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Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

By A Mystery Man Writer

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Widespread Alterations in Translation Elongation in the Brain of

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Widespread Alterations in Translation Elongation in the Brain of

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Cell-type-specific disruption of cortico-striatal circuitry drives

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in the

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

The SILAC approach applied to analyze differential protein

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

FMRP has a cell-type-specific role in CA1 pyramidal neurons to

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Deletion of Fmr1 in parvalbumin-expressing neurons results in

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

α-Tocopherol Protects Against Oxidative Stress in the Fragile X

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Wild-Type Male Offspring of fmr-1+/− Mothers Exhibit

Fmr1-KO mice demonstrate enhanced responding upon rule reversal in

Deletion of Fmr1 in parvalbumin-expressing neurons results in