Leibniz Institute for Neurobiology, Dept. Auditory Learning and Speech, Brenneckestr. 6, D-39118 Magdeburg, Germany.
Hear Res. 2009 Dec;258(1-2):16-27. doi: 10.1016/j.heares.2009.04.021. Epub 2009 May 13.
During the last years it has become increasingly apparent that primary sensory cortices, like the primary auditory field AI, are not purely unisensory but also process complex information from other sensory modalities as well as non-sensory information. Here, we review our anatomical work on the connections of the auditory cortex in a small rodent, the Mongolian gerbil (Meriones unguiculatus), a common animal model in auditory research, and the related literature from other mammalian species. In particular we will show that AI has multiple connections with auditory, non-auditory sensory (visual, somatosensory, olfactory), multisensory, motor, "higher order" associative and neuromodulatory brain structures. These connections are suitable to mediate multimodal integration processes observed at the level of AI and, in turn, enable AI to influence other sensory and non-sensory systems at several cortical and subcortical levels.
在过去的几年中,越来越明显的是,初级感觉皮层,如初级听觉域 AI,不仅是单纯的单感觉的,而且还处理来自其他感觉模态以及非感觉信息的复杂信息。在这里,我们回顾了我们在小啮齿动物蒙古沙鼠(Meriones unguiculatus)的听觉皮层连接方面的解剖学工作,这是听觉研究中的常见动物模型,以及来自其他哺乳动物物种的相关文献。特别是,我们将展示 AI 与听觉、非听觉感觉(视觉、体感、嗅觉)、多感觉、运动、“更高阶”联想和神经调制脑结构有多条连接。这些连接适合介导在 AI 水平上观察到的多模态整合过程,并且反过来使 AI 能够在几个皮质和皮质下水平上影响其他感觉和非感觉系统。