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体外研究新生大鼠运动神经元的电生理特性。

Electrophysiological properties of neonatal rat motoneurones studied in vitro.

作者信息

Fulton B P, Walton K

出版信息

J Physiol. 1986 Jan;370:651-78. doi: 10.1113/jphysiol.1986.sp015956.

Abstract

The electroresponsive properties of neonatal lumbar spinal motoneurones were studied using isolated, hemisected spinal cords from neonatal rats aged 3-12 days. The extracellular and intracellular responses to electrical stimulation of the ventral and dorsal root were studied as well as the intracellular response to current injection. Field potentials recorded in the lateral motor area following electrical stimulation of lumbar ventral roots had a triphasic positive-negative-positive wave form. The negative component did not return to the base line smoothly but exhibited a 'shoulder' where the negativity increased in duration. Following electrical stimulation of the dorsal root, presynaptic field potentials were recorded upon activation of the afferent axons as well as following synaptic activation of interneurones and motoneurones. The input resistances of neonatal motoneurones determined from the slope of current-voltage plots were high compared with the adult. The resistance decreased with age with a mean of 18.1 M omega for animals 3-5 days old, 8.8 M omega for animals 6-8 days old and 5.4 M omega for animals 9-11 days old. Values for the membrane time constant were similar to those in the adult with a mean of 4.5 ms. Action potentials elicited by ventral or dorsal root stimulation or by intracellular current injection were marked by a pronounced after-depolarization (a.d.p.) and an after-hyperpolarization (a.h.p.). The amplitude of the a.h.p. varied with that of the a.d.p. The amplitude of excitatory post-synaptic potentials (e.p.s.p.s) elicited by electrical stimulation of the dorsal root was affected by intracellular current injection. Two types of e.p.s.p.s were distinguished: those with a biphasic reversal (early phase first) and those in which the early phase was unaffected by inward current injection while the later phase was reversed. Unlike in the adult, the reversals could be achieved with low current levels and the amplitude of both types of e.p.s.p. was increased by inward current injection. Inhibitory post-synaptic potentials (i.p.s.p.s) were elicited by dorsal or ventral root stimulation. The amplitude of these i.p.s.p.s was diminished and reversed in sign with inward current injection and their amplitude was enhanced with outward current injection. Activation of neonatal motoneurones with long current pulses revealed that there is one steady-state firing range.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用3至12日龄新生大鼠分离的半切脊髓,研究了新生大鼠腰段脊髓运动神经元的电反应特性。研究了对腹根和背根电刺激的细胞外和细胞内反应以及对电流注入的细胞内反应。腰段腹根电刺激后在外侧运动区记录的场电位呈三相正负正波形。负相成分没有平滑地回到基线,而是出现一个“肩部”,负性持续时间增加。背根电刺激后,在传入轴突激活时以及中间神经元和运动神经元突触激活后记录到突触前场电位。根据电流-电压图斜率确定的新生运动神经元的输入电阻比成年动物高。电阻随年龄降低,3至5日龄动物的平均电阻为18.1 MΩ,6至8日龄动物为8.8 MΩ,9至11日龄动物为5.4 MΩ。膜时间常数的值与成年动物相似,平均为4.5 ms。腹根或背根刺激或细胞内电流注入引发的动作电位的特征是明显的去极化后电位(a.d.p.)和超极化后电位(a.h.p.)。a.h.p.的幅度随a.d.p.的幅度而变化。背根电刺激引发的兴奋性突触后电位(e.p.s.p.s)的幅度受细胞内电流注入的影响。区分出两种类型的e.p.s.p.s:具有双相反转的(早期先出现)和早期不受内向电流注入影响而后期反转的。与成年动物不同,低电流水平即可实现反转,且两种类型的e.p.s.p.的幅度都因内向电流注入而增加。背根或腹根刺激可引发抑制性突触后电位(i.p.s.p.s)。这些i.p.s.p.s的幅度因内向电流注入而减小并发生符号反转,因外向电流注入而增强。用长电流脉冲激活新生运动神经元表明存在一个稳态放电范围。(摘要截断于400字)

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