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二维空间中视觉与听觉的相互作用。

The interaction of vision and audition in two-dimensional space.

作者信息

Godfroy-Cooper Martine, Sandor Patrick M B, Miller Joel D, Welch Robert B

机构信息

Advanced Controls and Displays Group, Human Systems Integration Division, NASA Ames Research Center Moffett Field, CA, USA ; San Jose State University Research Foundation San José, CA, USA.

Institut de Recherche Biomédicale des Armées, Département Action et Cognition en Situation Opérationnelle Brétigny-sur-Orge, France ; Aix Marseille Université, Centre National de la Recherche Scientifique, ISM UMR 7287 Marseille, France.

出版信息

Front Neurosci. 2015 Sep 17;9:311. doi: 10.3389/fnins.2015.00311. eCollection 2015.

Abstract

Using a mouse-driven visual pointer, 10 participants made repeated open-loop egocentric localizations of memorized visual, auditory, and combined visual-auditory targets projected randomly across the two-dimensional frontal field (2D). The results are reported in terms of variable error, constant error and local distortion. The results confirmed that auditory and visual maps of the egocentric space differ in their precision (variable error) and accuracy (constant error), both from one another and as a function of eccentricity and direction within a given modality. These differences were used, in turn, to make predictions about the precision and accuracy within which spatially and temporally congruent bimodal visual-auditory targets are localized. Overall, the improvement in precision for bimodal relative to the best unimodal target revealed the presence of optimal integration well-predicted by the Maximum Likelihood Estimation (MLE) model. Conversely, the hypothesis that accuracy in localizing the bimodal visual-auditory targets would represent a compromise between auditory and visual performance in favor of the most precise modality was rejected. Instead, the bimodal accuracy was found to be equivalent to or to exceed that of the best unimodal condition. Finally, we described how the different types of errors could be used to identify properties of the internal representations and coordinate transformations within the central nervous system (CNS). The results provide some insight into the structure of the underlying sensorimotor processes employed by the brain and confirm the usefulness of capitalizing on naturally occurring differences between vision and audition to better understand their interaction and their contribution to multimodal perception.

摘要

10名参与者使用鼠标驱动的视觉指针,对随机投射在二维 frontal 场(2D)中的记忆视觉、听觉以及视觉 - 听觉组合目标进行重复的开环自我中心定位。结果以可变误差、恒定误差和局部失真来报告。结果证实,自我中心空间的听觉和视觉地图在精度(可变误差)和准确性(恒定误差)方面存在差异,彼此之间以及在给定模态内作为偏心率和方向的函数均如此。这些差异进而被用于预测空间和时间上一致的双模态视觉 - 听觉目标的定位精度和准确性。总体而言,相对于最佳单模态目标,双模态的精度提高表明存在由最大似然估计(MLE)模型很好预测的最优整合。相反,关于双模态视觉 - 听觉目标定位准确性将代表听觉和视觉表现之间的折衷且有利于最精确模态的假设被拒绝。相反,发现双模态准确性等同于或超过最佳单模态条件下的准确性。最后,我们描述了如何利用不同类型的误差来识别中枢神经系统(CNS)内的内部表征和坐标变换的属性。结果为大脑所采用的潜在感觉运动过程的结构提供了一些见解,并证实了利用视觉和听觉之间自然存在的差异来更好地理解它们的相互作用及其对多模态感知的贡献的有用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d9d/4585004/5db8fcbec1c0/fnins-09-00311-g0001.jpg

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