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猫脊髓中单一Ia类纤维与运动神经元接触的体内药理学研究。

An in vivo pharmacological study of single group Ia fibre contacts with motoneurones in the cat spinal cord.

作者信息

Walmsley B, Bolton P S

机构信息

Neuroscience Group, University of Newcastle, Callaghan, NSW, Australia.

出版信息

J Physiol. 1994 Dec 15;481 ( Pt 3)(Pt 3):731-41. doi: 10.1113/jphysiol.1994.sp020477.

Abstract
  1. Direct experimental evidence was obtained on the spatial distribution of active synaptic contacts from single Ia muscle afferents on the dendrites of lumbosacral motoneurones in anaesthetized cats. 2. An extracellular micropipette was used to pressure eject the AMPA/kainate receptor antagonists 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) or 2,3-dihydroxy-6-nitro-7-sulphamoyl-benzo(F)quinoxaline (NBQX) in close proximity to the intracellular recording site, in order to create an extracellular concentration gradient of the antagonist. The effect of antagonist ejection on the time course and amplitude of excitatory postsynaptic potentials (EPSPs) evoked in motoneurones by impulses in single group Ia fibres was examined. 3. Pressure ejection of NBQX resulted in a complete block of the monosynaptic group Ia EPSP in two cells, and a significant reduction to 23-57% of control EPSP peak amplitudes in a further six cells (mean, 27%; n = 8). These effects were not associated with changes in membrane potential or membrane time constant. 4. The reduction in amplitude of these single group Ia fibre EPSPs following ejection of NBQX was usually accompanied by a pronounced slowing in the time course of the EPSPs. On average, the EPSP rise times and half-widths were increased by 269 and 37%, respectively. This is most probably due to a considerable spatial spread of the synaptic contacts along the dendrites of motoneurones, with the most proximal synaptic contacts (producing the briefest synaptic potentials) subjected to a greater reduction in amplitude due to a higher local antagonist concentration. 5. An equivalent dendritic cable model of the motoneurone was used to interpret the observed changes in the time course of single fibre EPSPs. The time course of control single fibre EPSPs examined in the present study could be well matched using the cable model and assuming a single location for synaptic input. The observation of a slowed EPSP time course following antagonist ejection indicated that this assumption was not correct and that there was in fact considerable spatial spread in the synaptic contacts arising from these single afferent fibres. These results provide direct evidence that spatial spread of synaptic input may not be detected using the time course of a synaptic potential in conjunction with a neuronal cable model of the postsynaptic cell.
摘要
  1. 获得了关于麻醉猫腰荐部运动神经元树突上单个Ia类肌肉传入神经活性突触接触空间分布的直接实验证据。2. 使用细胞外微吸管在靠近细胞内记录位点处压力喷射AMPA/海人酸受体拮抗剂6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)或2,3-二羟基-6-硝基-7-氨磺酰基苯并(F)喹喔啉(NBQX),以建立拮抗剂的细胞外浓度梯度。研究了拮抗剂喷射对单组Ia纤维冲动在运动神经元中诱发的兴奋性突触后电位(EPSP)的时间进程和幅度的影响。3. 压力喷射NBQX导致两个细胞中的单突触组Ia EPSP完全阻断,另外六个细胞中EPSP峰值幅度显著降低至对照的23 - 57%(平均为27%;n = 8)。这些效应与膜电位或膜时间常数的变化无关。4. 喷射NBQX后这些单个组Ia纤维EPSP幅度的降低通常伴随着EPSP时间进程的明显减慢。平均而言,EPSP上升时间和半宽度分别增加了269%和37%。这很可能是由于突触接触沿运动神经元树突有相当大的空间扩散,最靠近近端的突触接触(产生最短的突触电位)由于局部拮抗剂浓度较高而幅度降低更大。5. 使用运动神经元的等效树突电缆模型来解释单纤维EPSP时间进程中观察到的变化。本研究中检查的对照单纤维EPSP的时间进程可以通过电缆模型并假设突触输入的单一位置很好地匹配。拮抗剂喷射后EPSP时间进程减慢的观察表明该假设不正确,实际上这些单个传入纤维产生的突触接触存在相当大的空间扩散。这些结果提供了直接证据,即结合突触后细胞的神经元电缆模型使用突触电位的时间进程可能检测不到突触输入的空间扩散。

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