Babalian Alexander L
Unit of Physiology, Department of Medicine, University of Fribourg, Rue du Musée 5, 1700, Fribourg, Switzerland.
Exp Brain Res. 2005 Dec;167(3):451-7. doi: 10.1007/s00221-005-0178-8. Epub 2005 Nov 11.
Using the in vitro isolated whole brain preparation of the guinea pig, we tested the synaptic effects induced by the stimulation of pontine nuclei (PN) in intracellularly recorded and stained principal cells of the cochlear nucleus (CN). Twenty percent of the recorded cells in all CN subdivisions responded to stimulation of either ipsilateral or contralateral PN, and 12% of the cells exhibited convergence of inputs from both sides. The responses were recorded only in stellate cells of the ventral CN and in the pyramidal cells of the dorsal CN, whereas no responses were observed in bushy, octopus, and giant cells. PN stimulation produced excitatory and inhibitory postsynaptic potentials as well as mixed responses. The heterogeneous nature and the wide latency range (3.2-18 ms) of observed responses suggest significant variability in the underlying synaptic mechanisms and the implicated pathways. We propose that PN projections to the CN, terminating mainly in the granule cell domain (GCD), together with other non-auditory and auditory inputs contribute to multimodal convergence in the GCD leading ultimately to modulatory actions on the output activity of CN principal cells.
我们使用豚鼠的体外分离全脑标本,测试了在细胞内记录并染色的耳蜗核(CN)主细胞中,脑桥核(PN)刺激所诱导的突触效应。在所有CN亚区中,20%的记录细胞对同侧或对侧PN的刺激有反应,12%的细胞表现出来自两侧的输入汇聚。反应仅在腹侧CN的星状细胞和背侧CN的锥体细胞中记录到,而在浓密细胞、章鱼状细胞和巨细胞中未观察到反应。PN刺激产生兴奋性和抑制性突触后电位以及混合反应。观察到的反应的异质性和较宽的潜伏期范围(3.2 - 18毫秒)表明潜在的突触机制和相关通路存在显著变异性。我们提出,主要终止于颗粒细胞区(GCD)的PN向CN的投射,与其他非听觉和听觉输入一起,促成了GCD中的多模式汇聚,最终导致对CN主细胞输出活动的调节作用。