首页> 美国卫生研究院文献>The Journal of Physiology >The membrane properties and firing characteristics of rat jaw-elevator motoneurones.
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The membrane properties and firing characteristics of rat jaw-elevator motoneurones.

机译:大鼠下颌运动神经元的膜特性和放电特性。

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摘要

1. We have determined the membrane and firing properties of fifty-six jaw-elevator motoneurones in rats that were anaesthetized with pentobarbitone, paralysed and artificially ventilated. 2. Forty-two neurones were identified as masseter motoneurones and fourteen as masseter synergist motoneurones. The membrane potentials for the sample ranged from -60 to -86 (mean = -68; S.D. = 7.3; n = 56), and spike amplitudes from 50 to 95 mV. The duration of the after-hyperpolarization following antidromic spikes in masseter motoneurones ranged from 15 to 50 ms (mean = 30; S.D. = 12.8) and their amplitudes from 1.0 to 4.5 mV (mean = 2.7; S.D. = 2.2; n = 42). 3. The mean input resistance for the total sample was 2.3 M omega (S.D. = 0.9; n = 56), membrane time constant 3.9 ms (S.D. = 0.9; n = 48) and rheobase 4.2 nA (S.D. = 2.6; n = 56). The distribution of these parameters was independent of membrane potential. We found no significant interrelationships between the membrane properties and one interpretation of this is that our sample may be drawn from a homogenous population of motoneurones. We also suggest that elevator motoneurones may have a lower Rm (specific membrane resistivity) value than cat hindlimb motoneurones because they have a similar range of input resistance values but only half the total surface area. 4. Forty-six out of forty-nine neurones fired repetitively to a depolarizing current pulse at a mean threshold of 1.6 x rheobase. Current-frequency plots were constructed for thirteen neurones and all but one showed a primary and secondary range in the firing of the first interspike interval. The mean slope in the primary range was 31 impulses s-1 nA-1 and 77 impulses s-1 nA-1 for the secondary range. The mean minimal firing frequency for steady firing was 26 impulses s-1 and, in response to an increase of stimulation, the rate increased monotonically with a slope of 11 impulses s-1 nA-1. 5. The dynamic sensitivity of twelve neurones was assessed from their response to ramp waveforms of current of constant amplitude but varying frequencies (0.2-2 Hz). Firing initially increased along a steep slope up to a frequency of between 40 and 60 impulses s-1 and then increased along a much shallower slope. Both the threshold for eliciting firing and the firing at the transition point of the two slopes remained constant with changes in ramp frequency.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.我们已经确定了五十六个下颌提升运动神经元在戊巴比妥麻醉,麻痹和人工通气的大鼠中的膜和发射特性。 2.鉴定出42个神经元为咬肌运动神经元,十四个神经元为咬合协同神经元。样品的膜电位范围为-60至-86(平均值= -68; S.D. = 7.3; n = 56),尖峰幅度为50至95 mV。咬肌运动神经元反峰后超极化后的持续时间为15到50毫秒(平均值= 30;标准偏差= 12.8),幅度为1.0至4.5毫伏(平均值= 2.7;标准偏差= 2.2; n = 42)。 3.整个样品的平均输入电阻为2.3 MΩ(SD = 0.9; n = 56),膜时间常数3.9 ms(SD = 0.9; n = 48)和rheobase 4.2 nA(SD = 2.6; n = 56) )。这些参数的分布与膜电位无关。我们发现膜特性之间没有显着的相互关系,对此的一种解释是我们的样品可能来自同质的运动神经元群体。我们还建议,电梯运动神经元可能具有比猫后肢运动神经元更低的Rm(比膜电阻率)值,因为它们具有相似的输入电阻值范围,但仅占总表面积的一半。 4.在平均阈值为1.6 x rheobase的去极化电流脉冲中,四十九个神经元中有四十六个反复发射。构建了十三个神经元的电流-频率图,除一个神经元外,其他所有神经元均在第一个尖峰间隔触发时显示了主要和次要范围。初级范围的平均斜率为次级范围的31脉冲s-1 nA-1和77脉冲s-1 nA-1。稳定点火的平均最小点火频率为26脉冲s-1,并且响应于刺激的增加,速率以11脉冲s-1 nA-1的斜率单调增加。 5.根据十二个神经元对恒定幅度但频率变化(0.2-2 Hz)的电流斜坡波形的响应,评估其动态灵敏度。点火最初沿陡峭的坡度增加,直到频率在40到60脉冲s-1之间,然后沿更浅的坡度增加。触发阈值和两个斜率过渡点的触发都随斜坡频率的变化而保持不变(摘要截断为400个字)

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