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听觉皮层神经元中的视觉 - 听觉空间处理

Visual-auditory spatial processing in auditory cortical neurons.

作者信息

Bizley Jennifer K, King Andrew J

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Parks Road, Oxford, OX1 3PT, UK.

出版信息

Brain Res. 2008 Nov 25;1242:24-36. doi: 10.1016/j.brainres.2008.02.087. Epub 2008 Mar 10.

Abstract

Neurons responsive to visual stimulation have now been described in the auditory cortex of various species, but their functions are largely unknown. Here we investigate the auditory and visual spatial sensitivity of neurons recorded in 5 different primary and non-primary auditory cortical areas of the ferret. We quantified the spatial tuning of neurons by measuring the responses to stimuli presented across a range of azimuthal positions and calculating the mutual information (MI) between the neural responses and the location of the stimuli that elicited them. MI estimates of spatial tuning were calculated for unisensory visual, unisensory auditory and for spatially and temporally coincident auditory-visual stimulation. The majority of visually responsive units conveyed significant information about light-source location, whereas, over a corresponding region of space, acoustically responsive units generally transmitted less information about sound-source location. Spatial sensitivity for visual, auditory and bisensory stimulation was highest in the anterior dorsal field, the auditory area previously shown to be innervated by a region of extrastriate visual cortex thought to be concerned primarily with spatial processing, whereas the posterior pseudosylvian field and posterior suprasylvian field, whose principal visual input arises from cortical areas that appear to be part of the 'what' processing stream, conveyed less information about stimulus location. In some neurons, pairing visual and auditory stimuli led to an increase in the spatial information available relative to the most effective unisensory stimulus, whereas, in a smaller subpopulation, combined stimulation decreased the spatial MI. These data suggest that visual inputs to auditory cortex can enhance spatial processing in the presence of multisensory cues and could therefore potentially underlie visual influences on auditory localization.

摘要

目前,在各种物种的听觉皮层中已发现对视觉刺激有反应的神经元,但其功能大多未知。在此,我们研究了在雪貂的5个不同的初级和非初级听觉皮层区域记录的神经元的听觉和视觉空间敏感性。我们通过测量神经元对一系列方位位置呈现的刺激的反应,并计算神经反应与引发这些反应的刺激位置之间的互信息(MI),来量化神经元的空间调谐。计算了单感觉视觉、单感觉听觉以及空间和时间上同时出现的听觉 - 视觉刺激的空间调谐的MI估计值。大多数视觉反应单元传达了有关光源位置的重要信息,而在相应的空间区域内,听觉反应单元通常传递的有关声源位置的信息较少。视觉、听觉和双感觉刺激的空间敏感性在前背侧场最高,该听觉区域先前已显示接受被认为主要与空间处理有关的纹外视觉皮层区域的支配,而后假西尔维安场和后上西尔维安场,其主要视觉输入来自似乎是“什么”处理流一部分的皮层区域,传递的有关刺激位置的信息较少。在一些神经元中,将视觉和听觉刺激配对会导致相对于最有效的单感觉刺激而言,可用的空间信息增加,而在较小的亚群中,联合刺激会降低空间MI。这些数据表明,听觉皮层的视觉输入在存在多感觉线索的情况下可以增强空间处理,因此可能是视觉对听觉定位产生影响的潜在基础。

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