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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Evidence for macular gravity receptor modulation of hypothalamic, limbic and autonomic nuclei.
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Evidence for macular gravity receptor modulation of hypothalamic, limbic and autonomic nuclei.

机译:黄体重力受体调节下丘脑,边缘和自主神经的证据。

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Mice lacking normal vestibular gravity reception show altered homeostatic, circadian and autonomic responses to hypergravity (+G) exposure. Using c-Fos as a marker of neuronal activation, the current study identifies CNS nuclei that may be critical for initiating and integrating such responses to changes in vestibular signaling. This experiment utilized the mutant C57BL/6JEi-het mouse (het), which lacks macular otoconia and thus gravity receptor function. Following 2 h of 2G (2x Earth's gravity) exposure (via centrifugation) the neuronal responses of the het mice were compared with wildtype mice similarly exposed to 2G, as well as het and wildtype 1G controls. Wildtype mice exposed to 2G demonstrated robust c-Fos expression in multiple autonomic, hypothalamic and limbic nuclei, including: the lateral septum, bed nucleus of the stria terminalis, amygdala, paraventricular hypothalamus, dorsomedial hypothalamus, arcuate, suprachiasmatic hypothalamus, intergeniculate leaflet, dorsal raphe, parabrachial andlocus coeruleus. The het mice exposed to 2G demonstrated little to null c-Fos expression in these nuclei with a few exceptions and, in general, a similar pattern of c-Fos to 1G controls. Data from this study further support the existence of a complex and extensive influence of the neurovestibular system on homeostatic, circadian and possibly autonomic regulatory systems.
机译:缺乏正常前庭重力接收的小鼠表现出对超重力(+ G)暴露的稳态,昼夜节律和自主反应。使用c-Fos作为神经元激活的标志物,当前的研究确定了CNS核,对于启动和整合对前庭信号变化的这种反应可能至关重要。该实验利用了突变型C57BL / 6JEi-het小鼠(het),该小鼠缺乏黄斑部的耳石症,因此缺乏重力受体功能。在2小时2G(地球重力的2倍)暴露(通过离心作用)之后,将het小鼠的神经元反应与同样暴露于2G的野生型小鼠以及het和野生型1G对照进行了比较。暴露于2G的野生型小鼠在多个自主神经,下丘脑和边缘核中表现出强健的c-Fos表达,包括:外侧中隔,纹状体终末床核,杏仁核,丘脑旁下丘脑,背侧丘脑下丘脑,弓形,丘脑上丘脑下丘脑,间质小叶,缝线,臂臂旁和蓝冠。暴露于2G的het小鼠在这些细胞核中几乎没有显示出c-Fos表达,只有少数例外,并且通常与1G对照的c-Fos相似。这项研究的数据进一步支持了神经前庭系统对稳态,昼夜节律以及可能的自主调节系统的复杂而广泛的影响。

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