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首页> 外文期刊>The Journal of Comparative Neurology >Fos expression in otolith-related brainstem neurons of postnatal rats following off-vertical axis rotation.
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Fos expression in otolith-related brainstem neurons of postnatal rats following off-vertical axis rotation.

机译:垂直轴旋转后产后大鼠耳石相关脑干神经元中的Fos表达。

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To determine the critical time of responsiveness of developing otolith organ-related brainstem neurons and their distribution, Fos protein expression in response to off-vertical axis rotations (OVAR) was mapped in conscious Sprague Dawley rats from P5 to adulthood. OVAR was used to activate sequentially all utricular hair cells per 360 degrees revolution. We detected the coding of horizontal head positions in otolith organ-related neurons within the vestibular nucleus as early as P7. In the vestibular nuclear complex and its subgroups, the density of Fos-immunoreactive (Fos-ir) neurons increased steadily with age and reached the adult level by P21. In both labyrinthectomized rats subjected to OVAR and normal rats kept stationary, labeled neurons were found sporadically in the aforementioned brain regions in each age group, confirming that Fos labeling observed in neurons of normal experimental rats subjected to OVAR was due to otolith organ stimulation. Whereas OVAR-induced Fos-ir neurons were also first observed in vestibular-related brain areas, such as the prepositus hypoglossal nucleus, gigantocellular reticular nucleus, and locus coeruleus, of normal experimental rats at P7, those in the inferior olive were observed only from P14 onward. This indicates the unique maturation time of inferior olivary neurons in gravity-related spatial coding. In general, age-dependent increase in OVAR-induced Fos-ir neurons was observed in brain areas that received otolith inputs. The locus coeruleus was exceptional in that prominent OVAR-induced Fos-ir neuronal number did not change with maturation, and this was well above the low but significant number of Fos-ir neurons in control preparations. Taken together, our results suggest that neuronal subpopulations within the developing network of the horizontal otolith system provide an anatomical basis for the postnatal development of otolith organ-related sensorimotor functions. J. Comp. Neurol. 470:282-296, 2004.
机译:为了确定发育中的耳石器官相关脑干神经元的反应性的关键时间及其分布,绘制了自P5到成年的有意识的Sprague Dawley大鼠的Fos蛋白表达,以响应离轴垂直旋转(OVAR)。 OVAR用于每360度旋转顺序激活所有的真皮毛细胞。我们早在P7之前就检测到前庭核内耳石器官相关神经元的水平头部位置编码。在前庭核复合体及其亚组中,Fos免疫反应(Fos-ir)神经元的密度随着年龄的增长而稳定增加,到P21达到成人水平。在接受OVAR的迷路切除大鼠和保持静止的正常大鼠中,在每个年龄组的上述大脑区域中零星地发现了标记的神经元,这证实了在接受OVAR的正常实验大鼠的神经元中观察到的Fos标记是由于耳石器官刺激引起的。在P7正常实验大鼠的前庭相关脑区域(如垂体舌下丘核,巨细胞网状核和蓝斑轨迹)也首先观察到OVAR诱导的Fos-ir神经元,而在下橄榄中仅观察到P14起。这表明重力相关的空间编码中下橄榄神经元的独特成熟时间。通常,在接受耳石输入的大脑区域观察到OVAR诱导的Fos-ir神经元的年龄依赖性增加。蓝斑是异常的,因为突出的OVAR诱导的Fos-ir神经元数目不会随着成熟而改变,并且远高于对照制剂中的低但大量的Fos-ir神经元。两者合计,我们的结果表明水平耳石系统的发展网络内的神经元亚群为耳石器官相关的感觉运动功能的产后发展提供了解剖学基础。 J.比较神经元。 470:282-296,2004。

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