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来自Ia类传入神经和脊髓下行纤维的猫腰骶运动神经元中的单突触兴奋性突触后电位。

Monosynaptic EPSPs in cat lumbosacral motoneurones from group Ia afferents and fibres descending in the spinal cord.

作者信息

Harrison P J, Jack J J, Kullmann D M

机构信息

University Laboratory of Physiology, Oxford.

出版信息

J Physiol. 1989 May;412:43-63. doi: 10.1113/jphysiol.1989.sp017603.

Abstract
  1. Excitatory postsynaptic potentials (EPSPs) were elicited in lumbosacral motoneurones of pentobarbitone-anaesthetized cats by stimulating the ventral quadrants (VQ) of the thoracic spinal cord. These EPSPs were compared with monosynaptic EPSPs from small numbers of group Ia afferents, obtained by stimulating hindlimb muscle nerves with most of the dorsal roots severed. 2. EPSPs with average peak amplitude less than 1 mV were selected for fluctuation analysis. Three out of fourteen (21%) VQ EPSPs with peak voltage less than 150 mu V fluctuated in amplitude from trial to trial no more than could be accounted for by the background intracellular noise. Similarly, nine out of thirty-nine (23%) Ia EPSPs smaller than 150 mu V fluctuated to a comparable extent as the noise. These results are consistent with the view that there is little variation in the postsynaptic signal produced by an individual transmitter release event. 3. Of the EPSPs which did fluctuate more than the background noise, maximum likelihood estimates were obtained for the fluctuation patterns of ten VQ and fourteen Ia EPSPs. This was achieved by assuming that synaptic signals sum linearly with noise, but without constraining the results to conform to a statistical description of transmitter release. The fluctuation of both VQ and Ia EPSPs was made up of discrete amplitudes separated by roughly equal increments, in accordance with the quantal hypothesis of synaptic transmission. 4. Fluctuation patterns were obtained simultaneously for VQ and Ia EPSPs in seven motoneurones. The amplitudes of the quanta, defined as the mean increments between discrete amplitudes, were correlated (r = 0.90), suggesting common postsynaptic mechanisms. 5. For most EPSPs the time course of the voltage transient could be used to estimate the electrical distance from the soma at which the synaptic current was injected. There was a comparable distribution for VQ and Ia EPSPs. For those in which a quantal analysis was performed (nine VQ and eleven Ia), quantal size measured at the soma appeared to be independent of the deduced site of origin. 6. The results indicate no qualitative or quantitative differences in the behaviour of VQ and Ia EPSPs.
摘要
  1. 通过刺激胸段脊髓腹侧象限(VQ),在戊巴比妥麻醉猫的腰骶运动神经元中诱发兴奋性突触后电位(EPSP)。将这些EPSP与少数Ia类传入纤维的单突触EPSP进行比较,后者是通过切断大部分背根后刺激后肢肌肉神经获得的。2. 选择平均峰值幅度小于1 mV的EPSP进行波动分析。14个峰值电压小于150 μV的VQ EPSP中有3个(21%),其幅度在各次试验间的波动不超过细胞内背景噪声所能解释的范围。同样,39个小于150 μV的Ia EPSP中有9个(23%),其波动程度与噪声相当。这些结果与以下观点一致:单个递质释放事件产生的突触后信号几乎没有变化。3. 在那些波动超过背景噪声的EPSP中,对10个VQ EPSP和14个Ia EPSP的波动模式进行了最大似然估计。这是通过假设突触信号与噪声线性叠加来实现的,但不限制结果符合递质释放的统计描述。根据突触传递的量子假说,VQ和Ia EPSP的波动均由以大致相等增量分隔的离散幅度组成。4. 在7个运动神经元中同时获得了VQ和Ia EPSP的波动模式。量子幅度定义为离散幅度之间的平均增量,二者具有相关性(r = 0.90),表明存在共同的突触后机制。5. 对于大多数EPSP,电压瞬变的时间进程可用于估计注入突触电流处距胞体的电距离。VQ和Ia EPSP的分布相似。对于进行了量子分析的那些EPSP(9个VQ和11个Ia),在胞体处测量的量子大小似乎与推断的起源部位无关。6. 结果表明VQ和Ia EPSP的行为在质和量上均无差异。

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