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首页> 外文期刊>Brain research >Comparative, in vitro, studies of hippocampal tissue from homing and non-homing pigeon.
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Comparative, in vitro, studies of hippocampal tissue from homing and non-homing pigeon.

机译:归巢和非归巢鸽子海马组织的体外比较研究。

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The purpose of this research was to characterize morphologically and electrophysiologically tissue slices obtained from the hippocampus of homing and non-homing pigeons. When hippocampal slices from the brain of homing and non-homing pigeons are observed under the dissecting microscope, diffuse fiber paths can be seen. These fiber pathways appeared to be identical with the medial fiber tract (VM) previously described histologically in the hippocampus of homing pigeon. Visualization of these tracts in living slices allowed placement of stimulating and recording electrodes in corresponding locations in these slices in both homing and non-homing pigeons. Extracellular potentials recorded from VM regions of the brains of both homing and non-homing pigeons were sensitive to CNQX indicating that glutamate may be a neurotransmitter in this area of pigeon hippocampus. These potentials could undergo long-term potentiation (LTP) following high frequency stimulation. This LTP was blocked by NMDA receptor antagonist APV in the hippocampus of homing pigeon, but was APV-resistant in the hippocampus of non-homing pigeon. Extracellular potentials from the hippocampus of homing pigeons were increased in amplitude when slices were perfused with Mg(2+)-free Ringer, while potential recorded from hippocampal slices from non-homing pigeons wre unaffected by Mg(2+)-free solutions. Intracellular recordings from the hippocampal slices of homing pigeons revealed that about half the cells demonstrated excitatory synaptic potentials evoked by extracellular stimulation. The EPSP was sometimes large enough to trigger an action potential. Neurons filled with the fluorescent dye, Lucifer Yellow, in the hippocampus of homing pigeons showed multipolar structure. The response of these cells to extracellular stimulation provides the activity responsible for the extracellular potentials which can undergo LTP.
机译:这项研究的目的是表征从归巢和非归巢鸽子海马获得的形态学和电生理学组织切片。在解剖显微镜下观察归巢和非归巢鸽子大脑的海马切片时,可以看到弥漫的纤维路径。这些纤维途径似乎与先前在归巢鸽海马中组织学描述的内侧纤维束(VM)相同。活切片中这些管道的可视化允许在归巢和非归巢鸽子的这些切片中的相应位置放置刺激和记录电极。从归巢和非归巢鸽子的大脑VM区记录的细胞外电位对CNQX敏感,表明谷氨酸可能是鸽子海马区域的神经递质。在高频刺激之后,这些电位可能会经历长期增强(LTP)。该LTP在归巢鸽海马中被NMDA受体拮抗剂APV阻断,但在非归巢鸽海马中对APV具有抗性。当切片用不含Mg(2+)的林格灌注切片时,归巢鸽子海马的细胞外电位在幅度上会增加,而从非归巢鸽子的海马切片中记录的电位不受不含Mg(2+)的溶液的影响。归巢鸽子海马切片的细胞内记录显示,大约一半的细胞表现出细胞外刺激引起的兴奋性突触电位。 EPSP有时足够大以触发动作电位。归巢鸽子海马中充满荧光染料路西法黄的神经元显示出多极结构。这些细胞对细胞外刺激的反应提供了负责可能经历LTP的细胞外电位的活性。

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