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首页> 外文期刊>Journal of Cognitive Neuroscience >Acoustical Vision of Neglected Stimuli: Interaction among Spatially Converging Audiovisual Inputs in Neglect Patients
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Acoustical Vision of Neglected Stimuli: Interaction among Spatially Converging Audiovisual Inputs in Neglect Patients

机译:被忽视的刺激声视觉:被忽视的患者在空间会聚视听输入之间的相互作用

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摘要

Cross-modal spatial integration between auditory and visual stimuli is a common phenomenon in space perception. The principles underlying such integration have been outlined by neurophysiological and behavioral studies in animals (Stein & Meredith, 1993), but little evidence exists proving that similar principles occur also in humans. In the present study, we explored such possibility in patients with visual neglect, namely, patients with visuospatial impairment. To test this hypothesis, neglect patients were required to detect brief flash of light presented in one of six spatial positions, either in a unimodal condition (i.e., only visual stimuli were presented) or in a cross-modal condition (i.e., a sound was presented simultaneously to the visual target, either at the same spatial position or a tone of the remaining five possible positions). The results showed an improvement of visual detection when visual and auditory stimuli were originating from the same position in space or at close spatial disparity (168). In contrast, no improvement was found when the spatial separation of visual and auditory stimuli was larger than 168. Moreover, the improvement was larger for visual positions that were more affected by the spatial impairment, i.e., the most peripheral positions in the left visual field (LVF). In conclusion, the results of the present study considerably extend our knowledge about the multisensory integration, by showing in humans the existence of an integrated visuoauditory system with functional properties similar to those found in animals.
机译:听觉和视觉刺激之间的跨模式空间整合是空间感知中的常见现象。动物的神经生理学和行为研究已经概述了这种整合的基本原理(Stein&Meredith,1993),但是很少有证据证明类似的原理也会在人类中发生。在本研究中,我们探讨了视觉疏忽患者(即视觉空间障碍患者)的这种可能性。为了检验该假设,需要忽略的患者在单峰状态(即仅显示视觉刺激)或跨峰状态(即有声音)中检测在六个空间位置之一中出现的短暂闪光。同时呈现给视觉目标(在相同的空间位置或其余五个可能位置的色调)。结果表明,当视觉和听觉刺激源自空间中的相同位置或空间差异很近时,视觉检测得到了改善(168)。相反,当视觉和听觉刺激的空间间隔大于168时,则没有发现改善。此外,对于受空间损伤影响更大的视觉位置(即,左视野中最外围的位置),改善程度更大(LVF)。总而言之,本研究的结果通过向人类展示了具有类似于动物的功能特性的集成视觉听觉系统的存在,大大扩展了我们对多感官整合的认识。

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