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具有球状末端的树突棘的电学特性。

Electrical properties of dendritic spines with bulbous end terminals.

作者信息

Kawato M, Tsukahara N

出版信息

Biophys J. 1984 Aug;46(2):155-66. doi: 10.1016/S0006-3495(84)84008-4.

Abstract

Several suggestions have been made about the functional significance of dendritic spines in connection with synaptic plasticity. We investigated transient electrical behavior of spines with bulbous terminals in neurons with arbitrary dendritic geometries. It is shown that postsynaptic potential transform caused by a synapse on a spine can be resolved into a product of two transfer functions and the synaptic input current transform. The first transfer function was determined to be independent of the spine. The second transfer function represents the straightforward attenuation effect of the spine, which determines the effective synaptic current reaching the parent dendrite. Using what is known of the size and the shape of spines from histology, we conclude that almost all of the synaptic current flow into the parent dendrite, and that therefore the straightforward attenuation effect is negligible. Consequently, when the synaptic current remained unaltered, as was the case for a large synaptic resistance as compared with the spine stem resistance, a morphological change of the spine did not produce an effective change in the postsynaptic potential. On the other hand, when the synaptic resistance is compared with the spine stem impedance, the morphological change of the spine might induce changes of the synaptic current and the postsynaptic potential.

摘要

关于树突棘在突触可塑性方面的功能意义,已经提出了几种建议。我们研究了具有任意树突几何形状的神经元中带有球状末端的棘突的瞬态电行为。结果表明,由棘突上的突触引起的突触后电位变换可以分解为两个传递函数与突触输入电流变换的乘积。确定第一个传递函数与棘突无关。第二个传递函数代表棘突的直接衰减效应,它决定了到达母树突的有效突触电流。利用组织学中已知的棘突大小和形状,我们得出结论,几乎所有的突触电流都流入母树突,因此直接衰减效应可以忽略不计。因此,当突触电流保持不变时,与棘突干电阻相比突触电阻很大时就是这种情况,棘突的形态变化不会在突触后电位上产生有效变化。另一方面,当将突触电阻与棘突干阻抗进行比较时,棘突的形态变化可能会引起突触电流和突触后电位的变化。

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本文引用的文献

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Cortical neurons with particular reference to the apical dendrites.特别是关于顶端树突的皮质神经元。
Cold Spring Harb Symp Quant Biol. 1952;17:189-202. doi: 10.1101/sqb.1952.017.01.019.
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Theoretical study on electrical properties of dendritic spines.树突棘电特性的理论研究
J Theor Biol. 1983 Aug 21;103(4):507-22. doi: 10.1016/0022-5193(83)90280-1.

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