Submicroscopic recurrent 16p11.2 rearrangements are associated with several neurodevelopmental disorders, including autism, mental retardation, and schizophrenia. The common 16p11.2 region includes 24 known genes, of which 22 are expressed in the developing human fetal nervous system. As yet, the mechanisms leading to neurodevelopmental abnormalities and the broader phenotypes associated with deletion or duplication of 16p11.2 have not been clarified. Here we report a child with spastic quadriparesis, refractory infantile seizures, severe global developmental delay, hypotonia, and microcephaly, and a de novo 598 kb 16p11.2 microduplication. Family history is negative for any of these features in parents and immediate family members. Sequenc...
PURPOSE: Contiguous gene deletions are known to cause several neurodevelopmental syndromes, many of ...
Copy number variants (CNVs) play an important role in the genetic underpinnings of neuropsychiatric/...
Deletion and duplication of 16p11.2 (BP4-BP5) have been associated with an increased risk of intelle...
Submicroscopic recurrent 16p11.2 rearrangements are associat-ed with several neurodevelopmental diso...
Duplications of chromosome 16p11.2, even though rare in the general population, are one of the most ...
Recurrent copy number variations (CNVs) of human 16p11.2 have been associated with a variety of deve...
Recurrent copy number variations (CNVs) of human 16p11.2 have been associated with a variety of deve...
Recurrent copy number variations (CNVs) of human 16p11.2 have been associated with a variety of deve...
In this issue, Raca et al1 present two cases of childhood apraxia of speech (CAS) arising from micro...
16p11.2 duplication syndrome is a rare disorder, often associated with intellectual disability, atte...
Copy number variations (CNVs) of chromosomal region 16p11.2 are genetically linked to 1% of Autism...
BackgroundAutism is a complex childhood neurodevelopmental disorder with a strong genetic basis. Mic...
Deletions and duplications at the chromosomal region of 16p11.2 have a broad range of phenotypic eff...
International audienceThe pericentromeric region of chromosome 16p is rich in segmental duplications...
Recurrent microdeletions and microduplications of a 600 kb genomic region of chromosome 16p11.2 have...
PURPOSE: Contiguous gene deletions are known to cause several neurodevelopmental syndromes, many of ...
Copy number variants (CNVs) play an important role in the genetic underpinnings of neuropsychiatric/...
Deletion and duplication of 16p11.2 (BP4-BP5) have been associated with an increased risk of intelle...
Submicroscopic recurrent 16p11.2 rearrangements are associat-ed with several neurodevelopmental diso...
Duplications of chromosome 16p11.2, even though rare in the general population, are one of the most ...
Recurrent copy number variations (CNVs) of human 16p11.2 have been associated with a variety of deve...
Recurrent copy number variations (CNVs) of human 16p11.2 have been associated with a variety of deve...
Recurrent copy number variations (CNVs) of human 16p11.2 have been associated with a variety of deve...
In this issue, Raca et al1 present two cases of childhood apraxia of speech (CAS) arising from micro...
16p11.2 duplication syndrome is a rare disorder, often associated with intellectual disability, atte...
Copy number variations (CNVs) of chromosomal region 16p11.2 are genetically linked to 1% of Autism...
BackgroundAutism is a complex childhood neurodevelopmental disorder with a strong genetic basis. Mic...
Deletions and duplications at the chromosomal region of 16p11.2 have a broad range of phenotypic eff...
International audienceThe pericentromeric region of chromosome 16p is rich in segmental duplications...
Recurrent microdeletions and microduplications of a 600 kb genomic region of chromosome 16p11.2 have...
PURPOSE: Contiguous gene deletions are known to cause several neurodevelopmental syndromes, many of ...
Copy number variants (CNVs) play an important role in the genetic underpinnings of neuropsychiatric/...
Deletion and duplication of 16p11.2 (BP4-BP5) have been associated with an increased risk of intelle...