[HTML][HTML] Calmodulin and Munc13 form a Ca2+ sensor/effector complex that controls short-term synaptic plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - cell.com
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …

Calmodulin and Munc13 form a Ca2+ sensor/effector complex that controls short-term synaptic plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - experts.umn.edu
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …

Calmodulin and Munc13 form a Ca2+ sensor/effector complex that controls short-term synaptic plasticity.

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - europepmc.org
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …

[HTML][HTML] Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term Synaptic Plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - Elsevier
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …

Calmodulin and Munc13 form a Ca²⁺ sensor/effector complex that controls short-term synaptic plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux… - 2004 - publications.goettingen-research …
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …

[引用][C] Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term Synaptic Plasticity

F Varoqueaux, J Spiess, N Brose, JS Rhee, O Jahn… - Cell, 2004 - dialnet.unirioja.es

[PDF][PDF] Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term Synaptic Plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - core.ac.uk
Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term
Synaptic Plasticity Page 1 Cell, Vol. 118, 389–401, August 6, 2004, Copyright ©2004 by Cell …

[引用][C] Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term Synaptic Plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - cir.nii.ac.jp
Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term
Synaptic Plasticity | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲ恁縖サイニィ] 詳細 …

Calmodulin and Munc13 Form a Ca 2+ Sensor/Effector Complex that Controls Short-Term Synaptic Plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux, J Spiess… - Cell, 2004 - infona.pl
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …

Calmodulin and Munc13 form a Ca2+ sensor/effector complex that controls short-term synaptic plasticity

HJ Junge, JS Rhee, O Jahn, F Varoqueaux… - Cell, 2004 - pubmed.ncbi.nlm.nih.gov
The efficacy of synaptic transmission between neurons can be altered transiently during
neuronal network activity. This phenomenon of short-term plasticity is a key determinant of …