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C Andrew Frank

Showing results (21-30 of 34) with videos related to

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Micropublication Biology|June 19, 2023
Precise mapping of one classic and three novel <i>GluRIIA</i> mutants in <i>Drosophila melanogaster</i>Bhagaban Mallik, Douglas J Brusich, Georgette Heyrman, et al.
Plos Biology|September 22, 2025
Mitochondrial Complex I and ROS control neuromuscular function through opposing pre- and postsynaptic mechanismsBhagaban Mallik, Sajad A Bhat, Xinnan Wang, et al.
Neuron|January 14, 2014
Pharmacological correction of gating defects in the voltage-gated Ca(v)2.1 Ca²⁺ channel due to a familial hemiplegic migraine mutationAkira Inagaki, C Andrew Frank, Yuriy M Usachev, et al.
Developmental Biology|June 28, 2005
C. elegans HAM-1 positions the cleavage plane and regulates apoptosis in asymmetric neuroblast divisionsC Andrew Frank, Nancy C Hawkins, Catherine Guenther, et al.
Plos Genetics|January 23, 2026
An ArfGAP-dependent signaling modulates synaptic plasticity via IP3-regulated calcium release from the endoplasmic reticulumBhagaban Mallik, Shikha Kushwaha, Anjali Bisht, et al.
Neuron|November 23, 2006
Mechanisms underlying the rapid induction and sustained expression of synaptic homeostasisC Andrew Frank, Matthew J Kennedy, Carleton P Goold, et al.
Molecular Biology of the Cell|July 24, 2015
The EHD protein Past1 controls postsynaptic membrane elaboration and synaptic functionKate Koles, Emily M Messelaar, Zachary Feiger, et al.
Frontiers in Molecular Neuroscience|March 14, 2017
The <i>Ih</i> Channel Gene Promotes Synaptic Transmission and Coordinated Movement in <i>Drosophila melanogaster</i>Andrew P Hegle, C Andrew Frank, Anthony Berndt, et al.
Developmental Cell|March 25, 2015
Hierarchical microtubule organization controls axon caliber and transport and determines synaptic structure and stabilityRaiko Stephan, Bernd Goellner, Eliza Moreno, et al.
Plos Genetics|August 7, 2018
Drosophila CaV2 channels harboring human migraine mutations cause synapse hyperexcitability that can be suppressed by inhibition of a Ca2+ store release pathwayDouglas J Brusich, Ashlyn M Spring, Thomas D James, et al.
Pageof 4

Showing results (21-30 of 34) with videos related to

Sort By:
Pageof 4
Micropublication Biology|June 19, 2023
Precise mapping of one classic and three novel <i>GluRIIA</i> mutants in <i>Drosophila melanogaster</i>Bhagaban Mallik, Douglas J Brusich, Georgette Heyrman, et al.
Plos Biology|September 22, 2025
Mitochondrial Complex I and ROS control neuromuscular function through opposing pre- and postsynaptic mechanismsBhagaban Mallik, Sajad A Bhat, Xinnan Wang, et al.
Neuron|January 14, 2014
Pharmacological correction of gating defects in the voltage-gated Ca(v)2.1 Ca²⁺ channel due to a familial hemiplegic migraine mutationAkira Inagaki, C Andrew Frank, Yuriy M Usachev, et al.
Developmental Biology|June 28, 2005
C. elegans HAM-1 positions the cleavage plane and regulates apoptosis in asymmetric neuroblast divisionsC Andrew Frank, Nancy C Hawkins, Catherine Guenther, et al.
Plos Genetics|January 23, 2026
An ArfGAP-dependent signaling modulates synaptic plasticity via IP3-regulated calcium release from the endoplasmic reticulumBhagaban Mallik, Shikha Kushwaha, Anjali Bisht, et al.
Neuron|November 23, 2006
Mechanisms underlying the rapid induction and sustained expression of synaptic homeostasisC Andrew Frank, Matthew J Kennedy, Carleton P Goold, et al.
Molecular Biology of the Cell|July 24, 2015
The EHD protein Past1 controls postsynaptic membrane elaboration and synaptic functionKate Koles, Emily M Messelaar, Zachary Feiger, et al.
Frontiers in Molecular Neuroscience|March 14, 2017
The <i>Ih</i> Channel Gene Promotes Synaptic Transmission and Coordinated Movement in <i>Drosophila melanogaster</i>Andrew P Hegle, C Andrew Frank, Anthony Berndt, et al.
Developmental Cell|March 25, 2015
Hierarchical microtubule organization controls axon caliber and transport and determines synaptic structure and stabilityRaiko Stephan, Bernd Goellner, Eliza Moreno, et al.
Plos Genetics|August 7, 2018
Drosophila CaV2 channels harboring human migraine mutations cause synapse hyperexcitability that can be suppressed by inhibition of a Ca2+ store release pathwayDouglas J Brusich, Ashlyn M Spring, Thomas D James, et al.
Pageof 4