Temporal regulation of the expression locus of homeostatic plasticity.
暂无分享,去创建一个
[1] Nathan R. Wilson,et al. Presynaptic Regulation of Quantal Size by the Vesicular Glutamate Transporter VGLUT1 , 2005, The Journal of Neuroscience.
[2] G. Turrigiano,et al. Postsynaptic Expression of Homeostatic Plasticity at Neocortical Synapses , 2005, The Journal of Neuroscience.
[3] Niraj S. Desai,et al. Plasticity in the intrinsic excitability of cortical pyramidal neurons , 1999, Nature Neuroscience.
[4] M. Schäfer,et al. Homeostatic Scaling of Vesicular Glutamate and GABA Transporter Expression in Rat Neocortical Circuits , 2005, The Journal of Neuroscience.
[5] R. Nicoll,et al. Distinct Roles for Ionotropic and Metabotropic Glutamate Receptors in the Maturation of Excitatory Synapses , 2000, The Journal of Neuroscience.
[6] D. Atasoy,et al. Synaptic Vesicle Recycling Adapts to Chronic Changes in Activity , 2006, The Journal of Neuroscience.
[7] R. Tsien,et al. Activity-dependent regulation of dendritic synthesis and trafficking of AMPA receptors , 2004, Nature Neuroscience.
[8] G G Turrigiano,et al. Brain-Derived Neurotrophic Factor Mediates the Activity-Dependent Regulation of Inhibition in Neocortical Cultures , 1997, The Journal of Neuroscience.
[9] V. Murthy,et al. Synaptic gain control and homeostasis , 2003, Current Opinion in Neurobiology.
[10] Niraj S. Desai,et al. Activity-dependent scaling of quantal amplitude in neocortical neurons , 1998, Nature.
[11] Tobias Meyer,et al. Selective Regulation of Neurite Extension and Synapse Formation by the β but not the α Isoform of CaMKII , 2003, Neuron.
[12] V. Murthy,et al. Multiple forms of synaptic plasticity triggered by selective suppression of activity in individual neurons , 2002, Nature.
[13] R. Mohrmann,et al. Developmental maturation of synaptic vesicle cycling as a distinctive feature of central glutamatergic synapses , 2003, Neuroscience.
[14] R. Huganir,et al. Activity-Dependent Modulation of Synaptic AMPA Receptor Accumulation , 1998, Neuron.
[15] R. Tsien,et al. alpha- and betaCaMKII. Inverse regulation by neuronal activity and opposing effects on synaptic strength. , 2002, Neuron.
[16] D. Benson,et al. Stages of Synapse Development Defined by Dependence on F-Actin , 2001, The Journal of Neuroscience.
[17] G. Davis,et al. Maintaining the stability of neural function: a homeostatic hypothesis. , 2001, Annual review of physiology.
[18] H. Markram,et al. Differential signaling via the same axon of neocortical pyramidal neurons. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[19] P. De Camilli,et al. Chronic Blockade of Glutamate Receptors Enhances Presynaptic Release and Downregulates the Interaction between Synaptophysin-Synaptobrevin–Vesicle-Associated Membrane Protein 2 , 2001, The Journal of Neuroscience.
[20] S. Nelson,et al. Homeostatic plasticity in the developing nervous system , 2004, Nature Reviews Neuroscience.
[21] T. Schikorski,et al. Inactivity Produces Increases in Neurotransmitter Release and Synapse Size , 2001, Neuron.
[22] R. Malenka,et al. Synaptic scaling mediated by glial TNF-α , 2006, Nature.
[23] G. Turrigiano. Homeostatic plasticity in neuronal networks: the more things change, the more they stay the same , 1999, Trends in Neurosciences.
[24] J. Kaplan,et al. Clathrin-mediated endocytosis is required for compensatory regulation of GLR-1 glutamate receptors after activity blockade. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[25] M. V. Rossum,et al. Activity Coregulates Quantal AMPA and NMDA Currents at Neocortical Synapses , 2000, Neuron.
[26] S. Nelson,et al. Selective reconfiguration of layer 4 visual cortical circuitry by visual deprivation , 2004, Nature Neuroscience.
[27] S. Cull-Candy,et al. Activity-Dependent Change in AMPA Receptor Properties in Cerebellar Stellate Cells , 2002, The Journal of Neuroscience.
[28] Niraj S. Desai,et al. Critical periods for experience-dependent synaptic scaling in visual cortex , 2002, Nature Neuroscience.
[29] R. Nicoll,et al. Activity differentially regulates the surface expression of synaptic AMPA and NMDA glutamate receptors. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[30] L. Abbott,et al. Synaptic Depression and Cortical Gain Control , 1997, Science.
[31] G. Davis,et al. Homeostatic Control of Presynaptic Release Is Triggered by Postsynaptic Membrane Depolarization , 2001, Neuron.
[32] R. Tsien,et al. Adaptation to Synaptic Inactivity in Hippocampal Neurons , 2005, Neuron.
[33] Richard L. Huganir,et al. Regulation of morphological postsynaptic silent synapses in developing hippocampal neurons , 1999, Nature Neuroscience.
[34] Stuart G. Cull-Candy,et al. Synaptic activity at calcium-permeable AMPA receptors induces a switch in receptor subtype , 2000, Nature.