Abstract
1. A study has been made of the formation and regression of synapses formed by spinal nerves 16 and 17 in axolotl hind-limb flexor muscles following the severing of nerve 16, using histological, ultrastructural and electrophysiological techniques. 2. Axolotl hind-limb flexor myofibres possessed 'en plaque' end-plates from either spinal nerve 16 or 17 or both at intervals of about 1000 micronm along their length; the myofibre's length constant was about 700 micronm allowing electrophysiological observations of at least two of these synapses during a single impalement; transmitter release at these synapses could be described by binomial statistics and in a given set of ionic conditions the binomial statistic parameter n was directly proportional to the size of the nerve terminals whilst the binomial statistic parameter p was invariant to changes in nerve terminal size. 3. The distribution of synapses formed by spinal nerves 16 and 17 in different sectors of the axolotl hind-limb flexor muscles was determined from a study of evoked end-plate potentials; the middle and proximal sectors of the flexor muscles contained myofibres which received an innervation from nerve 16 only, whereas the sectors surrounding these contained myofibres innervated either by nerve 16 or nerve 17 or by both nerves. 4. Six days following the severing of spinal nerve 16, evoked transmitter release from the synapses formed by this nerve had failed; transmission was subsequently recorded at a few synapses formed by nerve 17 in the middle and proximal sectors of the flexor muscles which are not normally innervated by this nerve and these synapses had a low n; during the succeeding four weeks the value of n at the synapses increased to a size about 70% that of the terminals normally formed by nerve 16 at these sites. 5. Four weeks after severing nerve 16, myofibres which possessed synapses formed by nerve 17 also possessed synapses from re-innervating nerve 16 and these were sometimes formed at the same synaptic sites as those occupied by nerve 17. 6. In the subsequent sixteen weeks, the n value of synapses formed by nerve 17 declined whilst the n values of synapses formed by re-innervating nerve 16 on the same myofibres matured to their control size. 7. It is suggested that on severing nerve 16 collateral sprouting of nearby intact nerve 17 occurs and these collateral sprouts innervate the denervated synaptic sites, although the sprouts arenot as well matched to the denervated synaptic sites as are the original nerve terminals; thus if nerve 16 returns it preferentially forms synapses at its original synaptic sites, and the collateral synapses formed by nerve 17 regress.
MeSH Terms
Ambystoma/physiology
Animals
Evoked Potentials
Motor Endplate/physiology
Muscles/innervation,ultrastructure
Myofibrils/physiology
Spinal Nerves/physiology
Synapses/physiology
Synaptic Transmission
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Bennett M R
Raftos J
References (30)
30 references, click to expand
-
The formation of neuromuscular synapses.
Cold Spring Harb Symp Quant Biol. 1976;40:409-24
PMID: 1065534
-
The interaction between foreign and original motor nerves innervating the soleus muscle of rats.
J Physiol. 1975 Jun;247(3):725-43
PMID: 1142305
-
The effect of calcium ions on the binomial statistic parameters which control acetylcholine release at synapses in striated muscle.
J Physiol. 1975 May;247(2):429-46
PMID: 1151780
-
Persistence of foreign innervation on reinnervated goldfish extraocular muscles.
Science. 1975 Aug 22;189(4203):644-6
PMID: 1162348
-
A further study of the statistical composition on the end-plate potential.
J Physiol. 1955 Oct 28;130(1):114-22
PMID: 13278890
-
The occurrence and function of collateral sprouting in the sympathetic nervous system of the cat.
J Physiol. 1957 Jan 23;135(1):133-62
PMID: 13398971
-
Membrane constants of mammalian muscle fibres.
J Physiol. 1959 Oct;147:450-7
PMID: 13803545
-
Neuromuscular function after regeneration of interrupted nerve fibers into partially denervated muscle.
Exp Neurol. 1962 Aug;6:129-41
PMID: 13903146
-
A "DIRECT-COLORING" THIOCHOLINE METHOD FOR CHOLINESTERASES.
J Histochem Cytochem. 1964 Mar;12:219-21
PMID: 14187330
-
Fate of interrupted nerve-fibres regenerating into partially denervated muscles.
Aust J Exp Biol Med Sci. 1951 May;29(3):211-19
PMID: 14869282
-
An analysis of the end-plate potential recorded with an intracellular electrode.
J Physiol. 1951 Nov 28;115(3):320-70
PMID: 14898516
-
The early stages in the degeneration of cutaneous nerve fibres.
J Anat. 1941 Oct;76(Pt 1):65-93
PMID: 17104881
-
Post-synaptic potentiation: interaction between quanta of acetylcholine at the skeletal neuromuscular synapse.
J Physiol. 1975 Oct;251(2):427-63
PMID: 171379
-
Estimation of parameters for a model of transmitter release at synapses.
Biometrics. 1976 Mar;32(1):61-8
PMID: 179628
-
The effect of calcium ions on the binomial statistic parameters that control acetylcholine release at preganglionic nerve terminals.
J Physiol. 1976 Jun;257(3):597-620
PMID: 181562
-
Re-innervation of axolotl limbs. I. Motor nerves.
Proc R Soc Lond B Biol Sci. 1975 Jun 20;190(1098):45-58
PMID: 237287
-
The formation of synapses in reinnervated mammalian striated muscle.
J Physiol. 1973 Sep;233(3):481-500
PMID: 4127828
-
Characteristics of transmitter release at regenerating frog neuromuscular junctions.
J Physiol. 1974 Jun;239(3):571-94
PMID: 4152807
-
An electron microscopic study of denervated motor endplates after zinc iodide-osmium impregnation.
Brain Res. 1969 Mar;13(1):168-76
PMID: 4185125
-
Correlation between nerve terminal size and transmitter release at the neuromuscular junction of the frog.
J Physiol. 1971 Mar;213(3):545-56
PMID: 4323933
-
The formation of synapses in reinnervated and cross-reinnervated adult avian muscle.
J Physiol. 1973 Apr;230(2):331-57
PMID: 4350769
-
A statistical analysis of the release of acetylcholine at newly formed synapses in striated muscle.
J Physiol. 1974 Apr;238(1):93-107
PMID: 4365809
-
Formation and regression of inappropriate nerve sprouts during trochlear nerve regeneration in Xenopus laevis.
J Comp Neurol. 1974 Oct 15;157(4):391-406
PMID: 4418001
-
Initial changes in the neuromuscular synapses of denervated rat diaphragm.
Brain Res. 1974 Jan 11;65(2):303-16
PMID: 4420951
-
Analysis of electrical responses of newt skeletal muscle fibres in response to direct and indirect stimulation.
J Physiol (Paris). 1974;68(6):615-32
PMID: 4463233
-
The effect of increasing the innervation field sizes of nerves on their reflex response time in salamanders.
J Physiol. 1973 Mar;229(3):657-79
PMID: 4693677
-
Competition between nerves for functional connexions with axolotl muscles.
Nature. 1973 May 25;243(5404):201-3
PMID: 4706290
-
The mechanism of selective reinnervation of fish eye muscle. I. Evidence from muscle function during recovery.
Brain Res. 1970 Apr 1;19(1):41-51
PMID: 5437376
-
The mechanism of selective reinnervation of fish eye muscle. II. Evidence from electronmicroscopy of nerve endings.
Brain Res. 1970 Apr 1;19(1):53-62
PMID: 5437377
-
Neural control of contracture in slow muscle fibres of the frog.
Acta Physiol Lat Am. 1970;20(3):194-226
PMID: 5502982