首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Representation of Auditory Motion Directions and Sound Source Locations in the Human Planum Temporale
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Representation of Auditory Motion Directions and Sound Source Locations in the Human Planum Temporale

机译:在人Platum休闲中的听觉运动方向和声源位置表示

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The ability to compute the location and direction of sounds is a crucial perceptual skill to efficiently interact with dynamic environments. How the human brain implements spatial hearing is, however, poorly understood. In our study, we used fMRI to characterize the brain activity of male and female humans listening to sounds moving left, right, up, and down as well as static sounds. Whole-brain univariate results contrasting moving and static sounds varying in their location revealed a robust functional preference for auditory motion in bilateral human planum temporale (hPT). Using independently localized hPT, we show that this region contains information about auditory motion directions and, to a lesser extent, sound source locations. Moreover, hPT showed an axis of motion organization reminiscent of the functional organization of the middle-temporal cortex (hMT + /V5) for vision. Importantly, whereas motion direction and location rely on partially shared pattern geometries in hPT, as demonstrated by successful cross-condition decoding, the responses elicited by static and moving sounds were, however, significantly distinct. Altogether, our results demonstrate that the hPT codes for auditory motion and location but that the underlying neural computation linked to motion processing is more reliable and partially distinct from the one supporting sound source location.
机译:计算声音位置和方向的能力是有效地与动态环境有效地交互的重要感知技能。然而,人脑如何实现空间听证会很差。在我们的研究中,我们使用FMRI来表征男性和女性人类的大脑活动,听起来左右移动的声音,正确,上升,下降以及静态声音。整个大脑单变量结果对比其位置变化的移动和静态声音呈现了双边人Pallum休闲(HPT)中的听觉运动的强大功能偏好。使用独立本地化HPT,我们表明该区域包含有关听觉运动方向的信息,以及在较小程度上,声音源位置。此外,HPT显示了一种运动组织轴,使中间颞型皮质(HMT + / V5)的功能组织联想到视觉。重要的是,而动态方向和位置依赖于HPT中的部分共同的图案几何形状,如通过成功交叉条件解码所证明的,但是通过静态和移动声音引出的响应显着差异。完全,我们的结果表明,用于听觉运动和位置的HPT代码,但是连接到运动处理的底层神经计算更可靠并且部分地不同于一个支持的声源位置。

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