Deletion of CPEB3 enhances hippocampus-dependent memory via increasing expressions of PSD95 and NMDA receptors

HW Chao, LY Tsai, YL Lu, PY Lin… - Journal of …, 2013 - Soc Neuroscience
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

[PDF][PDF] Deletion of CPEB3 Enhances Hippocampus-Dependent Memory via Increasing Expressions of PSD95 and NMDA Receptors

HW Chao, LY Tsai, YL Lu, PY Lin… - The Journal of …, 2013 - Soc Neuroscience
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

[PDF][PDF] Deletion of CPEB3 Enhances Hippocampus-Dependent Memory via Increasing Expressions of PSD95 and NMDA Receptors

HW Chao, LY Tsai, YL Lu, PY Lin… - The Journal of …, 2013 - scholar.archive.org
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

Deletion of CPEB3 Enhances Hippocampus-Dependent Memory via Increasing Expressions of PSD95 and NMDA Receptors.

HW Chao, LY Tsai, YL Lu, PY Lin… - Journal of …, 2013 - search.ebscohost.com
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

Deletion of CPEB3 enhances hippocampus-dependent memory via increasing expressions of PSD95 and NMDA receptors

HW Chao, LY Tsai, YL Lu, PY Lin, WH Huang… - Journal of …, 2013 - hub.tmu.edu.tw
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

Deletion of CPEB3 enhances hippocampus-dependent memory via increasing expressions of PSD95 and NMDA receptors

HW Chao, LY Tsai, YL Lu, PY Lin… - The Journal of …, 2013 - pubmed.ncbi.nlm.nih.gov
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

[PDF][PDF] Deletion of CPEB3 Enhances Hippocampus-Dependent Memory via Increasing Expressions of PSD95 and NMDA Receptors

HW Chao, LY Tsai, YL Lu, PY Lin… - The Journal of …, 2013 - researchgate.net
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

Deletion of CPEB3 enhances hippocampus-dependent memory via increasing expressions of PSD95 and NMDA receptors.

HW Chao, LY Tsai, YL Lu, PY Lin… - The Journal of …, 2013 - europepmc.org
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …

Deletion of CPEB3 Enhances Hippocampus-Dependent Memory via Increasing Expressions of PSD95 and NMDA Receptors

HW Chao, LY Tsai, YL Lu, PY Lin, WH Huang… - The Journal of …, 2013 - cir.nii.ac.jp
抄録< jats: p> Long-term memory requires activity-dependent synthesis of plasticity-related
proteins (PRPs) to strengthen synaptic efficacy and consequently consolidate memory …

[HTML][HTML] Deletion of CPEB3 Enhances Hippocampus-Dependent Memory via Increasing Expressions of PSD95 and NMDA Receptors

HW Chao, LY Tsai, YL Lu, PY Lin… - The Journal of …, 2013 - ncbi.nlm.nih.gov
Long-term memory requires activity-dependent synthesis of plasticity-related proteins
(PRPs) to strengthen synaptic efficacy and consequently consolidate memory. Cytoplasmic …