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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Multisensory integration of dynamic faces and voices in rhesus monkey auditory cortex.
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Multisensory integration of dynamic faces and voices in rhesus monkey auditory cortex.

机译:恒河猴听觉皮层中动态面孔和声音的多感官融合。

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摘要

In the social world, multiple sensory channels are used concurrently to facilitate communication. Among human and nonhuman primates, faces and voices are the primary means of transmitting social signals (Adolphs, 2003; Ghazanfar and Santos, 2004). Primates recognize the correspondence between species-specific facial and vocal expressions (Massaro, 1998; Ghazanfar and Logothetis, 2003; Izumi and Kojima, 2004), and these visual and auditory channels can be integrated into unified percepts to enhance detection and discrimination. Where and how such communication signals are integrated at the neural level are poorly understood. In particular, it is unclear what role "unimodal" sensory areas, such as the auditory cortex, may play. We recorded local field potential activity, the signal that best correlates with human imaging and event-related potential signals, in both the core and lateral belt regions of the auditory cortex in awake behaving rhesus monkeys while they viewed vocalizing conspecifics. We demonstrate unequivocally that the primate auditory cortex integrates facial and vocal signals through enhancement and suppression of field potentials in both the core and lateral belt regions. The majority of these multisensory responses were specific to face/voice integration, and the lateral belt region shows a greater frequency of multisensory integration than the core region. These multisensory processes in the auditory cortex likely occur via reciprocal interactions with the superior temporal sulcus.
机译:在社交世界中,同时使用多个感官渠道来促进沟通。在人类和非人类的灵长类动物中,面孔和声音是传递社会信号的主要手段(Adolphs,2003; Ghazanfar和Santos,2004)。灵长类动物识别特定物种的面部和声音表达之间的对应关系(Massaro,1998; Ghazanfar和Logothetis,2003; Izumi和Kojima,2004),这些视觉和听觉通道可以整合到统一的感知中,以增强检测和辨别力。人们对在神经水平整合此类通信信号的位置和方式知之甚少。特别是,尚不清楚“单峰”感觉区(如听觉皮层)可能起什么作用。我们在觉醒的恒河猴观察发声特定体时,在听觉皮层的核心和外侧带区域中记录了局部场电势活动,该信号与人类成像和事件相关的电势信号最相关。我们明确表明,灵长类听觉皮层通过增强和抑制核心带和外侧带区域中的场势整合了面部和声音信号。这些多感官反应中的大多数是特定于面部/语音整合的,并且侧带区域显示出比核心区域更高的多感官整合频率。听觉皮层中的这些多感官过程可能通过与上颞沟的交互作用发生。

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