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猫后肢有髓传入神经纤维传导速度与直径的比例因子。

Scaling factor relating conduction velocity and diameter for myelinated afferent nerve fibres in the cat hind limb.

作者信息

Boyd I A, Kalu K U

出版信息

J Physiol. 1979 Apr;289:277-97. doi: 10.1113/jphysiol.1979.sp012737.

Abstract
  1. Compound action potentials were recorded from certain muscle and cutaneous nerves in normal and chronically de-efferentated hind limbs of cats during stimulation of the appropriate dorsal spinal roots, 2. The peaks for groups I, II and III in the compound action potential were correlated with the corresponding peaks in the fibre-diameter histograms of the same de-efferentated nerve after processing it for light microscopy. 3. The scaling factor (ratio of conduction velocity in m/sec to total diameter in micrometer) was not constant for all sizes of fibre nor did it increase progressively with fibre size. Evidence is presented that a logarithmic relation between conduction velocity and fibre diameter is not appropriate. 4. In muscle nerves the scaling factor for fibres fixed by glutaraldehyde perfusion and embedded in Epon was 5.7 for group I afferent fibres and 4.6 for myelinated fibres in both group II and group III. 5. In cutaneous nerves the scaling factor was 5.6 for large fibres (group I or Abeta) and 4.6 for small fibres (group III or Adelta). 6. The scaling factor for group I fibres is the same as was found previously for alpha-efferent fibres, and that for groups II and III is the same as for gamma-efferent fibres (Boyd & Davey, 1968). 7. The possibility that there is a clear discontinuity in scaling factor between fibres in groups I and alpha, and those in other functional groups, is discussed. 8. It is concluded that there must be some structural feature of alpha and group I fibres which differs from that of smaller myelinated fibres. It is likely that a difference in the relative thickness of the myelin sheath is involved and possibly also in the conductances responsible for generating the action potential.
摘要
  1. 在刺激猫正常及慢性去传入后肢的特定肌肉和皮神经时,记录复合动作电位,同时刺激相应的背侧脊髓神经根。2. 复合动作电位中I、II和III组的峰值与同一去传入神经经光学显微镜处理后的纤维直径直方图中的相应峰值相关。3. 标度因子(传导速度以米/秒为单位与总直径以微米为单位的比值)对于所有大小的纤维并非恒定不变,也不会随着纤维大小逐渐增加。有证据表明传导速度与纤维直径之间的对数关系并不合适。4. 在肌肉神经中,经戊二醛灌注固定并包埋在环氧树脂中的I组传入纤维的标度因子为5.7,II组和III组有髓纤维的标度因子为4.6。5. 在皮神经中,大纤维(I组或Aβ)的标度因子为5.6,小纤维(III组或Aδ)的标度因子为4.6。6. I组纤维的标度因子与先前发现的α传出纤维的相同,II组和III组的与γ传出纤维的相同(博伊德和戴维,1968年)。7. 讨论了I组和α纤维与其他功能组纤维在标度因子上是否存在明显不连续性的可能性。8. 得出的结论是,α纤维和I组纤维必定存在一些与较小有髓纤维不同的结构特征。很可能涉及髓鞘相对厚度的差异,也可能涉及产生动作电位的电导差异。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0f5/1281370/dca1a98a1614/jphysiol00750-0296-a.jpg

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