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小口径传入神经重复刺激诱发的累积去极化的上升速率是体外培养的大鼠脊髓神经元动作电位总和的一个预测指标。

Rate of rise of the cumulative depolarization evoked by repetitive stimulation of small-caliber afferents is a predictor of action potential windup in rat spinal neurons in vitro.

作者信息

Sivilotti L G, Thompson S W, Woolf C J

机构信息

Department of Anatomy and Developmental Biology, University College London, United Kingdom.

出版信息

J Neurophysiol. 1993 May;69(5):1621-31. doi: 10.1152/jn.1993.69.5.1621.

Abstract
  1. The summation of depolarizing postsynaptic potentials (PSPs) evoked by stimulation of primary afferent fibers in lumbar dorsal roots was studied in dorsal and ventral horn neurons in the rat hemisected spinal cord in vitro with current-clamp intracellular recording techniques. PSPs evoked by activation of A delta and/or C fibers could summate after repetitive stimulation at low frequencies: this resulted in a progressive, long-lasting change in the neuronal membrane potential (Vm) (cumulative depolarization). Cumulative depolarization was not observed after stimulation at A beta-fiber intensity or at frequencies < 0.2 Hz. 2. Effective PSP summation resulting in a significant cumulative depolarization (> 5 mV) was observed only if the PSPs evoked were longer than 4 s. On the other hand, there was no correlation between the amplitude of cumulative depolarization achieved in a neuron and the absolute duration of the PSP or the neuronal resting membrane properties (Vm and input resistance). 3. With relation to the changes in Vm during the stimulation train, three patterns of response to repetitive stimuli could be detected in both dorsal horn (DH) and ventral horn (VH) neurons: 1) little or no depolarization throughout the train; 2) an initial depolarization, which either remained stationary or decayed to the resting Vm after the first 3-4 s of stimulation; or 3) a progressive cumulative depolarization increasing throughout the train. 4. Depolarizing the cell by DC current injection resulted in a steeper rise in Vm in response to repetitive stimuli in one half of VH neurons and in one out of nine DH neurons tested. 5. Action potential windup, an increase in the number of action potentials elicited by each stimulus as the train progresses, was observed both in DH and in VH cells. C-fiber strength stimulation was the most effective in eliciting windup. Windup was associated with Vm responses to repetitive stimulation belonging to the progressive cumulative depolarization pattern. Indeed, cumulative depolarizations that resulted in windup had significantly steeper slopes for the Vm trajectory than those that did not. In those neurons in which DC depolarization by intracellular current injection increased the slope of the Vm trajectory, DC depolarization could also bring about action potential windup. 6. These results indicate that, although the generation of long-lasting "slow" PSPs by high-threshold primary afferents is necessary for the summation of synaptic activity in the spinal cord at low frequencies, the rate and pattern of the summation does not depend on the absolute duration of the PSPs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用电流钳细胞内记录技术,在体外对大鼠半横断脊髓的背角和腹角神经元进行研究,观察初级传入纤维刺激腰段背根诱发的去极化突触后电位(PSP)的总和情况。激活Aδ和/或C纤维诱发的PSP在低频重复刺激后可发生总和:这导致神经元膜电位(Vm)出现渐进性、持续性变化(累积去极化)。在Aβ纤维强度刺激或频率<0.2 Hz刺激后未观察到累积去极化。2. 仅当诱发的PSP持续时间超过4 s时,才会观察到有效的PSP总和并导致显著的累积去极化(>5 mV)。另一方面,神经元中达到的累积去极化幅度与PSP的绝对持续时间或神经元静息膜特性(Vm和输入电阻)之间没有相关性。3. 关于刺激串期间Vm的变化,在背角(DH)和腹角(VH)神经元中均可检测到三种对重复刺激的反应模式:1)在整个刺激串期间几乎没有或没有去极化;2)初始去极化,在刺激的前3 - 4 s后要么保持稳定,要么衰减至静息Vm;或3)在整个刺激串期间逐渐增加的渐进性累积去极化。4. 通过直流电流注入使细胞去极化,在一半的VH神经元和测试的九个DH神经元中的一个中,对重复刺激的Vm上升更陡峭。5. 在DH和VH细胞中均观察到动作电位增强现象,即随着刺激串的进行,每个刺激诱发的动作电位数量增加。C纤维强度刺激在诱发动作电位增强方面最有效。动作电位增强与属于渐进性累积去极化模式的Vm对重复刺激的反应相关。实际上,导致动作电位增强的累积去极化的Vm轨迹斜率比未导致动作电位增强的要陡得多。在那些通过细胞内电流注入进行直流去极化增加了Vm轨迹斜率的神经元中,直流去极化也可引起动作电位增强。6. 这些结果表明,尽管高阈值初级传入纤维产生持久的“慢”PSP对于脊髓低频突触活动的总和是必要的,但总和的速率和模式并不取决于PSP的绝对持续时间。(摘要截选至400字)

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