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脊髓横断对猫比目鱼肌α运动神经元中单个同名Ia纤维产生的兴奋性突触后电位的急性影响。

Acute effects of spinal transection on EPSPs produced by single homonymous Ia-fibers in soleus alpha-motoneurons in the cat.

作者信息

Cope T C, Hickman K R, Botterman B R

机构信息

Department of Cell Biology and Anatomy, University of Texas Health Science Center, Dallas 75235.

出版信息

J Neurophysiol. 1988 Nov;60(5):1678-94. doi: 10.1152/jn.1988.60.5.1678.

Abstract
  1. Excitatory postsynaptic potentials (EPSPs) generated in soleus motoneurons by single homonymous Ia-fibers were measured using intracellular recording and the spike-triggered averaging technique. Two groups of barbiturate-anesthetized adult cats were studied: one with the spinal cord intact and the other with the spinal cord severed at thoracic segment 13 (T13) several hours prior to recording. 2. In cord-transected cats, single homonymous Ia-fibers produced EPSPs in soleus motoneurons that were, on average, larger and faster rising relative to normal, as they are for those produced in medial gastrocnemius (MG) motoneurons (8, 12, 13, 40). Specifically, mean EPSP amplitude and rise time were, respectively, 261 +/- 22 microV and 0.65 +/- 0.05 ms for the transected group vs. 160 +/- 21 microV and 0.96 +/- 0.08 ms for the intact group. The group means for each parameter were significantly different (P less than 0.005). 3. The group difference in EPSP amplitude was largely due to a decrease in number of small EPSPs in the transected group (11% less than 100 microV compared with the normal 41%) and not due to the occurrence of unusually large ones. Ratios of the largest to smallest amplitude EPSPs produced in the same motoneuron were similarly distributed for intact and transected groups, implying that the effect of transection on EPSP size was uniform across different Ia-fiber synapses made with the same motoneuron. Mean EPSP amplitude for each transected cat (n = 5) was larger than normal, but in some cases the increase took greater than 10 h to express itself. 4. The normal tendency for EPSP rise time to decline on average with amplitude was absent in the transected group, wherein rise time was reduced to similar average values in all amplitude categories. This suggests that the decrease in rise time occurred independently of the increase in amplitude. In contrast, EPSP half-width, which tended tow ward lower than normal values [5.63 +/- 0.36 (SE) ms vs. 6.51 +/- 0.44 ms; P greater than 0.10], decreased in proportion with rise time as evidenced by the preservation of the normal relation between those parameters in transected cats. Normalizing EPSPs by motoneuron time constant (tau) reduced the group differences in rise time and half-width, suggesting that a fall in tau contributes to the abbreviation of EPSP time course. 5. The condition of the spinal cord best accounted for differences in synaptic strength between groups.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 使用细胞内记录和锋电位触发平均技术,测量了单根同名Ia纤维在比目鱼肌运动神经元中产生的兴奋性突触后电位(EPSP)。研究了两组巴比妥类麻醉的成年猫:一组脊髓完整,另一组在记录前数小时于胸段13(T13)处切断脊髓。2. 在脊髓横断的猫中,单根同名Ia纤维在比目鱼肌运动神经元中产生的EPSP,相对于正常情况平均更大且上升更快,就像在腓肠肌内侧头(MG)运动神经元中产生的EPSP一样(参考文献8、12、13、40)。具体而言,横断组的平均EPSP幅度和上升时间分别为261±22微伏和0.65±0.05毫秒,而完整组分别为160±21微伏和0.96±0.08毫秒。每组各参数的平均值有显著差异(P小于0.005)。3. EPSP幅度的组间差异主要是由于横断组中小EPSP数量减少(小于100微伏的比正常的41%少11%),而非由于出现了异常大的EPSP。在同一运动神经元中产生的最大与最小幅度EPSP的比率,在完整组和横断组中分布相似,这意味着横断对EPSP大小的影响在与同一运动神经元形成的不同Ia纤维突触中是一致的。每只横断猫(n = 5)的平均EPSP幅度都大于正常,但在某些情况下,这种增加需要超过10小时才表现出来。4. 横断组中不存在EPSP上升时间随幅度平均下降的正常趋势,其中在所有幅度类别中上升时间都减少到相似的平均值。这表明上升时间的减少独立于幅度的增加。相反,EPSP半宽度倾向于低于正常值[5.63±0.36(标准误)毫秒对6.51±0.44毫秒;P大于0.10],并且与上升时间成比例下降,这在横断猫中这些参数之间的正常关系得以保留中得到证明。用运动神经元时间常数(tau)对EPSP进行归一化,减少了上升时间和半宽度的组间差异,表明tau的下降有助于EPSP时间进程的缩短。5. 脊髓状况最能解释两组之间突触强度的差异。(摘要截断于400字)

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