Skaliora Irini, Doubell Timothy P, Holmes Nicholas P, Nodal Fernando R, King Andrew J
University Laboratory of Physiology, University of Oxford, Oxford OX1 3PT, UK.
J Neurophysiol. 2004 Nov;92(5):2933-46. doi: 10.1152/jn.00450.2004. Epub 2004 Jun 30.
We have used a slice preparation of the infant rat midbrain to examine converging inputs onto neurons in the deeper multisensory layers of the superior colliculus (dSC). Electrical stimulation of the superficial visual layers (sSC) and of the auditory nucleus of the brachium of the inferior colliculus (nBIC) evoked robust monosynaptic responses in dSC cells. Furthermore, the inputs from the sSC were found to be topographically organized as early as the second postnatal week and thus before opening of the eyes and ear canals. This precocious topography was found to be sculpted by GABAA-mediated inhibition of a more widespread set of connections. Tracer injections in the nBIC, both in coronal slices as well as in hemisected brains, confirmed a robust projection originating in the nBIC with distinct terminals in the proximity of the cell bodies of dSC neurons. Combined stimulation of the sSC and nBIC sites revealed that the presumptive visual and auditory inputs are summed linearly. Finally, whereas either input on its own could manifest a significant degree of paired-pulse facilitation, temporally offset stimulation of the two sites revealed no synaptic interactions, indicating again that the two inputs function independently. Taken together, these data provide the first detailed intracellular analysis of convergent sensory inputs onto dSC neurons and form the basis for further exploration of multisensory integration and developmental plasticity.
我们利用幼鼠中脑切片制剂,来检测汇聚到上丘深层多感觉层(dSC)神经元上的输入。对浅表视觉层(sSC)和下丘臂听觉核(nBIC)进行电刺激,可在dSC细胞中诱发强烈的单突触反应。此外,早在出生后第二周,即在眼睛和耳道开放之前,就发现来自sSC的输入呈拓扑结构排列。这种早熟的拓扑结构是由GABAA介导的对更广泛连接集的抑制作用所塑造的。在冠状切片以及半切脑中向nBIC注射示踪剂,证实了源自nBIC的强大投射,其在dSC神经元胞体附近有明显的终末。对sSC和nBIC部位进行联合刺激显示,假定的视觉和听觉输入呈线性相加。最后,虽然单独的任何一种输入都可表现出显著程度的双脉冲易化,但对这两个部位进行时间上错开的刺激未发现突触相互作用,这再次表明这两种输入独立发挥作用。综上所述,这些数据首次对汇聚到dSC神经元上的感觉输入进行了详细的细胞内分析,并为进一步探索多感觉整合和发育可塑性奠定了基础。