[HTML][HTML] FOXP2 and human cognition

P Lieberman - Cell, 2009 - cell.com
Using a mouse model, Enard et al.(2009) show that the human form of the FOXP2 gene
increases synaptic plasticity and dendrite connectivity in the basal ganglia. These results …

FOXP2 and Human Cognition

P Lieberman - Cell, 2009 - pubmed.ncbi.nlm.nih.gov
Using a mouse model, Enard et al.(2009) show that the human form of the FOXP2 gene
increases synaptic plasticity and dendrite connectivity in the basal ganglia. These results …

[引用][C] FOXP2 and Human Cognition

P Lieberman - Cell, 2009 - cir.nii.ac.jp
FOXP2 and Human Cognition | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ
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FOXP2 and Human Cognition.

P Lieberman - Cell, 2009 - europepmc.org
Using a mouse model, Enard et al.(2009) show that the human form of the FOXP2 gene
increases synaptic plasticity and dendrite connectivity in the basal ganglia. These results …

[HTML][HTML] FOXP2 and Human Cognition

P Lieberman - Cell, 2009 - Elsevier
Using a mouse model, Enard et al.(2009) show that the human form of the FOXP2 gene
increases synaptic plasticity and dendrite connectivity in the basal ganglia. These results …

[PDF][PDF] FOXP2 and Human Cognition

P Lieberman - Cell, 2009 - cell.com
Using a mouse model, Enard et al.(2009) show that the human form of the FOXP2 gene
increases synaptic plasticity and dendrite connectivity in the basal ganglia. These results …

FOXP2 and Human Cognition

P Lieberman - Cell, 2009 - infona.pl
Using a mouse model, Enard et al.(2009) show that the human form of the FOXP2 gene
increases synaptic plasticity and dendrite connectivity in the basal ganglia. These results …