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首页> 外文期刊>Neuron >Motor behavior activates Bergmann glial networks.
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Motor behavior activates Bergmann glial networks.

机译:运动行为激活了伯格曼神经胶质网络。

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Although it is firmly established that neuronal activity is a prime determinant of animal behavior, relationships between astrocytic excitation and animal behavior have remained opaque. Cerebellar Bergmann glia are radial astrocytes that are implicated in motor behavior and exhibit Ca(2+) excitation. However, Ca(2+) excitation in these cells has not previously been studied in behaving animals. Using two-photon microscopy we found that Bergmann glia exhibit three forms of Ca(2+) excitation in awake, behaving mice. Two of these are ongoing within the cerebellar vermis. During locomotor performance concerted Ca(2+) excitation arises in networks of at least hundreds of Bergmann glia extending across several hundred microns or more. Concerted Ca(2+) excitation was abolished by anesthesia or blockade of either neural activity or glutamatergic transmission. Thus, large networks of Bergmann glia can be activated by specific animal behaviors and undergo excitation of sufficient magnitude to potentially initiate macroscopic changes in brain dynamics or blood flow.
机译:尽管已经确定神经元活性是动物行为的主要决定因素,但星形细胞刺激与动物行为之间的关系仍然不透明。小脑Bergmann神经胶质细胞是星形胶质细胞,涉及运动行为,并表现出Ca(2+)激发。但是,以前在行为动物中没有研究过这些细胞中的Ca(2+)激发。使用双光子显微镜,我们发现伯格曼神经胶质细胞表现出三种形式的Ca(2+)激发,表现为小鼠。其中两个在小脑ver中进行。在运动性能过程中,协调一致的Ca(2+)激发出现在至少几百个Bergmann胶质细胞的网络中,其跨过数百微米或更多。协调的Ca(2+)兴奋被麻醉或神经活动或谷氨酸能传递的阻断所取消。因此,特定的动物行为可以激活大的Bergmann胶质细胞网络,并进行足够程度的激发,以潜在地引发大脑动力学或血流的宏观变化。

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