首页> 美国卫生研究院文献>The Journal of Neuroscience >Responses to glossopharyngeal stimulus in the early embryonic chick brainstem: spatiotemporal patterns in three dimensions from repeated multiple-site optical recording of electrical activity
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Responses to glossopharyngeal stimulus in the early embryonic chick brainstem: spatiotemporal patterns in three dimensions from repeated multiple-site optical recording of electrical activity

机译:早期胚胎雏鸡脑干对舌咽刺激的反应:电活动的重复多部位光学记录在三个维度上的时空模式

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摘要

In an effort to assess the spatial patterning of glossopharyngeal responses in the early embryonic chick brainstem, we used a multiple- site optical recording system with a 12 x 12 element photodiode array and a voltage-sensitive merocyanine-rhodanine dye (NK2761) to monitor neural transmembrane voltage activities. Seven and 8 d old embryonic chick brainstems were sliced into 1400–1600 microns thick sections with the glossopharyngeal and vagal nerves attached, and then stained with the dye. Neural voltage-related optical signals were evoked by a positive brief (depolarizing) square current pulse applied to the glossopharyngeal nerve with a microsuction electrode, and then recorded simultaneously from many loci in the objective two-dimensional image plane of a compound microscope. In addition to the multiple-site optical recording technique, we tried to introduce an optical sectioning method by changing the focal plane of the microscope to obtain three-dimensional information. Thus, we have been able to assess semiquantitatively the three-dimensional profiles of two glossopharyngeal response areas corresponding to the nucleus of the glossopharyngeal nerve (nucleus nervi glossopharyngei) and the nucleus of the tractus solitarius. Furthermore, glutaminergic excitatory postsynaptic potentials were determined within the response area corresponding to the nucleus of the tractus solitarius. In addition, we also compared the glossopharyngeal and vagal response areas and found that the cores of the related nuclei are separated in three dimensions.
机译:为了评估早期雏鸡脑干舌咽反应的空间模式,我们使用了具有12 x 12元素光电二极管阵列和电压敏感型花菁-罗丹宁染料(NK2761)的多位置光学记录系统,以监测神经跨膜电压活动。将7和8天大的胚胎小鸡脑干切成1400-1600微米厚的切片,并附上舌咽和迷走神经,然后用染料染色。用微抽吸电极向舌咽神经施加正的短暂(去极化)方电流脉冲,诱发与神经电压有关的光信号,然后从复合显微镜的客观二维像平面中的许多位点同时记录下来。除了多站点光学记录技术外,我们还尝试通过改变显微镜的焦平面以获得三维信息来引入光学切片方法。因此,我们已经能够半定量地评估两个舌咽反应区域的三维轮廓,这两个区域对应于舌咽神经核(神经核舌咽神经)和孤束核。此外,在对应于孤束核的反应区域内确定谷氨酰胺能兴奋性突触后电位。此外,我们还比较了舌咽和迷走神经反应区域,发现相关细胞核的核心在三个维度上分开。

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