但对移动性的情境意识促进了听觉通气。此外,增加轻微的振动(如椅子实际旋转所引起的振动)会增加通气的频率和强度。实验2扩展了这些发现,并表明非个性化双耳录音在诱发听觉循环运动方面与个性化录音同样有效。这些结果对于我们对自我运动知觉的理论理解以及自我运动模拟的应用领域都具有重要意义,在这些领域中,通常可以以最小的成本和精力来提供振动,非个性化的双耳声音和运动性的认知/感知框架。 。

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