Brown P B, Fuchs J L, Tapper D N
J Neurophysiol. 1975 Jan;38(1):19-25. doi: 10.1152/jn.1975.38.1.19.
Dorsal horn neurons responding to tactile input were recorded in segments L3-S2 of unanesthetized, low-spinal cats. Single units were characterized with regard to receptive field (RF) location, RF size and shape, spontaneous discharge rate, central delay, and convergence of four tactile afferent types. 1. RF size increased from the toes to the calf region. 2. Length-width ratio increased from the toes to the calf and declined from the calf to the hip. 3. The relation between RF size and position on the limb was independent of segmental and laminar location of the neurons. 4. RF size was positively correlated with spontaneous discharge rate. 5. The relation between RF size and shape and RF position can be interpreted in terms of regional variations in the magnitude of the gradient of representation in the dorsal horn somatotopic map. 6. Central delay was negatively correlated with both RF size and rate of ongoing discharge. 7. There were no statistically significant differences among the laminae with respect to central delay, RF size or shape, ongoing discharge, or convergence combinations of the four tactile afferent systems. 8. Data presented were at variance with Wall's laminar cascading model for laminae IV-VI. Our results suggest that the model should be modified, at least to emphasize monosynaptic tactile input to all three of these laminae.
在未麻醉的低位脊髓猫的L3 - S2节段记录对触觉输入有反应的背角神经元。对单个神经元的特征进行了如下描述:感受野(RF)位置、RF大小和形状、自发放电率、中枢延迟以及四种触觉传入类型的汇聚情况。1. RF大小从脚趾到小腿区域逐渐增大。2. 长宽比从脚趾到小腿逐渐增大,从小腿到臀部逐渐减小。3. RF大小与肢体上位置的关系与神经元的节段和层状位置无关。4. RF大小与自发放电率呈正相关。5. RF大小和形状与RF位置之间的关系可以根据背角躯体定位图中表征梯度大小区域差异来解释。6. 中枢延迟与RF大小和持续放电率均呈负相关。7. 在中枢延迟、RF大小或形状、持续放电或四种触觉传入系统的汇聚组合方面,各层之间没有统计学上的显著差异。8. 所呈现的数据与Wall关于IV - VI层状的层状级联模型不一致。我们的结果表明,该模型应进行修改,至少要强调对所有这三层的单突触触觉输入。