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Richard D Fetter

Showing results (1-10 of 73) with videos related to

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Current Biology : CB|May 27, 2005
Presynaptic spectrin is essential for synapse stabilizationJan Pielage, Richard D Fetter, Graeme W Davis
The Journal of Cell Biology|November 8, 2006
A postsynaptic spectrin scaffold defines active zone size, spacing, and efficacy at the Drosophila neuromuscular junctionJan Pielage, Richard D Fetter, Graeme W Davis
Current Biology : CB|March 22, 2008
Clathrin dependence of synaptic-vesicle formation at the Drosophila neuromuscular junctionHeather Heerssen, Richard D Fetter, Graeme W Davis
Nature|June 19, 2021
Author Correction: Assembly of synaptic active zones requires phase separation of scaffold moleculesNathan A McDonald, Richard D Fetter, Kang Shen
Cell|March 24, 2004
Synaptic specificity is generated by the synaptic guidepost protein SYG-2 and its receptor, SYG-1Kang Shen, Richard D Fetter, Cornelia I Bargmann
Nature|November 19, 2020
Assembly of synaptic active zones requires phase separation of scaffold moleculesNathan A McDonald, Richard D Fetter, Kang Shen
Neuron|April 8, 2006
Discrete residues in the c(2)b domain of synaptotagmin I independently specify endocytic rate and synaptic vesicle sizeKira E Poskanzer, Richard D Fetter, Graeme W Davis
Plos Biology|September 23, 2009
Negative regulation of active zone assembly by a newly identified SR protein kinaseErvin L Johnson, Richard D Fetter, Graeme W Davis
Neuron|September 10, 2022
Activation and expansion of presynaptic signaling foci drives presynaptic homeostatic plasticityBrian O Orr, Richard D Fetter, Graeme W Davis
Nature|September 28, 2017
Retrograde semaphorin-plexin signalling drives homeostatic synaptic plasticityBrian O Orr, Richard D Fetter, Graeme W Davis
Pageof 8

Showing results (1-10 of 73) with videos related to

Sort By:
Pageof 8
Current Biology : CB|May 27, 2005
Presynaptic spectrin is essential for synapse stabilizationJan Pielage, Richard D Fetter, Graeme W Davis
The Journal of Cell Biology|November 8, 2006
A postsynaptic spectrin scaffold defines active zone size, spacing, and efficacy at the Drosophila neuromuscular junctionJan Pielage, Richard D Fetter, Graeme W Davis
Current Biology : CB|March 22, 2008
Clathrin dependence of synaptic-vesicle formation at the Drosophila neuromuscular junctionHeather Heerssen, Richard D Fetter, Graeme W Davis
Nature|June 19, 2021
Author Correction: Assembly of synaptic active zones requires phase separation of scaffold moleculesNathan A McDonald, Richard D Fetter, Kang Shen
Cell|March 24, 2004
Synaptic specificity is generated by the synaptic guidepost protein SYG-2 and its receptor, SYG-1Kang Shen, Richard D Fetter, Cornelia I Bargmann
Nature|November 19, 2020
Assembly of synaptic active zones requires phase separation of scaffold moleculesNathan A McDonald, Richard D Fetter, Kang Shen
Neuron|April 8, 2006
Discrete residues in the c(2)b domain of synaptotagmin I independently specify endocytic rate and synaptic vesicle sizeKira E Poskanzer, Richard D Fetter, Graeme W Davis
Plos Biology|September 23, 2009
Negative regulation of active zone assembly by a newly identified SR protein kinaseErvin L Johnson, Richard D Fetter, Graeme W Davis
Neuron|September 10, 2022
Activation and expansion of presynaptic signaling foci drives presynaptic homeostatic plasticityBrian O Orr, Richard D Fetter, Graeme W Davis
Nature|September 28, 2017
Retrograde semaphorin-plexin signalling drives homeostatic synaptic plasticityBrian O Orr, Richard D Fetter, Graeme W Davis
Pageof 8