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Basal versus apical dendritic long-term potentiation of commissural afferents to hippocampal CA1: a current-source density study

机译:海马CA1连合传入性的基础与根尖状树突状长期增强:电流源密度研究

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摘要

Current-source density analysis was used to estimate the magnitude of the synaptic excitation at the basal and apical dendritic synapses of CA1 following commissural stimulation in the urethane-anesthetized rat, before and after a theta-frequency patterned primed burst tetanus. Stimulation of the contralateral CA3 or the contralateral CA1 stratum oriens excited both the basal and apical dendrites in CA1 about equally. However, primed burst tetanization of the contralateral CA3 or CA1 stratum oriens resulted in significant long-term potentiation (LTP) only at the basal dendrites and not at the apical dendrites. Stimulation of the contralateral CA1 stratum radiatum excited the apical dendrites more than the basal dendrites of CA1, but tetanization of this contralateral site gave little change in the apical or basal dendritic excitation. Tetanization of the contralateral CA1 stratum radiatum after an intraventricular administration of bicuculline, a GABAA antagonist, however, resulted in significant LTP at both the apical and basal dendrites. It was concluded that, in the intact hippocampus in vivo, the threshold for LTP at the commissural apical dendritic synapse was high in comparison to that at the basal dendritic synapse and this high threshold may be partly caused by inhibitory interneurons that predominantly synapsed on the apical dendrites. Thus, the basal and apical dendrites of the CA1 pyramidal cells are not equal in their propensity for long-term plasticity.
机译:电流源密度分析被用来估计尿烷麻醉大鼠的连合刺激后,在以θ-频率图案化的引爆破伤风之前和之后,CA1的基底和根尖突突突触的突触兴奋强度。对侧CA3或对侧CA1纹层的刺激大致相同地激发了CA1的基础和顶端树突。但是,对侧CA3或CA1层原发的初次爆破tetanization导致仅在基部树突处而不是在顶端树突处产生显着的长期增强作用(LTP)。对侧CA1放射状层的刺激比CA1的基础树突更刺激根尖树突,但是此对侧部位的成钛作用对根尖或基底树突激增作用不大。在脑室内给予GABAA拮抗剂双小分子后,对侧CA1层的放射状成膜,导致在根尖和基底树突处都有明显的LTP。结论是,在体内完整的海马体中,连合心尖状树突突触的LTP阈值比基底突状突触的LTP阈值高,并且该高阈值可能部分由抑制性神经元引起,该抑制性神经元主要在心尖突触树突。因此,CA1锥体细胞的基底和顶端树突在长期可塑性上的倾向并不相等。

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