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Multiple-site optical monitoring of neural activity evoked by vagus nerve stimulation in the embryonic chick brain stem.

机译:多部位光学监测胚胎鸡脑干迷走神经刺激引起的神经活动。

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摘要

1. Electrical activity in the embryonic chick brain stem has been monitored optically. The vagus-brain stem preparations isolated from 7-day-old chick embryos were stained with voltage-sensitive merocyanine-rhodanine dyes. 2. Voltage-related optical absorption signals evoked by vagus nerve stimulation with depolarizing and hyperpolarizing pulses using a suction electrode were recorded simultaneously from 127 adjacent loci in the brain stem using a 12 x 12-element photodiode array. 3. The optical signals evoked by the stimulation appeared to be concentrated longitudinally in the central region and in the lateral region, both on the stimulated side of the brain stem, and they did not spread to the opposite side. In addition, the evoked optical responses were detected from small areas on the dorsal surface of the stimulated side, in experiments using transverse slices of brain stem. 4. The optical action potential signals evoked by the brief depolarizing stimulus were conducted slowly and were blocked completely by tetrodotoxin. With relatively long-duration depolarizing and hyperpolarizing stimulations, electrotonic responses were recorded. 5. When 2 microA/2 ms hyperpolarizing pulse stimulations were applied, anode-break excitation signals were detected, and these signals were also blocked by tetrodotoxin. 6. On the basis of the data obtained from these experiments, we constructed maps of the electrical response area and demonstrated the spatial pattern of the vagus dorsal nucleus in the 7-day-old embryonic chick brain stem.
机译:1.光学监测了胚胎鸡脑干中的电活动。从7天大的雏鸡胚胎中分离出的迷走性脑干制剂用电压敏感的花菁-若丹宁染料染色。 2.使用12 x 12元件光电二极管阵列同时从大脑干中的127个相邻位点同时记录迷走神经刺激(使用抽气电极进行去极化和超极化脉冲)引起的电压相关的光吸收信号。 3.刺激引起的光信号似乎在中央区域和侧向区域纵向集中,既在脑干的受刺激侧,又未扩散到相反侧。此外,在使用脑干横切片的实验中,从受刺激侧背表面的小区域检测到诱发的光学反应。 4.短暂的去极化刺激引起的光学动作电位信号缓慢传导,并被河豚毒素完全阻断。在较长时间的去极化和超极化刺激下,记录了电声反应。 5.当施加2 microA / 2 ms超极化脉冲刺激时,检测到阳极破坏激发信号,并且这些信号也被河豚毒素所阻断。 6.根据从这些实验获得的数据,我们构建了电响应区域图,并证明了7天大的雏鸡雏鸡脑干中迷走神经背核的空间分布。

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