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红核脊髓束向猫小腿三头肌运动神经元的突触输入分布。

Distribution of rubrospinal synaptic input to cat triceps surae motoneurons.

作者信息

Powers R K, Robinson F R, Konodi M A, Binder M D

机构信息

Department of Physiology and Biophysics, University of Washington School of Medicine, Seattle 98195.

出版信息

J Neurophysiol. 1993 Oct;70(4):1460-8. doi: 10.1152/jn.1993.70.4.1460.

Abstract
  1. We evoked steady-state synaptic potentials in triceps surae motoneurons of the cat by stimulating the hindlimb projection area of the contralateral magnocellular red nucleus at 200 Hz. We measured the effective synaptic currents (IN) underlying the synaptic potentials using a modified voltage-clamp technique. We also determined the effect of the rubrospinal input on the discharge rate of some of the motoneurons by inducing repetitive discharge with long injected current pulses during which the red nucleus stimulation was repeated. 2. At motoneuron resting potential, the distribution of IN from the red nucleus within the triceps surae pools was qualitatively similar to the distribution of synaptic potentials: 86% of the putative type F motoneurons received a net depolarizing IN from the red nucleus stimulation, whereas only 38% of the putative type S units did so. The mean values of IN were significantly different in the two groups [+4.1 +/- 5.0 nA (SD) for putative type F and -1.6 +/- 3.1 nA for putative type S]. 3. However, when the values of IN at threshold for repetitive firing were estimated, the distribution of IN from the red nucleus was quite different. At threshold, all of the putative type S units received hyperpolarizing IN but so did nearly half of the putative type F units. 4. As would be expected from the wide range of IN at threshold (-20 to +12 nA), the red nucleus input produced dramatically different effects on the discharge of different motoneurons.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 我们通过以200赫兹刺激对侧大细胞红核的后肢投射区,在猫的腓肠三头肌运动神经元中诱发稳态突触电位。我们使用改良的电压钳技术测量突触电位背后的有效突触电流(IN)。我们还通过在长注入电流脉冲期间重复红核刺激来诱导重复放电,从而确定红核脊髓输入对一些运动神经元放电率的影响。2. 在运动神经元静息电位时,腓肠三头肌池中来自红核的IN分布在质量上与突触电位分布相似:86%的假定F型运动神经元从红核刺激中获得净去极化IN,而只有38%的假定S型单位如此。两组的IN平均值有显著差异[假定F型为+4.1±5.0纳安(标准差),假定S型为-1.6±3.1纳安]。3. 然而,当估计重复放电阈值时的IN值时,来自红核的IN分布有很大不同。在阈值时,所有假定的S型单位都接受超极化IN,但近一半的假定F型单位也是如此。4. 正如从阈值时广泛的IN范围(-20至+12纳安)所预期的那样,红核输入对不同运动神经元的放电产生了截然不同的影响。(摘要截断于250字)

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