Saccule contribution to immediate early gene induction in the gerbil brainstem with posterior canal galvanic or hypergravity stimulation

被引:25
作者
Marshburn, TH
Kaufman, GD
Purcell, IM
Perachio, AA
机构
[1] UNIV TEXAS,MED BRANCH,DEPT OTOLARYNGOL,GALVESTON,TX 77555
[2] UNIV TEXAS,MED BRANCH,DEPT INTERNAL MED,GALVESTON,TX 77555
[3] UNIV TEXAS,MED BRANCH,DEPT PHYSIOL BIOPHYS,GALVESTON,TX 77555
[4] UNIV TEXAS,MED BRANCH,DEPT ANAT NEUROSCI,GALVESTON,TX 77555
关键词
Fos; vestibular; otolith; inferior olive; semicircular canal;
D O I
10.1016/S0006-8993(97)00030-9
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Immunolabeling patterns of the immediate early gene-related protein Fos in the gerbil brainstem were studied following stimulation of the sacculus by both hypergravity and galvanic stimulation. Head-restrained, alert animals were exposed to a prolonged (1 h) inertial vector of 2 G (19.6 m/s(2)) head acceleration directed in a dorso-ventral head axis to maximally stimulate the sacculus. Fos-defined immunoreactivity was quantified, and the results compared to a control group. The hypergravity stimulus produced Fos immunolabeling in the dorsomedial cell column (dmcc) of the inferior olive independently of other subnuclei. Similar dmcc labeling was induced by a 30 min galvanic stimulus of up to -100 mu A applied through a stimulating electrode placed unilaterally on the bony labyrinth overlying the posterior canal (PC). The pattern of vestibular afferent firing activity induced by this galvanic stimulus was quantified in anesthetized gerbils by simultaneously recording from Scarpa's ganglion. Only saccular and PC afferent neurons exhibited increases in average firing rates of 200-300%, suggesting a pattern of current spread involving only PC and saccular afferent neurons at this level of stimulation. These results suggest that alteration in saccular afferent firing rates are sufficient ro induce Fos-defined genomic activation of the dmcc, and lend further evidence to the existence of a functional vestibulo-olivary-cerebellar pathway of adaptation to novel gravito-inertial environments. (C) 1997 Elsevier Science B.V.
引用
收藏
页码:51 / 58
页数:8
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