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Changes in the distribution of synaptic potentials from bulbospinal neurones following axotomy in cat thoracic spinal cord

机译:猫胸脊髓轴突切开后球根神经元突触电位分布的变化

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摘要

class="enumerated" style="list-style-type:decimal">Plasticity in functional connections of expiratory bulbospinal neurones was investigated by measurement of terminal potentials (TPs) and focal synaptic potentials (FSPs), recorded with spike-triggered averaging in the thoracic spinal cord of anaesthetized, paralysed cats. These measurements were made in normal cats and in those which had previously been subjected to spinal cord lesions that transected the axons of the bulbospinal neurones in the segment below that under investigation, either about 2 weeks or about 16 weeks previously.In both groups of operated animals bulbospinal neurones with firing properties and conduction velocities similar to normal were present. The extracellular recordings that were averaged to reveal TPs and FSPs were made on two standard grids, each consisting of eight sites spaced 0.25 mm apart on two electrode tracks. One grid was positioned at a rostral and one at a caudal location within one segment (T7–T9).In the normal animals TPs and FSPs were larger and/or more common at rostral sites than at caudal sites, by a factor of about 1.7. In both 2 week and 16 week animals, TPs and FSPs were observed, both showing normal time courses and latencies. At rostral sites in both the 2 week and 16 week animals the amplitudes and/or the frequency of occurrence of TPs and FSPs were similar to normal, as was the case for caudal sites in the 2 week animals. However, at caudal sites in the 16 week animals the FSPs were more common and/or significantly larger than normal, with the increase particularly marked on the lateral track, being equivalent to a factor of about 2. A corresponding increase in the amplitude and/or frequency of occurrence of TPs at caudal lateral sites was also seen, but was not significant.The results are interpreted as evidence for short-range sprouting of the bulbospinal axons and the formation by them of new connections in the caudal parts of the segments concerned.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 通过测量末端电位(TPs)和局灶性突触电位(FSPs)来研究呼气的脊髓神经元的功能连接中的可塑性,并在麻醉的麻痹的猫的胸脊髓中以峰值触发平均来记录。这些测量是在正常的猫和先前经历过脊髓损伤的动物中进行的,这些动物在大约2周或大约16周之前横穿了研究对象下方的球茎脊髓神经元的轴突。 < li>在两组手术动物中,均具有放电特性和传导速度与正常相似的球根神经元。平均显示TP和FSP的细胞外记录是在两个标准网格上进行的,每个网格由在两个电极轨道上相隔0.25 mm的八个位点组成。在一个节段内(T7–T9),一个网格位于尾部,而一个位于尾部。 在正常动物中,与尾部相比,在尾部部位的TP和FSP更大和/或更常见,系数约为1.7。在2周和16周的动物中,均观察到TP和FSP,均显示正常的时间进程和潜伏期。在2周和16周动物的鼻端部位,TP和FSP的振幅和/或发生频率与正常情况相似,在2周动物的尾部部位也是如此。但是,在16周龄动物的尾部部位,FSP比正常情况更常见和/或明显更大,其增加在侧向轨迹上尤为明显,相当于大约2倍。振幅和/或相应增加或在尾侧位点出现TPs的频率,但不显着。 结果被解释为球根轴突短程发芽以及它们在轴突中形成新连接的证据。有关段的尾部。

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