Perrault Thomas J, Vaughan J William, Stein Barry E, Wallace Mark T
Department of Neurobiology and Anatomy, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157, USA.
J Neurophysiol. 2005 May;93(5):2575-86. doi: 10.1152/jn.00926.2004. Epub 2005 Jan 5.
Many neurons in the superior colliculus (SC) integrate sensory information from multiple modalities, giving rise to significant response enhancements. Although enhanced multisensory responses have been shown to depend on the spatial and temporal relationships of the stimuli as well as on their relative effectiveness, these factors alone do not appear sufficient to account for the substantial heterogeneity in the magnitude of the multisensory products that have been observed. Toward this end, the present experiments have revealed that there are substantial differences in the operations used by different multisensory SC neurons to integrate their cross-modal inputs, suggesting that intrinsic differences in these neurons may also play an important deterministic role in multisensory integration. In addition, the integrative operation employed by a given neuron was found to be well correlated with the neuron's dynamic range. In total, four categories of SC neurons were identified based on how their multisensory responses changed relative to the predicted addition of the two unisensory inputs as stimulus effectiveness was altered. Despite the presence of these categories, a general rule was that the most robust multisensory enhancements were seen with combinations of the least effective unisensory stimuli. Together, these results provide a better quantitative picture of the integrative operations performed by multisensory SC neurons and suggest mechanistic differences in the way in which these neurons synthesize cross-modal information.
上丘(SC)中的许多神经元整合来自多种感觉模态的信息,从而产生显著的反应增强。尽管已表明增强的多感觉反应取决于刺激的空间和时间关系以及它们的相对有效性,但仅这些因素似乎不足以解释所观察到的多感觉产物大小的显著异质性。为此,目前的实验表明,不同的多感觉SC神经元在整合其跨模态输入时所采用的操作存在实质性差异,这表明这些神经元的内在差异也可能在多感觉整合中起重要的决定性作用。此外,发现给定神经元所采用的整合操作与其动态范围密切相关。总共根据随着刺激有效性的改变,其多感觉反应相对于两个单感觉输入的预测相加如何变化,确定了四类SC神经元。尽管存在这些类别,但一般规律是,最有效的多感觉增强出现在最无效的单感觉刺激的组合中。总之,这些结果提供了多感觉SC神经元执行的整合操作的更好定量描述,并表明这些神经元合成跨模态信息的方式存在机制差异。