Gustafsson B, Katz R, Malmsten J
Brain Res. 1982 Aug 19;246(1):23-33. doi: 10.1016/0006-8993(82)90138-x.
Membrane properties of cat spinal alpha-motoneurones were compared in cats following acute and chronic low (L5) spinal section and dorsal rhizotomy (L7--S1) and in cats with intact spinal cord in order to investigate effects of chronic partial deafferentation. The most significant change observed was a decrease in electrotonic length of the chronically deafferented neurones. Calculations showed that this decrease was related to a 15--20% reduction in length of an equivalent cylinder used to represent a motoneurone. Using a compartmental model, calculations showed that the peak voltage produced by a given synaptic input would be increased by 6--36% by chronic section. Such an increase is not sufficient to explain reported increases in EPSP peak amplitudes. Neither peak amplitude (and underlying conductance change) nor duration of the afterhyperpolarizaton were affected by the acute or chronic sections. No obvious changes in the delayed depolarization were observed. The properties of the repetitive discharge induced by intracellular current injection was not altered by chronic section.
为研究慢性部分去传入的影响,对急性和慢性低位(L5)脊髓横断及背根切断术(L7 - S1)后的猫以及脊髓完整的猫的脊髓α运动神经元的膜特性进行了比较。观察到的最显著变化是慢性去传入神经元的电紧张长度减小。计算表明,这种减小与用于表示运动神经元的等效圆柱体长度减少15 - 20%有关。使用房室模型计算表明,慢性切断会使给定突触输入产生的峰值电压增加6 - 36%。这种增加不足以解释所报道的兴奋性突触后电位(EPSP)峰值幅度的增加。急性或慢性切断均未影响峰值幅度(以及潜在的电导变化)或后超极化的持续时间。未观察到延迟去极化有明显变化。慢性切断未改变细胞内电流注入诱导的重复放电特性。