EFFECT OF MYELINATION ON THE CONDUCTION-VELOCITY OF OPTIC-NERVE FIBERS

被引:15
|
作者
TOLHURST, DJ
LEWIS, PR
机构
[1] The Phvsialoyical Laboratory University of Cobiridge, Cambridge, CB2 3EG, Downing Street
关键词
D O I
10.1111/j.1475-1313.1992.tb00298.x
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
It was proposed by Rushton in 1951, from theoretical considerations, that myelinated fibres less than 1-mu-m in diameter would conduct more slowly than unmyelinated fibres of the same size and that myelinated fibres below about 0.7-mu-m would not conduct at all. The experimental data on which he based his theory are all from the peripheral nervous system where small myelinated fibres are rare, and no experimental verification of Rushton's hypothesis has been attempted. In mammalian optic nerve, nearly all the fibres are myelinated; yet half have diameters below 1-mu-m, with many below 0.7-mu-m. The many studies of conduction velocities in the visual system enable a test of Rushton's hypothesis to be made. We have examined the correlations between conduction velocity and fibre diameter from a wide range of published studies of the mammalian visual system. The results of our analysis suggest that the small myelinated fibres of the optic nerve and optic tract conduct action potentials more rapidly than is predicted by Rushton's hypothesis, while the unmyelinated axons within the retina actually conduct more slowly than predicted. There is no reason to believe, in this case, that myelination of a small axon will reduce its conduction velocity.
引用
收藏
页码:241 / 243
页数:3
相关论文
共 50 条
  • [31] EFFECT OF ENDURANCE RUNNING ON MOTOR-NERVE CONDUCTION-VELOCITY
    STOCKS, AE
    STANLEY, EF
    GOLDFARB, AH
    MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 1984, 16 (02): : 197 - 197
  • [32] CONDUCTION-VELOCITY ALONG HUMAN NOCICEPTIVE REFLEX AFFERENT NERVE-FIBERS
    ERTEKIN, C
    ERTEKIN, N
    KARCIOGLU, M
    JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1975, 38 (10): : 959 - 965
  • [33] CONDUCTION-VELOCITY IN DIFFERENT DIAMETER ULNAR SENSORY AND MOTOR-NERVE FIBERS
    DOMINGUE, J
    SHAHANI, BT
    YOUNG, RR
    MUSCLE & NERVE, 1980, 3 (05) : 437 - 437
  • [34] ON THE RELATION BETWEEN FIBER DIAMETER AND CONDUCTION-VELOCITY IN MYELINATED NERVE-FIBERS
    RITCHIE, JM
    PROCEEDINGS OF THE ROYAL SOCIETY SERIES B-BIOLOGICAL SCIENCES, 1982, 217 (1206): : 29 - 35
  • [35] EFFECT OF DIABETIC CONTROL ON MOTOR-NERVE CONDUCTION-VELOCITY
    FOX, C
    LOWY, C
    WRIGHT, V
    DIABETOLOGIA, 1975, 11 (04) : 342 - 342
  • [36] CONDUCTION-VELOCITY DISTRIBUTION OF AFFERENT-FIBERS IN THE FEMALE RAT HYPOGASTRIC NERVE
    NADELHAFT, I
    VERA, PL
    BRAIN RESEARCH, 1991, 539 (02) : 228 - 232
  • [37] PERIBULBAR ANESTHESIA AND OPTIC-NERVE CONDUCTION
    ARORA, R
    VERMA, L
    KUMAR, A
    KUNTE, R
    JOURNAL OF CATARACT AND REFRACTIVE SURGERY, 1991, 17 (04): : 506 - 508
  • [38] ONTOGENESIS OF OPTIC-NERVE CONDUCTION IN CHICKEN
    RAGER, G
    PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1974, 347 : R26 - R26
  • [39] AGE CHANGES IN CONDUCTION-VELOCITY OF UNMYELINATED FIBERS
    HOPKINS, AP
    LAMBERT, EH
    JOURNAL OF COMPARATIVE NEUROLOGY, 1973, 147 (04) : 547 - 552
  • [40] CONDUCTION-VELOCITY OF TRIGEMINAL MOTOR FIBERS IN MAN
    CRUCCO, G
    BOWSHER, D
    WELLS, C
    MILES, J
    MANFREDI, M
    ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1987, 66 (03): : P37 - P37