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通过微电极记录确定的猫脊髓γ运动神经元的一些特性。

Some properties of spinal gamma-motoneurones in the cat, determined by micro-electrode recording.

作者信息

Kemm R E, Westbury D R

出版信息

J Physiol. 1978 Sep;282:59-71. doi: 10.1113/jphysiol.1978.sp012448.

Abstract
  1. Micro-electorde recordings were made from motoneurones in the lumbo-sacral region of the cat spinal cord whose axonal conduction velocities were 10--55 m/sec. Most of these may be presumed to be fusimotor in function. 2. Intracellular records from twelve gamma-motoneurones revealed six with short (2--4 msec) and six with long (30--100 msec) duration after-hyperpolarizations following an antidromically conducted action potential. 3. Using extracellular recording, the excitability of eighty-nine other gamma-motoneurones following an antidromic impulse was tested with a second antidromic action potential. In eighty-four of these neurones, the minimum antidromic response interval was short, 1.5--3.5 msec, implying that in most gamma-motoneurones, after-hyperpolarization was of limited effectiveness and of short duration. In the remaining five neurones, the minimum response interval was longer, 20--80 msec. 4. There was a lack of monosynaptic excitation from group 1 afferent axons in the dorsal roots in eleven of the twelve motoneurones from which intracellular records were obtained. Polysynaptic excitation was commonly observed. 5. In these anaesthetized preparations, there was a lack of recurrent i.p.s.p.s even though such evidence of Renshaw inhibition could be found in the neighbouring alpha-motoneurones. 6. The mean input resistance of gamma-motoneurones was shown to be 1.55 Momega and the principal time constant 8.5 msec by passing hyperpolarizing current through the recording micro-electrode in a bridge circuit. These values are open to error because of the small numbers of neurones investigated, and of the use of the single micro-electrode method. 7. Depolarizing current passed through the recording micro-electrode caused a maintained discharge of action potentials at a high rate. After-hyperpolarization had little effect on discharge rate. The threshold for injected current to cause discharge was very low, and the discharge rate increased rapidly with the magnitude of the current. 8. These properties of gamma-motoneurones arediscussed in relation to their function.
摘要
  1. 对猫脊髓腰骶部运动神经元进行微电极记录,这些神经元的轴突传导速度为10 - 55米/秒。其中大多数可能具有牵张运动功能。2. 对12个γ运动神经元进行细胞内记录,结果显示,在逆行传导动作电位后,6个神经元具有短(2 - 4毫秒)的超极化后电位,6个神经元具有长(30 - 100毫秒)的超极化后电位。3. 采用细胞外记录,用第二个逆行动作电位测试另外89个γ运动神经元在逆行冲动后的兴奋性。在这些神经元中的84个中,最小逆行反应间隔较短,为1.5 - 3.5毫秒,这意味着在大多数γ运动神经元中,超极化后电位的有效性有限且持续时间较短。在其余5个神经元中,最小反应间隔较长,为20 - 80毫秒。4. 在12个获得细胞内记录的运动神经元中,有11个缺乏来自背根中Ⅰ类传入轴突的单突触兴奋。多突触兴奋则较为常见。5. 在这些麻醉的标本中,即使在相邻的α运动神经元中能发现伦肖抑制的证据,但仍缺乏回返性抑制性突触后电位。6. 通过在桥式电路中通过记录微电极施加超极化电流,γ运动神经元的平均输入电阻显示为1.55兆欧,主要时间常数为8.5毫秒。由于所研究的神经元数量较少以及采用单微电极方法,这些值可能存在误差。7. 通过记录微电极施加去极化电流会导致动作电位以高频率持续发放。超极化后电位对发放频率影响很小。引起发放的注入电流阈值非常低,发放频率随电流大小迅速增加。8. 结合γ运动神经元的功能对这些特性进行了讨论。

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Motor unit types of cat triceps surae muscle.猫小腿三头肌的运动单位类型。
J Physiol. 1967 Nov;193(1):141-60. doi: 10.1113/jphysiol.1967.sp008348.
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The reflex activity of mammalian small-nerve fibres.哺乳动物小神经纤维的反射活动。
J Physiol. 1951 Dec 28;115(4):456-69. doi: 10.1113/jphysiol.1951.sp004681.
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Electrophysiological studies on gamma motoneurones.γ运动神经元的电生理研究。
Acta Physiol Scand. 1960 Sep 30;50:32-40. doi: 10.1111/j.1748-1716.1960.tb02070.x.
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Spinal reflex regulation of fusimotor neurones.脊髓对肌梭运动神经元的反射调节。
J Physiol. 1958 Sep 23;143(2):195-212. doi: 10.1113/jphysiol.1958.sp006053.
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Regulation of repetitive firing in motoneurones by the afterhyperpolarization conductance.
Brain Res. 1971 Jul 23;30(2):431-4. doi: 10.1016/0006-8993(71)90096-5.

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