Published in J Physiol on July 01, 1968
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Decamethonium in depolarized muscle and the effects of tubocurarine. J Physiol (1970) 1.50
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Maintenance of isolated diaphragm with normal sodium content. J Physiol (1961) 1.74
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Labelled depolarizing drugs in normal and denervated muscle. Nature (1965) 1.40
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Changes in the protein composition of muscles of the rat in hypertrophy and atrophy. Biochem J (1955) 0.92
The influence of activity on some contractile characteristics of mammalian fast and slow muscles. J Physiol (1969) 2.48
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Adaptation of mammalian skeletal muscle fibers to chronic electrical stimulation. Rev Physiol Biochem Pharmacol (1992) 1.98
Effects of long-term electrical stimulation on some contractile and metabolic characteristics of fast rabbit muscles. Pflugers Arch (1973) 1.85
Sodium fluxes in diaphragm muscle and the effects of insulin and serum proteins. J Physiol (1968) 1.68
Two factors responsible for the development of denervation hypersensitivity. J Physiol (1974) 1.63
The effects of different patterns of muscle activity on capillary density, mechanical properties and structure of slow and fast rabbit muscles. Pflugers Arch (1976) 1.54
A study of the increased sensitivity of denervated and re-innervated muscle to depolarizing drugs. J Physiol (1966) 1.50
Decamethonium in depolarized muscle and the effects of tubocurarine. J Physiol (1970) 1.50
Observations on the elimination of polyneuronal innervation in developing mammalian skeletal muscle. J Physiol (1978) 1.49
Autoradiography of decamethonium in rat muscle. Nature (1967) 1.42
Labelled depolarizing drugs in normal and denervated muscle. Nature (1965) 1.40
Motor neuron disease model. Nature (1992) 1.38
Time dependent effects on contractile properties, fibre population, myosin light chains and enzymes of energy metabolism in intermittently and continuously stimulated fast twitch muscles of the rabbit. Pflugers Arch (1976) 1.37
Effect of muscle activity on denervation hypersensitivity. J Physiol (1970) 1.32
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Comparison of enzyme activities among single muscle fibres within defined motor units. J Physiol (1981) 1.23
Entry of labeled carbachol in brain slices of the rat and the action of d-tubocurarine and strychnine. J Pharmacol Exp Ther (1967) 1.19
Contractile properties and susceptibility to exercise-induced damage of normal and mdx mouse tibialis anterior muscle. Clin Sci (Lond) (1992) 1.19
Changes in the speed of mammalian fast muscle following longterm stimulation. J Physiol (1967) 1.18
Entry of decamethonium in rat muscle studied by autoradiography. J Physiol (1970) 1.16
Diffusion of decamethonium in the rat. Nature (1967) 1.12
Functional specializations of the vascular bed of soleus. J Physiol (1970) 1.09
Dependence of postnatal motoneurones on their targets: review and hypothesis. Trends Neurosci (1992) 1.08
Inorganic phosphate--a new candidate for mediator of functional vasodilatation in skeletal muscle. J Physiol (1970) 1.05
The sensory reinnervation of hind limb muscles of the cat following denervation and de-efferentation. Neuroscience (1977) 1.02
Movement of labelled decamethonium in muscle fibres of the rat. J Physiol (1977) 0.96
Effects of slow frequency electrical stimulation on muscles of dystrophic mice. J Neurol Neurosurg Psychiatry (1980) 0.96
Changes of capillary density and enzyme pattern in fast rabbit muscles during long-term stimulation. J Physiol (1973) 0.96
The effect of long-term stimulation of fast muscles on their blood flow, metabolism and ability to withstand fatigue. Pflugers Arch (1977) 0.95
The role of muscle activity in the differentiation of neuromuscular junctions in slow and fast chick muscles. J Neurocytol (1978) 0.94
Activity-dependent interactions between motoneurones and muscles: their role in the development of the motor unit. Prog Neurobiol (1993) 0.94
Reorganization of motor units in reinnervated muscles of the rat. J Neurol Sci (1988) 0.94
Matching of muscle properties and motoneurone firing patterns during early stages of development. J Exp Biol (1985) 0.93
Maximal voluntary quadriceps strength patterns in Olympic overtrained athletes. Med Sci Sports Exerc (1995) 0.93
Differential effect of nerve injury at birth on the activity pattern of reinnervated slow and fast muscles of the rat. J Physiol (1984) 0.93
Correlation between the retinal input to lateral geniculate neurones and their relative response to glutamate and aspartate. J Physiol (1972) 0.92
Independent development of contractile properties and myosin light chains in embryonic chick fast and slow muscle. Pflugers Arch (1979) 0.92
Recovery of slow and fast muscles following nerve injury during early post-natal development in the rat. J Physiol (1982) 0.92
Effect of low calcium and protease inhibitors on synapse elimination during postnatal development in the rat soleus muscle. Brain Res (1986) 0.92
The influence of innervation on the differentiation of contractile speeds of developing chick muscles. Pflugers Arch (1975) 0.91
Permanent changes in muscle and motoneurones induced by nerve injury during a critical period of development of the rat. Brain Res (1987) 0.90
Motoneurons destined to die are rescued by blocking N-methyl-D-aspartate receptors by MK-801. Neuroscience (1993) 0.90
Labeled decamethonium in denervated skeletal muscle. J Pharmacol Exp Ther (1971) 0.89
Induction of an extrajunctional chemosensitive area in intact innervated muscle fibres. J Physiol (1967) 0.89
The importance of peripheral changes in determining the sensitivity of striated muscle to depolarizing drugs. J Physiol (1966) 0.89
Differentiation of electrical and contractile properties of slow and fast muscle fibres. J Physiol (1977) 0.89
Sodium entry in rat diaphragm induced by depolarizing drugs. J Physiol (1977) 0.88
The effect of riluzole treatment in rats on the survival of injured adult and grafted embryonic motoneurons. Eur J Neurosci (2001) 0.88
Upregulation of heat shock proteins rescues motoneurones from axotomy-induced cell death in neonatal rats. Exp Neurol (2002) 0.88
Motor and sensory reinnervation of fast and slow mammalian muscles. Z Zellforsch Mikrosk Anat (1973) 0.87
Effect of activity on the elimination of multiple innervation in soleus muscles of rats [proceedings]. J Physiol (1977) 0.87
Motoneurone survival: a functional approach. Trends Neurosci (1996) 0.87
Absence of functional hyperaemia in the soleus muscle of the cat. J Physiol (1968) 0.87
Effects of chronic low frequency electrical stimulation on normal human tibialis anterior muscle. J Neurol Neurosurg Psychiatry (1985) 0.87
Differentiation of slow and fast muscles in chickens. Cell Tissue Res (1977) 0.87
Effects of low-frequency electrical stimulation on fast and slow muscles of the rat. Pflugers Arch (1981) 0.87
Two mechanisms for spontaneous recovery from depolarising drugs in rat muscle. Nature (1976) 0.87
Non-quantal release of acetylcholine affects polyneuronal innervation on developing rat muscle fibres. Eur J Neurosci (1993) 0.87
Different pattern of recovery of fast and slow muscles following nerve injury in the rat. J Physiol (1984) 0.86
Physiological and biochemical changes induced by long-term stimulation of fast muscle. Naturwissenschaften (1972) 0.86
Effects of low frequency electrical stimulation on enzyme and isozyme patterns of dystrophic mouse muscle. FEBS Lett (1981) 0.85
Therapeutic possibilities of chronic low frequency electrical stimulation in children with Duchenne muscular dystrophy. J Neurol Sci (1990) 0.85
Method of localizing end-plates in unstained frozen muscle. J Physiol (1969) 0.85
The effect of altered peripheral field on motoneurone function in developing rat soleus muscles. J Physiol (1985) 0.84
Growth of capillaries during long-term activity in skeletal muscle. Bibl Anat (1973) 0.84
Waller--pioneer of electrocardiography. Br Heart J (1979) 0.84
Partial denervation of the rat soleus muscle at two different developmental stages. Neuroscience (1989) 0.84
Acetylcholine synthesis in nerve endings to slow and fast muscles of developing chicks: effect of muscle activity. Neuroscience (1978) 0.83
Spontaneous recovery from depolarizing drugs in rat diaphragm. J Physiol (1981) 0.83
Overexpression of GAP-43 induces prolonged sprouting and causes death of adult motoneurons. Eur J Neurosci (1999) 0.83
Blockade of N-methyl-D-aspartate receptors by MK-801 (dizocilpine maleate) rescues motoneurones in developing rats. Brain Res Dev Brain Res (1994) 0.83
Effect of chronic electrical stimulation at low frequency on the passive membrane properties of muscle fibers from dystrophic mice. Exp Neurol (1983) 0.83
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The importance of the motor nerve for the development of chemosensitivity at the neuromuscular junction. Agents Actions (1970) 0.82
Effect of atropine on the uptake of labeled carbachol by rat brain slices. Life Sci (1965) 0.82
Some characteristics of myotubes cultured from slow and fast chick muscles. J Cell Physiol (1974) 0.81
Delayed riluzole treatment is able to rescue injured rat spinal motoneurons. Neuroscience (2006) 0.81
Proceedings: The effect of long-term stimulation of fast muscles on their ability to withstand fatigue. J Physiol (1974) 0.81
Motoneurone activity as a cause of degeneration in the soleus muscle of the rabbit. Q J Exp Physiol Cogn Med Sci (1967) 0.81
Adaptation of rat extensor digitorum longus to overload and increased activity. Pflugers Arch (1991) 0.81
The influence of innervation on differentiating tonic and twitch muscle fibres of the chicken. J Physiol (1981) 0.81
Responses of muscles of patients with Duchenne muscular dystrophy to chronic electrical stimulation. J Neurol Neurosurg Psychiatry (1986) 0.81
Changes in chemosensitivity of developing chick muscle fibres in relation to endplate formation. Pflugers Arch (1975) 0.81
Can denervation hypersensitivity be prevented? J Physiol (1971) 0.80
The effect of acetylcholine on the function and structure of the developing mammalian neuromuscular junction. Neuroscience (1980) 0.80
The effect of muscle activity on motor unit size in partially denervated rat soleus muscles. Neuroscience (1990) 0.80
The role of Ca2+ in the elimination of polyneuronal innervation of rat soleus muscle fibres. Eur J Neurosci (1992) 0.80
Temporary loss of activity prevents the increase of motor unit size in partially denervated rat soleus muscles. J Physiol (1991) 0.80
Labelled decamethonium in cat muscle. Br J Pharmacol (1976) 0.80
Sodium entry in junctional region of rat muscle. J Physiol (1975) 0.79
Experimentally induced differentiation of slow tonic and fast twitch muscles in the chick. J Cell Sci (1979) 0.79
The effect of load on the phenotype of the developing rat soleus muscle. Pflugers Arch (1989) 0.79
Motoneurons innervating partially denervated rat hindlimb muscles remain susceptible to axotomy-induced cell death. Neuroscience (1998) 0.79
Improved motor function of denervated rat hindlimb muscles induced by embryonic spinal cord grafts. Eur J Neurosci (1996) 0.79
Stabilizing neuromuscular contacts increases motoneuron survival after neonatal nerve injury in rats. Neuroscience (1996) 0.79
Mechanical activity is necessary for the elimination of polyneuronal innervation of developing rat soleus muscles. Brain Res Dev Brain Res (1998) 0.79
Possible strategies for treatment of SMA patients: a neurobiologist's view. Neuromuscul Disord (1995) 0.79
Motoneurones that innervate the rat soleus muscle mature later than those to the tibialis anterior and extensor digitorum longus muscles. Dev Neurosci (1998) 0.79
Inactivity induces muscle hypertrophy and redistribution of myosin isozymes in chicken anterior latissimus dorsi muscle. Pflugers Arch (1993) 0.78