King Andrew J, Walker Kerry M M
Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, UK.
Biol Cybern. 2012 Dec;106(11-12):617-25. doi: 10.1007/s00422-012-0502-x. Epub 2012 Jul 14.
Multisensory integration was once thought to be the domain of brain areas high in the cortical hierarchy, with early sensory cortical fields devoted to unisensory processing of inputs from their given set of sensory receptors. More recently, a wealth of evidence documenting visual and somatosensory responses in auditory cortex, even as early as the primary fields, has changed this view of cortical processing. These multisensory inputs may serve to enhance responses to sounds that are accompanied by other sensory cues, effectively making them easier to hear, but may also act more selectively to shape the receptive field properties of auditory cortical neurons to the location or identity of these events. We discuss the new, converging evidence that multiplexing of neural signals may play a key role in informatively encoding and integrating signals in auditory cortex across multiple sensory modalities. We highlight some of the many open research questions that exist about the neural mechanisms that give rise to multisensory integration in auditory cortex, which should be addressed in future experimental and theoretical studies.
多感官整合曾被认为是皮质层级较高的脑区的功能,早期感觉皮质区域专门负责对来自其特定感觉感受器的输入进行单感官处理。最近,大量证据表明,即使在初级听觉皮质区域,听觉皮质中也存在视觉和躯体感觉反应,这改变了人们对皮质处理的这种看法。这些多感官输入可能有助于增强对伴有其他感觉线索的声音的反应,实际上使它们更容易被听到,但也可能更具选择性地塑造听觉皮质神经元的感受野特性,以适应这些事件的位置或特征。我们讨论了新的、相互印证的证据,即神经信号的多重化可能在跨多种感觉模态的听觉皮质中对信号进行信息编码和整合方面发挥关键作用。我们强调了关于听觉皮质中产生多感官整合的神经机制存在的许多尚未解决的研究问题,这些问题应在未来的实验和理论研究中加以解决。