Kayser Christoph, Logothetis Nikos K
Max Planck Institute for Biological Cybernetics, Spemannstrasse 38, 72076 Tübingen, Germany.
Brain Struct Funct. 2007 Sep;212(2):121-32. doi: 10.1007/s00429-007-0154-0. Epub 2007 Jul 28.
Our different senses provide complementary evidence about the environment and their interaction often aids behavioral performance or alters the quality of the sensory percept. A traditional view defers the merging of sensory information to higher association cortices, and posits that a large part of the brain can be reduced into a collection of unisensory systems that can be studied in isolation. Recent studies, however, challenge this view and suggest that cross-modal interactions can already occur in areas hitherto regarded as unisensory. We review results from functional imaging and electrophysiology exemplifying cross-modal interactions that occur early during the evoked response, and at the earliest stages of sensory cortical processing. Although anatomical studies revealed several potential origins of these cross-modal influences, there is yet no clear relation between particular functional observations and specific anatomical connections. In addition, our view on sensory integration at the neuronal level is coined by many studies on subcortical model systems of sensory integration; yet, the patterns of cross-modal interaction in cortex deviate from these model systems in several ways. Consequently, future studies on cortical sensory integration need to leave the descriptive level and need to incorporate cross-modal influences into models of the organization of sensory processing. Only then will we be able to determine whether early cross-modal interactions truly merit the label sensory integration, and how they increase a sensory system's ability to scrutinize its environment and finally aid behavior.
我们的不同感官为我们提供了关于环境的互补证据,它们之间的相互作用常常有助于行为表现,或改变感官感知的质量。传统观点认为,感官信息的融合发生在更高层次的联合皮层,并假定大脑的很大一部分可以简化为一系列可单独研究的单感官系统。然而,最近的研究对这一观点提出了挑战,并表明跨模态相互作用可能已经在迄今被视为单感官的区域发生。我们回顾了功能成像和电生理学的研究结果,这些结果例证了在诱发反应早期以及感觉皮层处理的最早阶段发生的跨模态相互作用。尽管解剖学研究揭示了这些跨模态影响的几个潜在来源,但特定的功能观察结果与特定的解剖学联系之间仍没有明确的关系。此外,我们对神经元水平上的感觉整合的看法,是由许多关于感觉整合的皮层下模型系统的研究所塑造的;然而,皮层中的跨模态相互作用模式在几个方面与这些模型系统不同。因此,未来关于皮层感觉整合的研究需要脱离描述层面,需要将跨模态影响纳入感觉处理组织的模型中。只有这样,我们才能确定早期的跨模态相互作用是否真正值得被称为感觉整合,以及它们如何提高感觉系统审视其环境并最终辅助行为的能力。