首页> 外文期刊>The Journal of Physiology >Local facilitation of plateau potentials in dendrites of turtle motoneurones by synaptic activation of metabotropic receptors.
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Local facilitation of plateau potentials in dendrites of turtle motoneurones by synaptic activation of metabotropic receptors.

机译:通过代谢型受体的突触激活,局部促进了甲鱼运动神经元树突中的高原电位。

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1. The spatial distribution of synaptic facilitation of plateau potentials in dendrites of motoneurones was investigated in transverse sections of the spinal cord of the turtle using differential polarization by applied electric fields. 2. The excitability of motoneurones in response to depolarizing current pulses was increased following brief activation of either the dorsolateral funiculus (DLF) or the medial funiculus (MF) even when synaptic potentials were eliminated by antagonists of ionotropic receptors. 3. The medial and lateral compartments of motoneurones were differentially polarized by the electric field generated by passing current between two electrodes on either side of the preparation. In one direction of the field lateral dendrites were depolarized while the cell body and medial dendrites were hyperpolarized (S- configuration). With current in the opposite direction the cell body and medial dendrites were depolarized while lateral dendrites were hyperpolarized (S + configuration). 4. Following brief activation of the DLF the excitability and the generation of plateau potentials were facilitated during differential depolarization of the lateral dendrites but not during differential depolarization of the cell body and medial dendrites. Following brief activation of the MF the excitability and generation of plateau potentials were facilitated during differential depolarization of the cell body and medial dendrites but not during differential depolarization of the lateral dendrites. 5. It is concluded that the synaptic facilitation of the dihydropyridine-sensitive response to depolarization is compartmentalized in turtle motoneurones.
机译:1.通过施加电场的差分极化,研究了海龟脊髓横断面中运动神经元树突中平台电位的突触促进作用的空间分布。 2.在短暂激活背外侧功能区(DLF)或内侧功能区(MF)之后,即使通过离子型受体拮抗剂消除了突触电位,运动神经元对去极化电流脉冲的兴奋性也有所提高。 3.通过在制剂两侧的两个电极之间通过电流产生的电场,使运动神经元的内侧和外侧腔室极化不同。在电场的一个方向上,外侧树突被去极化,而细胞体和内侧树突则被超极化(S-构型)。在相反方向的电流作用下,细胞体和内侧树突被去极化,而外侧树突被超极化(S +构型)。 4.在短暂激活DLF之后,在侧枝的差异去极化过程中促进了兴奋性和平台电位的产生,而在细胞体和内侧树突的差异去极化过程中却没有。在短暂激活MF之后,在细胞体和内侧树突的差异去极化过程中促进了兴奋性和平台电位的产生,而在外侧树突的差异去极化过程中却没有。 5.结论是,在乌龟运动神经元中,对二氢吡啶对去极化的敏感反应的突触促进作用是分隔的。

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