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慢性脊髓损伤对踝伸肌运动神经元的影响。I. 四个运动神经元池中的复合单突触Ia兴奋性突触后电位

Effects of chronic spinalization on ankle extensor motoneurons. I. Composite monosynaptic Ia EPSPs in four motoneuron pools.

作者信息

Hochman S, McCrea D A

机构信息

Department of Physiology, Faculty of Medicine, University of Manitoba, Winnipeg, Canada.

出版信息

J Neurophysiol. 1994 Apr;71(4):1452-67. doi: 10.1152/jn.1994.71.4.1452.

DOI:10.1152/jn.1994.71.4.1452
PMID:8035227
Abstract
  1. We examined the effects of 6-wk chronic spinalization at the L1-L2 level on composite monosynaptic Ia excitatory postsynaptic potentials (EPSPs) recorded in medial gastrocnemius (MG), lateral gastrocnemius (LG), soleus (SOL), and plantaris (PL) motoneurons. Amplitudes, rise times, and half-widths of composite monosynaptic Ia EPSPs evoked by low-strength electrical stimulation of peripheral nerves were measured in barbiturate-anesthetized cats and compared between unlesioned and chronic spinal preparations. 2. The mean amplitude of homonymous composite Ia EPSPs evoked by 1.2 times threshold (1.2T) stimulation and recorded in all four ankle extensor motoneuron pools increased 26% in chronic spinal animals compared with unlesioned controls. There was also an increased incidence of large-amplitude, short-rise time EPSPs. When the same data were separated according to individual motoneuron species, homonymous EPSP amplitudes in MG motoneurons were found to be unchanged. EPSPs recorded in LG motoneurons and evoked by stimulation of the combined LG and SOL nerve were increased by 46%. Mean EPSP amplitudes recorded in both SOL and PL motoneurons were larger after spinalization but statistical significance was only achieved when values from SOL and PL were combined to produce a larger sample size. 3. In LG motoneurons from chronic spinal animals, all EPSPs evoked by 1.2T stimulation of the LGS nerve were > or = 0.5 mV in amplitude. In unlesioned preparations, one fourth of the LG cells had EPSPs that were < or = 0.2 mV. 4. The mean amplitude of heteronymous EPSPs evoked by 2T stimulation of LGS and MG nerves and recorded in MG and LG motoneurons, respectively, doubled in size after chronic spinalization. Because homonymous EPSP amplitudes were unchanged in MG motoneurons, synaptic mechanisms and not passive membrane properties are likely responsible for increased heteronymous EPSP amplitudes in MG. 5. The mean 10-90% rise time of homonymous composite Ia EPSPs in pooled data from all motoneurons decreased 21% in 6-wk chronic spinal animals. Unlike EPSP amplitude, significant rise time decreases were found in all four motoneuron pools. Compared with the other motoneuron species, the mean homonymous rise time recorded in MG motoneurons was shortest and decreased the least in chronic spinal animals. Rise times of heteronymous Ia EPSPs in MG and LG motoneurons also decreased. The maximum rate of rise of homonymous EPSPs increased in all four motoneuron species. 6. The mean half-widths of Ia composite EPSPs decreased in 6-wk spinalized preparations in all motoneuron species.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了在L1-L2水平进行6周慢性脊髓横断对在腓肠肌内侧头(MG)、腓肠肌外侧头(LG)、比目鱼肌(SOL)和跖肌(PL)运动神经元中记录的复合单突触Ia兴奋性突触后电位(EPSP)的影响。在巴比妥类麻醉的猫中,测量了由外周神经低强度电刺激诱发的复合单突触Ia EPSP的振幅、上升时间和半宽度,并在未损伤和慢性脊髓制备的动物之间进行了比较。2. 与未损伤的对照组相比,在慢性脊髓动物中,由1.2倍阈值(1.2T)刺激诱发并记录在所有四个踝关节伸肌运动神经元池中的同名复合Ia EPSP的平均振幅增加了26%。大振幅、短上升时间EPSP的发生率也有所增加。当根据单个运动神经元类型对相同数据进行分类时,发现MG运动神经元中的同名EPSP振幅没有变化。刺激LG和SOL联合神经诱发并记录在LG运动神经元中的EPSP增加了46%。脊髓横断后,在SOL和PL运动神经元中记录的平均EPSP振幅均较大,但只有在将SOL和PL的值合并以产生更大样本量时才达到统计学显著性。3. 在慢性脊髓动物的LG运动神经元中,由LGS神经1.2T刺激诱发的所有EPSP的振幅均≥0.5 mV。在未损伤的制备中,四分之一的LG细胞的EPSP≤0.2 mV。4. 分别在MG和LG运动神经元中记录的由LGS和MG神经2T刺激诱发的异名EPSP的平均振幅在慢性脊髓横断后增加了一倍。由于MG运动神经元中的同名EPSP振幅没有变化,因此突触机制而非被动膜特性可能是MG中异名EPSP振幅增加的原因。5. 在所有运动神经元的汇总数据中,6周慢性脊髓动物中同名复合Ia EPSP的平均10-90%上升时间减少了21%。与EPSP振幅不同,在所有四个运动神经元池中均发现上升时间有显著减少。与其他运动神经元类型相比,在慢性脊髓动物中记录的MG运动神经元中的同名平均上升时间最短且减少最少。MG和LG运动神经元中异名Ia EPSP的上升时间也减少了。所有四种运动神经元类型中同名EPSP的最大上升速率均增加。6. 在6周脊髓横断的制备中,所有运动神经元类型的Ia复合EPSP的平均半宽度均减小。(摘要截断于400字)

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