Department of Anatomy and Neurobiology, Virginia Commonwealth University School of Medicine, Richmond, VA 23298, USA.
Exp Brain Res. 2010 May;202(3):725-31. doi: 10.1007/s00221-010-2163-0. Epub 2010 Jan 20.
Multisensory convergence is the first, requisite step in the process that generates neural responses to events involving more than one sensory modality. Although anatomical studies have documented the merging of afferents from different sensory modalities within a given area, they do not provide insight into the architecture of connectivity at the neuronal level that underlies multisensory processing. In fact, few anatomical studies of multisensory convergence at the neuronal level have been conducted. The present study used a combination of tract-tracing, immunocytochemistry, and confocal microscopic techniques to examine the connections related to crossmodal auditory cortical inputs to somatosensory area SIV. Axons labeled from auditory cortex were found in contact with immunolabeled interneurons in SIV, some of which also colocalized vesicular glutamate transporter 1, indicating the presence of an active, glutamatergic synapse. No specific subtype of inhibitory interneuron appeared to be targeted by the crossmodal contacts. These results provide insight into the structural basis for multisensory processing at the neuronal level and offer anatomical evidence for the direct involvement of inhibitory interneurons in multisensory processing.
多感觉融合是产生涉及多种感觉模式的事件的神经反应的第一步,也是必需的步骤。尽管解剖学研究已经记录了在特定区域内来自不同感觉模态的传入的融合,但它们并不能深入了解支持多感觉处理的神经元水平上的连接结构。事实上,很少有关于神经元水平上多感觉融合的解剖学研究。本研究采用示踪、免疫细胞化学和共聚焦显微镜技术相结合的方法,研究了与体感区 SIV 的交叉听觉皮质传入相关的连接。从听觉皮层标记的轴突与 SIV 中的免疫标记的中间神经元接触,其中一些中间神经元也共定位了囊泡谷氨酸转运体 1,表明存在活跃的谷氨酸能突触。似乎没有特定的抑制性中间神经元亚型成为交叉模态接触的目标。这些结果提供了对神经元水平上多感觉处理的结构基础的深入了解,并为抑制性中间神经元直接参与多感觉处理提供了解剖学证据。