Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms remain largely unknown. Here, we show that mice with an equivalent genetic mutation (16p11.2 duplication mice) exhibit impaired hippocampal-orbitofrontal and hippocampal-amygdala functional connectivity. Expression of schizophrenia-relevant GABAergic cell markers (parvalbumin and calbindin) is selectively decreased in orbitofrontal cortex, while somatostatin expression is decreased in lateral amygdala. When 16p11.2 duplication mice are tested in cognitive tasks dependent on hippocampal-orbitofrontal connectivity, performance is impaired in an 8-arm maze “N-back” working memory task and in a touchscreen continuous performance task. Consistent wit...
In schizophrenia, brain-wide alterations have been identified at the molecular and cellular levels, ...
Human genetic studies are rapidly identifying variants that increase risk for neurodevelopmental dis...
Neuropsychiatric disorders (NPDs) are frequently co-morbid with epilepsy, but the biological basis o...
Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms rem...
Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms rem...
Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms rem...
Autism spectrum disorders are more common in males, and have a substantial genetic component. Chromo...
Autism spectrum disorders are more common in males, and have a substantial genetic component. Chromo...
Schizophrenia is highly heritable yet very few genetic risk variants have been unequivocally linked ...
Autism spectrum disorders are more common in males, and have a substantial genetic component. Chromo...
The human 16p11.2 gene locus is a hot spot for copy number variations, which predispose carriers to ...
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
In schizophrenia, brain-wide alterations have been identified at the molecular and cellular levels, ...
Human genetic studies are rapidly identifying variants that increase risk for neurodevelopmental dis...
Neuropsychiatric disorders (NPDs) are frequently co-morbid with epilepsy, but the biological basis o...
Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms rem...
Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms rem...
Chromosome 16p11.2 duplications dramatically increase risk for schizophrenia, but the mechanisms rem...
Autism spectrum disorders are more common in males, and have a substantial genetic component. Chromo...
Autism spectrum disorders are more common in males, and have a substantial genetic component. Chromo...
Schizophrenia is highly heritable yet very few genetic risk variants have been unequivocally linked ...
Autism spectrum disorders are more common in males, and have a substantial genetic component. Chromo...
The human 16p11.2 gene locus is a hot spot for copy number variations, which predispose carriers to ...
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
Anatomical structures and mechanisms linking genes to neuropsychiatric disorders are not deciphered....
In schizophrenia, brain-wide alterations have been identified at the molecular and cellular levels, ...
Human genetic studies are rapidly identifying variants that increase risk for neurodevelopmental dis...
Neuropsychiatric disorders (NPDs) are frequently co-morbid with epilepsy, but the biological basis o...