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Unbiased number of vestibular ganglion neurons in the mouse.

机译:小鼠前庭神经节神经元的无偏数。

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摘要

Vestibular sensory information from the labyrinth and otolith organs is conducted to the central nervous system exclusively via primary vestibular afferents (PVA) originating from neurons located in the vestibular ganglion (VG). In the present study, the total number of VG neurons was determined in two different wild-type mouse strains using the principles of unbiased stereological counting methods by means of the physical disector. 3316 (+/-225 SD) neurons were present in the VG of the B6CBA-strain and 3551 (+/-239 SD) in C57BL/6J-mice. Since no statistical difference was detected between the two strains, the pooled mean number was 3433 (+/-232 SD) neurons. This is the first unbiased estimate of VG neurons aimed at providing a numerical basis for comparative studies and for the impact of experimental, pharmacological and pathological conditions as well as ageing on the survival and maintenance of VG neurons.
机译:来自迷宫和耳石器官的前庭感觉信息仅通过源自位于前庭神经节(VG)的神经元的前庭传入神经(PVA)传导至中枢神经系统。在本研究中,通过物理解剖器使用无偏体视学计数方法的原理,确定了两种不同野生型小鼠品系中VG神经元的总数。 B6CBA株的VG中存在3316(+/- 225 SD)个神经元,而C57BL / 6J小鼠中存在3551(+/- 239 SD)。由于在两个菌株之间未检测到统计学差异,因此合并的平均数为3433(+/- 232 SD)个神经元。这是VG神经元的第一个无偏估计,旨在为比较研究以及实验,药理和病理状况以及衰老对VG神经元的存活和维持提供影响的数值基础。

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