Hormonal Regulation of Neural and Behavioral Plasticity in Insects
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[1] N. Strausfeld,et al. Development of laminar organization in the mushroom bodies of the cockroach: Kenyon cell proliferation, outgrowth, and maturation , 2001, The Journal of comparative neurology.
[2] E. Wood,et al. Habituation of the Proleg Withdrawal Reflex in Manduca sexta Does Not Involve Changes in Motoneuron Properties or Depression at the Sensorimotor Synapse , 2001, Neurobiology of Learning and Memory.
[3] J. Weeks,et al. Role of caspases and mitochondria in the steroid-induced programmed cell death of a motoneuron during metamorphosis. , 2001, Developmental biology.
[4] G. Jones,et al. Considerations on the structural evidence of a ligand-binding function of ultraspiracle, an insect homolog of vertebrate RXR. , 2000, Insect biochemistry and molecular biology.
[5] L. Gilbert,et al. The juvenile hormones: historical facts and speculations on future research directions. , 2000, Insect biochemistry and molecular biology.
[6] J. C. Clemens,et al. Use of double-stranded RNA interference in Drosophila cell lines to dissect signal transduction pathways. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[7] C. Consoulas. Remodeling of the leg sensory system during metamorphosis of the hawkmoth, Manduca sexta , 2000, The Journal of comparative neurology.
[8] R. Levine,et al. Comparison of identified leg motoneuron structure and function between larval and adult Manduca sexta , 2000, Journal of Comparative Physiology A.
[9] M. Krasnow,et al. The Drosophila genome sequence: implications for biology and medicine. , 2000, Science.
[10] Stephen M. Mount,et al. The genome sequence of Drosophila melanogaster. , 2000, Science.
[11] C. Strambi,et al. Dual effect of ecdysone on adult cricket mushroom bodies , 2000, The European journal of neuroscience.
[12] R. Menzel,et al. Reversible Downregulation of Protein Kinase A during Olfactory Learning Using Antisense Technique Impairs Long-Term Memory Formation in the Honeybee, Apis mellifera , 1999, The Journal of Neuroscience.
[13] G. Robinson,et al. Larval and pupal development of the mushroom bodies in the honey bee, Apis mellifera , 1999, The Journal of comparative neurology.
[14] J. Truman,et al. The hormonal coordination of behavior and physiology at adult ecdysis in Drosophila melanogaster. , 1999, The Journal of experimental biology.
[15] J. Abrams. An emerging blueprint for apoptosis in Drosophila. , 1999, Trends in cell biology.
[16] J. Truman,et al. The origins of insect metamorphosis , 1999, Nature.
[17] B. L. Hall. Nuclear Receptors and the Hormonal Regulation of Drosophila Metamorphosis , 1999 .
[18] V. Laudet,et al. Characterization of EcR and RXR Homologues in the Ixodid Tick, Amblyomma americanum (L.) , 1999 .
[19] A. Chung,et al. CHARACTERIZATION OF ECR AND RXR GENE HOMOLOGS AND RECEPTOR EXPRESSION DURING THE MOLT CYCLE IN THE CRAB, UCA PUGILATOR , 1999 .
[20] N. Strausfeld,et al. Representation of the calyces in the medial and vertical lobes of cockroach mushroom bodies , 1999, The Journal of comparative neurology.
[21] J. Weeks. Steroid Hormones, Dendritic Remodeling and Neuronal Death: Insights from Insect Metamorphosis , 1999, Brain, Behavior and Evolution.
[22] L. Gilbert,et al. Can the insect nervous system synthesize ecdysteroids? , 1999, Insect biochemistry and molecular biology.
[23] B. McEwen,et al. Estrogen actions in the central nervous system. , 1999, Endocrine reviews.
[24] N. Patel,et al. Analysis of molecular marker expression reveals neuronal homology in distantly related arthropods. , 1999, Development.
[25] D. Shepherd,et al. Persistent larval sensory neurons in adult Drosophila melanogaster. , 1999, Journal of neurobiology.
[26] K. Umesono,et al. A Unified Nomenclature System for the Nuclear Receptor Superfamily , 1999, Cell.
[27] J. Weeks,et al. Respecified larval proleg and body wall muscles circulate hemolymph in developing wings of Manduca sexta pupae. , 1999, The Journal of experimental biology.
[28] Craig T. Woodard,et al. The Drosophila beta FTZ-F1 orphan nuclear receptor provides competence for stage-specific responses to the steroid hormone ecdysone. , 1999, Molecular cell.
[29] R. Cooper,et al. Depression of synaptic efficacy in high- and low-output Drosophila neuromuscular junctions by the molting hormone (20-HE). , 1999, Journal of neurophysiology.
[30] M. Buszczak,et al. Drosophila metamorphosis: The only way is USP? , 1998, Current Biology.
[31] C. Thummel,et al. The RXR homolog ultraspiracle is an essential component of the Drosophila ecdysone receptor. , 1998, Development.
[32] R. Stocker,et al. Drosophila P[Gal4] lines reveal that motor neurons involved in feeding persist through metamorphosis. , 1998, Journal of neurobiology.
[33] R. Levine,et al. Ecdysteroid control of ionic current development in Manduca sexta motoneurons. , 1998, Journal of neurobiology.
[34] R. Levine,et al. The Steroid Hormone 20-Hydroxyecdysone Enhances Neurite Growth ofDrosophila Mushroom Body Neurons Isolated during Metamorphosis , 1998, The Journal of Neuroscience.
[35] J. Truman,et al. Distribution of GABA‐like immunoreactive neurons in insects suggests lineage homology , 1998, The Journal of comparative neurology.
[36] D. Sandstrom,et al. Segment-specific retention of a larval neuromuscular system and its role in a new, rhythmic, pupal motor pattern in Manduca sexta , 1998, Journal of Comparative Physiology A.
[37] G. R. Wyatt,et al. Cloning and characterization of an ecdysone receptor cDNA from Locusta migratoria , 1998, Molecular and Cellular Endocrinology.
[38] R. Levine,et al. Presynaptic Function during Muscle Remodeling in Insect Metamorphosis , 1998, The Journal of Neuroscience.
[39] J. Weeks,et al. Programmed cell death of an identified motoneuron in vitro: temporal requirements for steroid exposure and protein synthesis. , 1998, Journal of neurobiology.
[40] J. Truman,et al. Drosophila EcR-B ecdysone receptor isoforms are required for larval molting and for neuron remodeling during metamorphosis. , 1998, Development.
[41] J. Truman,et al. Ecdysteroids govern two phases of eye development during metamorphosis of the moth, Manduca sexta. , 1998, Development.
[42] J. Armstrong,et al. Metamorphosis of the mushroom bodies; large-scale rearrangements of the neural substrates for associative learning and memory in Drosophila. , 1998, Learning & memory.
[43] R. Cooper,et al. Depression of synaptic efficacy at intermolt in crayfish neuromuscular junctions by 20-hydroxyecdysone, a molting hormone. , 1998, Journal of neurophysiology.
[44] J. Truman,et al. Steroid and Neuronal Regulation of Ecdysone Receptor Expression during Metamorphosis of Muscle in the Moth, Manduca sexta , 1998, The Journal of Neuroscience.
[45] A. Chung,et al. Tissue-specific patterns and steady-state concentrations of ecdysteroid receptor and retinoid-X-receptor mRNA during the molt cycle of the fiddler crab, Uca pugilator. , 1998, General and comparative endocrinology.
[46] J. Truman,et al. Ecdysteroid control of cell proliferation during optic lobe neurogenesis in the moth Manduca sexta. , 1998, Development.
[47] W. Talbot,et al. Drosophila Ecdysone Receptor Mutations Reveal Functional Differences among Receptor Isoforms , 1997, Cell.
[48] J. T. Watson,et al. Leg kinematics and muscle activity during treadmill running in the cockroach, Blaberus discoidalis : I. Slow running , 1997, Journal of Comparative Physiology A.
[49] M. Winston,et al. Insect societies and the molecular biology of social behavior , 1997, BioEssays : news and reviews in molecular, cellular and developmental biology.
[50] D. Mangelsdorf,et al. Isolation of a functional ecdysteroid receptor homologue from the ixodid tick Amblyomma americanum (L.). , 1997, Insect biochemistry and molecular biology.
[51] James W Truman,et al. Disruption of a Behavioral Sequence by Targeted Death of Peptidergic Neurons in Drosophila , 1997, Neuron.
[52] R. Levine,et al. Multisegmental motor activity in the segmentally restricted gin trap behavior in Manduca sexta pupae , 1997, Journal of Comparative Physiology A.
[53] R. Levine,et al. Segmentally distributed metamorphic changes in neural circuits controlling abdominal bending in the hawkmoth Manduca sexta , 1997, Journal of Comparative Physiology A.
[54] J. Weeks,et al. Steroid hormones act directly to trigger segment-specific programmed cell death of identified motoneurons in vitro. , 1997, Developmental biology.
[55] S. Fahrbach. The Regulation of Neuronal Death during Insect Metamorphosis , 1997 .
[56] J. Weeks,et al. Target muscles and sensory afferents do not influence steroid-regulated, segment-specific death of identified motoneurons in Manduca sexta. , 1996, Journal of neurobiology.
[57] Gwen A. Jacobs,et al. Analysis of Information Processing in the Nervous System Using a Database of Identified Neurons , 1996, NeuroImage.
[58] L. Riddiford,et al. Developmental profiles and ecdysteroid regulation of the mRNAs for two ecdysone receptor isoforms in the epidermis and wings of the tobacco hornworm, Manduca sexta. , 1996, Developmental biology.
[59] R. Anderson,et al. Leg proprioceptors of the tobacco hornworm, Manduca sexta: Organization of central projections at larval and adult stages , 1996, Microscopy research and technique.
[60] J. Fullard,et al. Neurometamorphosis of the ear in the gypsy moth, Lymantria dispar, and its homologue in the earless forest tent caterpillar moth, Malacosoma disstria. , 1996, Journal of neurobiology.
[61] D. O’brochta,et al. Transposable elements and gene transformation in non-drosophilid insects. , 1996, Insect biochemistry and molecular biology.
[62] R. Levine,et al. Remodeling of the peripheral processes and presynaptic terminals of leg motoneurons during metamorphosis of the hawkmoth, Manduca sexta , 1996, The Journal of comparative neurology.
[63] D. Shepherd,et al. Central projections of persistent larval sensory neurons prefigure adult sensory pathways in the CNS of Drosophila. , 1996, Development.
[64] C. Thummel,et al. Flies on steroids--Drosophila metamorphosis and the mechanisms of steroid hormone action. , 1996, Trends in genetics : TIG.
[65] C. Strambi,et al. Neurogenesis in adult insect mushroom bodies , 1996, The Journal of comparative neurology.
[66] H. Keshishian,et al. Muscle organizers in Drosophila: the role of persistent larval fibers in adult flight muscle development. , 1996, Developmental biology.
[67] D. Gelman,et al. Steroid hormone fluctuations regulate ganglionic fusion during metamorphosis of the moth Manduca sexta , 1996 .
[68] R. Levine,et al. Locomotory behavior in the hawkmoth Manduca sexta: kinematic and electromyographic analyses of the thoracic legs in larvae and adults. , 1996, The Journal of experimental biology.
[69] J. Truman,et al. Steroid control of muscle remodeling during metamorphosis in Manduca sexta. , 1996, Journal of neurobiology.
[70] S. Monsma,et al. Genesis of the adult retina and outer optic lobes of the moth, Manduca sexta. I. Patterns of proliferation and cell death , 1996, The Journal of comparative neurology.
[71] R. Elson. Neuroanatomy of a crayfish thoracic ganglion: Sensory and motor roots of the walking‐leg nerves and possible homologies with insects , 1996, The Journal of comparative neurology.
[72] R. Levine,et al. Current bibliography on invertebrate neuroscience , 1996, Invertebrate Neuroscience.
[73] R. Evans,et al. The RXR heterodimers and orphan receptors , 1995, Cell.
[74] R. Levine,et al. Steroid hormone effects on neurons subserving behavior , 1995, Current Opinion in Neurobiology.
[75] R. Levine,et al. Remodelling of Neuromuscular Systems During Insect Metamorphosis , 1995 .
[76] L. Tolbert,et al. 20-Hydroxyecdysone stimulates proliferation of glial cells in the developing brain of the moth Manduca sexta. , 1995, Journal of neurobiology.
[77] G. Robinson,et al. Neurogenesis is absent in the brains of adult honey bees and does not explain behavioral neuroplasticity , 1995, Neuroscience Letters.
[78] S. Omholt,et al. Successful production of chimeric honeybee larvae , 1995 .
[79] W. Kristan,et al. Using reflexive behaviors of the medicinal leech to study information processing. , 1995, Journal of neurobiology.
[80] L. Riddiford,et al. Cloning of an ecdysone receptor homolog from Manduca sexta and the developmental profile of its mRNA in wings. , 1995, Insect biochemistry and molecular biology.
[81] F. Engelmann. The juvenile hormone receptor of the cockroach Leucophaea maderae. , 1995, Insect biochemistry and molecular biology.
[82] LC Streichert,et al. Decreased monosynaptic sensory input to an identified motoneuron is associated with steroid-mediated dendritic regression during metamorphosis in Manduca sexta , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[83] R. Lockshin,et al. Metabolic events during programmed cell death in insect labial glands. , 1994, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[84] H. Steller,et al. Programmed cell death in Drosophila. , 1994, Neuron.
[85] S. Carroll,et al. The role of the Distal-less gene in the development and evolution of insect limbs , 1994, Current Biology.
[86] H. Jäckle,et al. Drosophila mode of metamerization in the embryogenesis of the lepidopteran insect Manduca sexta. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[87] J. Weeks,et al. Influence of interganglionic interactions on steroid-mediated dendritic reorganization and death of proleg motor neurons during metamorphosis in Manduca sexta. , 1994, Journal of neurobiology.
[88] C. Strambi,et al. Neurogenesis in an adult insect brain and its hormonal control , 1994, Nature.
[89] M. Moulins,et al. Dynamic construction of a neural network from multiple pattern generators in the lobster stomatogastric nervous system , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[90] W. Talbot,et al. Programmed cell death in the Drosophila CNS is ecdysone-regulated and coupled with a specific ecdysone receptor isoform. , 1993, Development.
[91] H. Wolf,et al. The inhibitory motoneurons of crayfish thoracic limbs: Identification, structures, and homology with insect common inhibitors , 1993, The Journal of comparative neurology.
[92] J. Weeks,et al. Organization of the larval pre-ecdysis motor pattern in the tobacco hornworm, Manduca sexta , 1993, Journal of Comparative Physiology A.
[93] P. K. Loi,et al. Hormonal control of transmitter plasticity in insect peptidergic neurons. I. Steroid regulation of the decline in cardioacceleratory peptide 2 (CAP2) expression. , 1993, The Journal of experimental biology.
[94] N. Tublitz,et al. Hormonal control of transmitter plasticity in insect peptidergic neurons. II. Steroid control of the up-regulation of bursicon expression. , 1993, The Journal of experimental biology.
[95] W. Talbot,et al. Drosophila tissues with different metamorphic responses to ecdysone express different ecdysone receptor isoforms , 1993, Cell.
[96] J. Truman,et al. Isolation, characterization and expression of the eclosion hormone gene of Drosophila melanogaster. , 1993, European journal of biochemistry.
[97] L. Schwartz,et al. Do all programmed cell deaths occur via apoptosis? , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[98] R. Levine,et al. Effects of the steroid hormone, 20-hydroxyecdysone, on the growth of neurites by identified insect motoneurons in vitro. , 1992, Developmental biology.
[99] J. Truman. Developmental neuroethology of insect metamorphosis. , 1992, Journal of neurobiology.
[100] L. Schwartz. Insect muscle as a model for programmed cell death. , 1992, Journal of neurobiology.
[101] M. Mckeown,et al. Drosophila ultraspiracle modulates ecdysone receptor function via heterodimer formation , 1992, Cell.
[102] R. Levine,et al. Intersegmental interneurons serving larval and pupal mechanosensory reflexes in the moth Manduca sexta , 1992, Journal of Comparative Physiology A.
[103] S. Fahrbach. Developmental regulation of ecdysteroid receptors in the nervous system of Manduca sexta. , 1992, The Journal of experimental zoology.
[104] W. Talbot,et al. The drosophila EcR gene encodes an ecdysone receptor, a new member of the steroid receptor superfamily , 1991, Cell.
[105] H. Bidmon,et al. Ecdysteroid receptors in the central nervous system of Manduca sexta: Their changes in distribution and quantity during larval‐pupal development , 1991, The Journal of comparative neurology.
[106] J. Truman,et al. The regulation of transmitter expression in postembryonic lineages in the moth Manduca sexta. I. Transmitter identification and developmental acquisition of expression , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[107] D. Sandstrom,et al. Reidentification of larval interneurons in the pupal stage of the tobacco hornworm, Manduca sexta , 1991, The Journal of comparative neurology.
[108] H. Reichert,et al. Homologous patterns in the embryonic development of the peripheral nervous system in the grasshopper Schistocerca gregaria and the fly Drosophila melanogaster. , 1991, Development.
[109] L. Riddiford,et al. Isolation and embryonic expression of an abdominal-A-like gene from the lepidopteran, Manduca sexta. , 1991, Development.
[110] J. Weeks,et al. Developmental attenuation of the pre-ecdysis motor pattern in the tobacco hornworm, Manduca sexta , 1991, Journal of Comparative Physiology A.
[111] O. Breidbach. Reorganization of persistent motoneurons in a metamorphosing insect (Tenebrio molitor L., coleoptera) , 1990, The Journal of comparative neurology.
[112] O. Breidbach. Constant topological organization of the coleopteran metamorphosing nervous system: analysis of persistent elements in the nervous system of Tenebrio molitor. , 1990, Journal of neurobiology.
[113] J. Truman,et al. Metamorphosis of the central nervous system of Drosophila. , 1990, Journal of neurobiology.
[114] R. Levine,et al. Hormonally mediated changes in simple reflex circuits during metamorphosis in Manduca. , 1990, Journal of neurobiology.
[115] L. Schwartz,et al. Gene activation is required for developmentally programmed cell death. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[116] H. Bidmon,et al. The ecdysteroid receptor , 1990 .
[117] G. Jacobs,et al. Postsynaptic changes at a sensory-to-motoneuron synapse contribute to the developmental loss of a reflex behavior during insect metamorphosis , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[118] Laura M. Griffin,et al. Sensory organs of the thoracic legs of the moth Manduca sexta , 1990, Cell and Tissue Research.
[119] K. Kimura,et al. Postmetamorphic cell death in the nervous and muscular systems of Drosophila melanogaster , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[120] N. Tublitz,et al. Postembryonic alteration of transmitter phenotype in individually identified peptidergic neurons , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[121] J. Truman,et al. Autoradiographic identification of ecdysteroid-binding cells in the nervous system of the moth Manduca sexta. , 1989, Journal of neurobiology.
[122] M. Adams,et al. Functional Consequences of Peptide Cotransmission in Arthropod Muscle , 1989 .
[123] R. Levine,et al. Development of the gin trap reflex inManduca sexta: a comparison of larval and pupal motor responses , 1989, Journal of Comparative Physiology A.
[124] J. Weeks,et al. Respecification of larval proleg motoneurons during metamorphosis of the tobacco hornworm, Manduca sexta: segmental dependence and hormonal regulation. , 1989, Journal of neurobiology.
[125] R. Levine,et al. The use of hormonally induced mosaics to study alterations in the synaptic connections made by persistent sensory neurons during insect metamorphosis. , 1989, Journal of neurobiology.
[126] B. Trimmer,et al. Effects of Nicotinic and Muscarinic Agents on an Identified Motoneurone and its Direct Afferent Inputs in Larval Manduca Sexta , 1989 .
[127] F. Delcomyn,et al. Walking in the American cockroach: the timing of motor activity in the legs during straight walking , 1989, Biological Cybernetics.
[128] RB Levine. Expansion of the central arborizations of persistent sensory neurons during insect metamorphosis: the role of the steroid hormone, 20- hydroxyecdysone , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[129] R. Levine,et al. Neural control of leg movements in a metamorphic insect: Persistence of larval leg motor neurons to innervate the adult legs of Manduca sexta , 1988, The Journal of comparative neurology.
[130] J. Weeks,et al. Somatotopic mapping of sensory neurons innervating mechanosensory hairs on the larval prolegs of Manduca sexta , 1988, The Journal of comparative neurology.
[131] R. Levine,et al. Neural control of leg movements in a metamorphic insect: Sensory and motor elements of the larval thoracic legs in Manduca sexta , 1988, The Journal of comparative neurology.
[132] J. Truman,et al. Hormonal regulation of the shape of identified motoneurons in the moth Manduca sexta , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[133] J. Weeks. Time course of hormonal independence for developmental events in neurons and other cell types during insect metamorphosis. , 1987, Developmental biology.
[134] Gwen A. Jacobs,et al. A reflex behavior mediated by monosynaptic connections between hair afferents and motoneurons in the larval tobacco hornworm,Manduca sexta , 1987, Journal of Comparative Physiology A.
[135] L. Riddiford,et al. Cuticular mechanics during larval development of the tobacco hornworm, Manduca sexta. , 1987, The Journal of experimental biology.
[136] J. Truman,et al. Postembryonic neurogenesis in the CNS of the tobacco hornworm, Manduca sexta. I. Neuroblast arrays and the fate of their progeny during metamorphosis , 1987, The Journal of comparative neurology.
[137] J. Truman,et al. Metamorphosis of the cerebral neuroendocrine system in the moth Manduca sexta , 1986, The Journal of comparative neurology.
[138] L. Schmued,et al. Fluoro-gold: a new fluorescent retrograde axonal tracer with numerous unique properties , 1986, Brain Research.
[139] J. Truman,et al. Steroid control of neuron and muscle development during the metamorphosis of an insect. , 1986, Journal of neurobiology.
[140] C. Bate,et al. Endocrine regulation of the form and function of axonal arbors during insect metamorphosis , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[141] J. Witten,et al. Peptidergic innervation of insect skeletal muscle: Immunochemical observations , 1985, The Journal of comparative neurology.
[142] J. Truman,et al. Dendritic reorganization of abdominal motoneurons during metamorphosis of the moth, Manduca sexta , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[143] J. Truman,et al. Independent steroid control of the fates of motoneurons and their muscles during insect metamorphosis , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[144] J. Truman,et al. Steroid-dependent survival of identifiable neurons in cultured ganglia of the moth Manduca sexta. , 1985, Science.
[145] J. Truman,et al. The physiology of wandering behaviour in Manduca sexta. II. The endocrine control of wandering behaviour. , 1985, The Journal of experimental biology.
[146] R. K. Murphey,et al. A second cricket cereal sensory system: bristle hairs and the interneurons they activate , 1985, Journal of Comparative Physiology A.
[147] R. Levine. Changes in neuronal circuits during insect metamorphosis. , 1984, The Journal of experimental biology.
[148] J. Truman,et al. The physiology of wandering behaviour in Manduca sexta. I. Temporal organization and the influence of the internal and external environments. , 1984, The Journal of experimental biology.
[149] J. Truman,et al. Steroid regulation of neuronal death in the moth nervous system , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[150] J. Truman,et al. Hormonal control of rates of metamorphic development in the tobacco hornworm Manduca sexta. , 1983, Developmental biology.
[151] M. O'Shea,et al. Peptide cotransmitter at a neuromuscular junction. , 1983, Science.
[152] J. Hildebrand,et al. Development of synapses in the antennal lobes of the moth Manduca sexta during metamorphosis , 1983, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[153] P. A. Getting. Mechanisms of pattern generation underlying swimming in Tritonia. II. Network reconstruction. , 1983, Journal of neurophysiology.
[154] K. Pearson,et al. Interneurons in the flight system of the locust: Distribution, connections, and resetting properties , 1983, The Journal of comparative neurology.
[155] G. Rubin,et al. Genetic transformation of Drosophila with transposable element vectors. , 1982, Science.
[156] L. Gilbert,et al. Ecdysteroid titer during larval--pupal--adult development of the tobacco hornworm, Manduca sexta. , 1981, General and comparative endocrinology.
[157] James S. Buckner,et al. LIFE CYCLE OF LABORATORY-REARED TOBACCO HORNWORMS, MANDUCA SEXTA, A STUDY OF DEVELOPMENT AND BEHAVIOR, USING TIME-LAPSE CINEMATOGRAPHY , 1980 .
[158] J. Altman,et al. Postembryonic development of an insect sensory system: ingrowth of axons from hindwing sense organs in Locusta migratoria , 1978, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[159] H. Anderson. Postembryonic development of the visual system of the locust, Schistocerca gregaria. I. Patterns of growth and developmental interactions in the retina and optic lobe. , 1978, Journal of embryology and experimental morphology.
[160] J. Camhi,et al. Metamorphosis of flight motor neurons in the mothManduca sexta , 1976, Journal of comparative physiology.
[161] R. A. Bell,et al. Techniques for Rearing Laboratory Colonies of Tobacco Hornworms and Pink Bollworms , 1976 .
[162] G. R. Wyatt,et al. Activation of vitellogenin synthesis in the mosquito Aedes aegypti by ecdysone. , 1974, Journal of insect physiology.
[163] C. Bate. The Mechanism of the Pupal Gin Trap , 1973 .
[164] C. Bate. The Mechanism of the Pupal Gin Trap: I. Segmental Gradients and the Connexions of the Triggering Sensilla , 1973 .
[165] J. L. Eaton. Morphology of the Head and Thorax of the Adult Tobacco Hornworm, Manduca sexta (Lepidoptera: Sphingidae). 1. Skeleton and Muscles , 1971 .
[166] J. Edwards,et al. Postembryonic brain development in the monarch butterfly,Danaus plexippus plexippus L. , 1970, Wilhelm Roux' Archiv für Entwicklungsmechanik der Organismen.
[167] J. Edwards,et al. Postembryonic brain development in the monarch butterfly,Danaus plexippus plexippus, L. , 1969, Wilhelm Roux' Archiv für Entwicklungsmechanik der Organismen.
[168] J. Edwards,et al. Postembryonic brain development in the monarch butterfly,Danaus plexippus plexippus L. , 1969, Wilhelm Roux' Archiv für Entwicklungsmechanik der Organismen.
[169] C. Sweeley,et al. The structure of juvenile hormone , 1967 .
[170] R. Lockshin,et al. Programmed cell death. IV. The influence of drugs on the breakdown of the intersegmental muscles of silkmoths. , 1965, Journal of insect physiology.
[171] P. Karlson,et al. Induktion von puff-veränderungen in den speicheldrüsenchromosomen von Chironomus t̆entans durch Ecdyson , 1960 .
[172] C. Kim. The differentiation centre inducing the development from larval to adult leg in Pieris brassicae (Lepidoptera). , 1959, Journal of embryology and experimental morphology.
[173] A. Madden. The External Morphology of the Adult Tobacco Hornworm (Lepidoptera, Sphingidae) , 1944 .
[174] A. Peterson. Anatomy of the Tomato-Worm Larva, Protoparce Carolina. , 1912 .
[175] G. Pollack,et al. The development of the sensory organs of the legs in the blowfly,Phormia regina , 2004, Cell and Tissue Research.
[176] H. Bidmon,et al. Ecdysteroid binding sites localized by autoradiography in the central nervous system of precommitment fifth-stadium Manduca sexta larvae , 2004, Cell and Tissue Research.
[177] R. Levine,et al. The structure, function and metamorphic reorganization of somatotopically projecting sensory neurons inManduca sexta larvae , 2004, Journal of Comparative Physiology A.
[178] R. Levine,et al. Steroid hormone enhancement of neurite outgrowth in identified insect motor neurons involves specific effects on growth cone form and function. , 1999, Journal of neurobiology.
[179] E. Wood,et al. Neural mechanisms of behavioral plasticity: metamorphosis and learning in Manduca sexta. , 1997, Brain, behavior and evolution.
[180] M. Ashburner,et al. 3 – Ecdysone-Regulated Chromosome Puffing in Drosophila melanogaster , 1996 .
[181] J. Truman,et al. Developmental plasticity of neuropeptide expression in motoneurons of the moth, Manduca sexta: steroid hormone regulation. , 1996, Journal of neurobiology.
[182] R. Levine,et al. Cell culture approaches to understanding the actions of steroid hormones on the insect nervous system. , 1996, Developmental neuroscience.
[183] F. Sehnal,et al. 1 – Evolution of Insect Metamorphosis , 1996 .
[184] W. Talbot,et al. Ecdysone receptor expression in the CNS correlates with stage-specific responses to ecdysteroids during Drosophila and Manduca development. , 1994, Development.
[185] R. Levine,et al. Dendritic reorganization of an identified neuron during metamorphosis of the moth Manduca sexta: the influence of interactions with the periphery. , 1993, Journal of neurobiology.
[186] J. Weeks,et al. Hormonal regulation and segmental specificity of motoneuron phenotype during metamorphosis of the tobacco hornworm, Manduca sexta. , 1992, Developmental biology.
[187] A. Raikhel,et al. Accumulation of yolk proteins in insect oocytes. , 1992, Annual review of entomology.
[188] Y. Hotta,et al. Proliferation pattern of postembryonic neuroblasts in the brain of Drosophila melanogaster. , 1992, Developmental biology.
[189] J. Kukalová-Peck. Fossil history and the evolution of Hexapod structures , 1991 .
[190] L. Gilbert,et al. Ecdysteroid synthesis and molting by the tobacco hornworm, Manduca sexta, in the absence of prothoracic glands. , 1991, Archives of insect biochemistry and physiology.
[191] R. Levine,et al. Postembryonic neuronal plasticity and its hormonal control during insect metamorphosis. , 1990, Annual review of neuroscience.
[192] P A Getting,et al. Emerging principles governing the operation of neural networks. , 1989, Annual review of neuroscience.
[193] C. Yin,et al. Precocene II treatment inhibits terminal oöcyte development but not vitellogenin synthesis and release in the black blowfly, Phormia regina Meigen , 1989 .
[194] Andrew S. French,et al. Transduction Mechanisms of Mechanosensilla , 1988 .
[195] J. Truman. Hormonal Approaches for Studying Nervous System Development in Insects , 1988 .
[196] G. A. Kerkut,et al. Comprehensive insect physiology, biochemistry, and pharmacology , 1985 .
[197] L. Riddiford. 2 – Hormone Action at the Cellular Level , 1985 .
[198] S. Nilsson. The Alimentary Canal , 1983 .
[199] H. Ishizaki,et al. The role of ecdysteroids in the determination of gut-purge timing in the saturniid, Samia cynthia ricini , 1982 .
[200] J. Giebultowicz,et al. Cocoon spinning behaviour in Ephestia kuehniella; Correlation with endocrine events , 1980 .
[201] L. Riddiford. Insect endocrinology: action of hormones at the cellular level. , 1980, Annual review of physiology.
[202] L. Roth,et al. The reproduction of cockroaches , 1954 .