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PMID: 11927675 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Effects of daily spontaneous running on the electrophysiological properties of hindlimb motoneurones in rats.

The Journal of physiology ·Vol. 540 ·No. Pt 1 ·2002-04-01 ·Pages 129-38

Beaumont E, Gardiner P

Abstract

No evidence currently exists that motoneurone adaptations in electrophysiological properties can result from changes in the chronic level of neuromuscular activity. We examined, in anaesthetized (ketamine/xylazine) rats, the properties of motoneurones with axons in the tibial nerve, from rats performing daily spontaneous running exercise for 12 weeks in exercise wheels ('runners') and from rats confined to plastic cages ('controls'). Motoneurones innervating the hindlimb via the tibial nerve were impaled with sharp glass microelectrodes, and the properties of resting membrane potential, spike threshold, rheobase, input resistance, and the amplitude and time-course of the afterhyperpolarization (AHP) were measured. AHP half-decay time was used to separate motoneurones into 'fast' (AHP half-decay time < 20 ms) and 'slow' (AHP half-decay time >/= 20 ms), the proportions of which were not significantly different between controls (58 % fast) and runners (65 % fast). Two-way ANOVA and ANCOVA revealed differences between motoneurones of runners and controls which were confined to the 'slow' motoneurones. Specifically, runners had slow motoneurones with more negative resting membrane potentials and spike thresholds, larger rheobasic spike amplitudes, and larger amplitude AHPs compared to slow motoneurones of controls. These adaptations were not evident in comparing fast motoneurones from runners and controls. This is the first demonstration that physiological modifications in neuromuscular activity can influence basic motoneurone biophysical properties. The results suggest that adaptations occur in the density, localization, and/or modulation of ionic membrane channels that control these properties. These changes might help offset the depolarization of spike threshold that occurs during rhythmic firing.

MeSH Terms
Action Potentials/physiology Adaptation, Physiological/physiology Animals Electrophysiology Female Hindlimb Motor Activity/physiology Motor Neurons/physiology Neuronal Plasticity/physiology Rats Rats, Sprague-Dawley
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Beaumont Eric
Département de kinésiologie, Université de Montréal, Québec, Canada H3C 3J7.
Gardiner Phillip
References (48)
48 references, click to expand
  1. Properties of self-reinnervated motor units of medial gastrocnemius of cat. I. Long-term reinnervation.
    J Neurophysiol. 1986 May;55(5):931-46 PMID: 3711973
  2. Plasticity of medial gastrocnemius motor units following cordotomy in the cat.
    J Neurophysiol. 1986 Apr;55(4):619-34 PMID: 3701396
  3. Soleus motor units in chronic spinal transected cats: physiological and morphological alterations.
    J Neurophysiol. 1986 Jun;55(6):1202-20 PMID: 3734855
  4. Motor-unit properties following cross-reinnervation of cat lateral gastrocnemius and soleus muscles with medial gastrocnemius nerve. II. Influence of muscle on motoneurons.
    J Neurophysiol. 1987 Apr;57(4):1227-45 PMID: 3585462
  5. Brain monoamine metabolism is altered in rats following spontaneous, long-distance running.
    Acta Physiol Scand. 1987 Jun;130(2):313-6 PMID: 3111175
  6. Electrical properties of motoneurons in the spinal cord of rat embryos.
    Dev Biol. 1988 Jul;128(1):21-9 PMID: 2454854
  7. Fast axonal transport of labeled proteins in motoneurons of exercise-trained rats.
    Am J Physiol. 1988 Dec;255(6 Pt 1):C731-6 PMID: 2462358
  8. Variations in running activity and enzymatic adaptations in voluntary running rats.
    J Appl Physiol (1985). 1989 Mar;66(3):1250-7 PMID: 2540143
  9. Spontaneous running increases VO2max and running performance in rats.
    J Appl Physiol (1985). 1990 Jan;68(1):400-3 PMID: 2312483
  10. The relationship of voluntary running to fibre type composition, fibre area and capillary supply in rat soleus and plantaris muscles.
    Eur J Appl Physiol Occup Physiol. 1991;62(3):211-5 PMID: 2044528
  11. Effect of endurance training on the oxidative enzyme activity of soleus motoneurons in rats.
    Acta Physiol Scand. 1991 Sep;143(1):127-8 PMID: 1957699
  12. Adaptive plasticity in spinal cord.
    Adv Neurol. 1993;59:163-74 PMID: 8420103
  13. Physiological properties of motoneurons innervating different muscle unit types in rat gastrocnemius.
    J Neurophysiol. 1993 Apr;69(4):1160-70 PMID: 8492155
  14. Activity-dependent changes in the intrinsic properties of cultured neurons.
    Science. 1994 May 13;264(5161):974-7 PMID: 8178157
  15. Effects of chronic spinalization on ankle extensor motoneurons. II. Motoneuron electrical properties.
    J Neurophysiol. 1994 Apr;71(4):1468-79 PMID: 8035228
  16. Retrograde determination of motoneuron properties and their synaptic input.
    J Neurobiol. 1994 Jun;25(6):707-21 PMID: 8071668
  17. Acetylcholinesterase adaptation to voluntary wheel running is proportional to the volume of activity in fast, but not slow, rat hindlimb muscles.
    Eur J Neurosci. 1994 May 1;6(5):673-80 PMID: 8075813
  18. Exercise and brain neurotrophins.
    Nature. 1995 Jan 12;373(6510):109 PMID: 7816089
  19. Voltage-dependent excitation of motoneurones from spinal locomotor centres in the cat.
    Exp Brain Res. 1994;102(1):34-44 PMID: 7895797
  20. Operantly conditioned motoneuron plasticity: possible role of sodium channels.
    J Neurophysiol. 1995 Feb;73(2):867-71 PMID: 7760141
  21. Chronic exercise increases SNAP-25 abundance in fast-transported proteins of rat motoneurones.
    Neuroreport. 1995 Feb 15;6(3):549-53 PMID: 7766862
  22. Daily spontaneous running alters behavioral and neurochemical indexes of nigrostriatal function.
    J Appl Physiol (1985). 1995 Apr;78(4):1219-24 PMID: 7615427
  23. Adaptations of rat lateral gastrocnemius motor units in response to voluntary running.
    J Appl Physiol (1985). 1995 May;78(5):1673-8 PMID: 7649901
  24. Modulation of motoneuron excitability by brain-derived neurotrophic factor.
    J Neurophysiol. 1997 Jan;77(1):502-6 PMID: 9120591
  25. The effects of tetrodotoxin-induced muscle paralysis on the physiological properties of muscle units and their innervating motoneurons in rat.
    J Physiol. 1997 Feb 15;499 ( Pt 1):207-16 PMID: 9061650
  26. Fast-to-slow conversion following chronic low-frequency activation of medial gastrocnemius muscle in cats. I. Muscle and motor unit properties.
    J Neurophysiol. 1997 May;77(5):2585-604 PMID: 9163378
  27. Fast-to-slow conversion following chronic low-frequency activation of medial gastrocnemius muscle in cats. II. Motoneuron properties.
    J Neurophysiol. 1997 May;77(5):2605-15 PMID: 9163379
  28. Structure and function of voltage-gated sodium channels.
    J Physiol. 1998 May 1;508 ( Pt 3):647-57 PMID: 9518722
  29. Cellular correlates of long-term sensitization in Aplysia.
    J Neurosci. 1998 Aug 1;18(15):5988-98 PMID: 9671684
  30. Hand dominance and motor unit firing behavior.
    J Neurophysiol. 1998 Sep;80(3):1373-82 PMID: 9744946
  31. Exercise-induced alterations in skeletal muscle myosin heavy chain phenotype: dose-response relationship.
    J Appl Physiol (1985). 1999 Mar;86(3):1002-8 PMID: 10066716
  32. Increased activity in the form of endurance training increases calcitonin gene-related peptide content in lumbar motoneuron cell bodies and in sciatic nerve in the rat.
    Neuroscience. 1999;89(4):1229-39 PMID: 10362310
  33. Plasticity in the intrinsic excitability of cortical pyramidal neurons.
    Nat Neurosci. 1999 Jun;2(6):515-20 PMID: 10448215
  34. Stimulation of spinal motoneurones with intracellular electrodes.
    J Physiol. 1956 Nov 28;134(2):451-70 PMID: 13398925
  35. The behaviour of chromatolysed motoneurones studied by intracellular recording.
    J Physiol. 1958 Aug 29;143(1):11-40 PMID: 13576457
  36. QUANTITATIVE ASPECTS OF REPETITIVE FIRING OF MAMMALIAN MOTONEURONES, CAUSED BY INJECTED CURRENTS.
    J Physiol. 1963 Oct;168:911-31 PMID: 14072865
  37. Changes in electrophysiological properties of tibial motoneurones in the rat following 4 weeks of tetrodotoxin-induced paralysis.
    Neurosci Lett. 2000 Jun 16;287(1):21-4 PMID: 10841981
  38. Polyamines as gating molecules of inward-rectifier K+ channels.
    Eur J Biochem. 2000 Oct;267(19):5824-9 PMID: 10998040
  39. Enhancement of presynaptic neuronal excitability by correlated presynaptic and postsynaptic spiking.
    Nat Neurosci. 2000 Oct;3(10):1018-26 PMID: 11017175
  40. Role of potassium conductances in determining input resistance of developing brain stem motoneurons.
    J Neurophysiol. 2000 Nov;84(5):2330-9 PMID: 11067976
  41. State-dependent hyperpolarization of voltage threshold enhances motoneurone excitability during fictive locomotion in the cat.
    J Physiol. 2001 Apr 1;532(Pt 1):271-81 PMID: 11283241
  42. Differential regulation by exercise of BDNF and NT-3 in rat spinal cord and skeletal muscle.
    Eur J Neurosci. 2001 Mar;13(6):1078-84 PMID: 11285004
  43. Electrical behaviour of the motoneurone membrane during intracellularly applied current steps.
    J Physiol. 1965 Oct;180(3):607-35 PMID: 5846796
  44. Evidence for the maintenance of motoneurone properties by muscle activity.
    J Physiol. 1978 Aug;281:239-52 PMID: 279668
  45. Factors influencing motoneuron rhythmic firing: results from a voltage-clamp study.
    J Neurophysiol. 1982 Oct;48(4):875-90 PMID: 7143033
  46. Exercise-induced fibre type transitions with regard to myosin, parvalbumin, and sarcoplasmic reticulum in muscles of the rat.
    Pflugers Arch. 1984 Apr;400(4):432-8 PMID: 6235480
  47. Membrane electrical properties and prediction of motor-unit type of medial gastrocnemius motoneurons in the cat.
    J Neurophysiol. 1985 May;53(5):1323-44 PMID: 3839011
  48. Properties of self-reinnervated motor units of medial gastrocnemius of cat. II. Axotomized motoneurons and time course of recovery.
    J Neurophysiol. 1986 May;55(5):947-65 PMID: 3711974
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
2002-04-01
Pages
129-38
Language
English
Region
England
NLM ID
0266262
PMCID
PMC2290217
Subset
IM
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