Competition regulates the efficacy of an identified synapse in crickets
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[1] M. Burrows. Monosynaptic connexions between wing stretch receptors and flight motoneurones of the locust. , 1975, The Journal of experimental biology.
[2] K G Pearson,et al. Connexions between hair-plate afferents and motoneurones in the cockroach leg. , 1976, The Journal of experimental biology.
[3] G. Schneider. Early lesions of superior colliculus: factors affecting the formation of abnormal retinal projections. , 1973, Brain, behavior and evolution.
[4] D. A. Baxter,et al. Quantal mechanism of long-term synaptic potentiation. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[5] S. Easter,et al. Expansion of the half retinal projection to the tectum in goldfish: An electrophysiological and Anatomical study , 1978, The Journal of comparative neurology.
[6] R. Murphey,et al. Sensory deprivation during development decreases the responsiveness of cricket giant interneurones , 1977, The Journal of physiology.
[7] R. Murphey,et al. A topographic map of sensory cell terminal arborizations in the cricket CNS: Correlation with birthday and position in a sensory array , 1980, The Journal of comparative neurology.
[8] Competition controls the growth of an identified axonal arborization. , 1984, Science.
[9] R. Murphey,et al. Anatomy and physiology of supernumerary cercal afferents in crickets: implications for pattern formation , 1983, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[10] D O Frost,et al. Plasticity of retinofugal projections after partial lesions of the retina in newborn syrian hamsters , 1979, The Journal of comparative neurology.
[11] R. Murphey. Competion and the dynamics of axon arbor growth in the cricket , 1986, The Journal of comparative neurology.
[12] J. Palka. Precision and plasticity in the insect nervous system , 1984, Trends in Neurosciences.
[13] R. Levine,et al. Mechanisms responsible for changes observed in response properties of partially deafferented insect interneurons. , 1980, Journal of neurophysiology.
[14] Robert S. Zucker. Synaptic Plasticity at Crayfish Neuromuscular Junctions , 1977 .
[15] A. I. Shapovalov,et al. Relation between structural and release parameters at the frog sensory‐motor synapse. , 1984, The Journal of physiology.
[16] S. Tieman,et al. Effects of monocular deprivation on geniculocortical synapses in the cat , 1984, The Journal of comparative neurology.
[17] R. K. Murphey,et al. A second cricket cereal sensory system: bristle hairs and the interneurons they activate , 1985, Journal of Comparative Physiology A.
[18] A. Mallart,et al. Dual innervation of end‐plate sites and its consequences for neuromuscular transmission in muscles of adult Xenopus laevis. , 1979, The Journal of physiology.
[19] D. Hubel,et al. Comparison of the effects of unilateral and bilateral eye closure on cortical unit responses in kittens. , 1965, Journal of neurophysiology.
[20] I. Parnas,et al. Strengthening of synaptic contacts of an excitatory axon on elimination of a second excitatory axon innervating the same target , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[21] J J Callec,et al. Further studies on synaptic transmission in insects. II. Relations between sensory information and its synaptic integration at the level of a single giant axon in the cockroach. , 1971, The Journal of experimental biology.
[22] J. Palka,et al. The cerci and abdominal giant fibres of the house cricket, Acheta domesticus. II. Regeneration and effects of chronic deprivation , 1974, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[23] R. Murphey,et al. The structure and development of a somatotopic map in crickets: the cercal afferent projection. , 1981, Developmental biology.
[24] S. Easter,et al. The changing view of neural specificity. , 1985, Science.
[25] D. Hubel,et al. Plasticity of ocular dominance columns in monkey striate cortex. , 1977, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[26] R. K. Murphey,et al. The equilibrium detecting system of the cricket: Physiology and morphology of an identified interneuron , 1983, Journal of comparative physiology.
[27] K. Pearson,et al. Correlation of variability in structure with variability in synaptic connections of an identified interneuron in locusts , 1979, The Journal of comparative neurology.