Infantile spasms (IS) and Lennox–Gastaut syndrome (LGS) are epileptic encephalopathies characterized by early onset, intractable seizures, and poor developmental outcomes. De novo sequence mutations and copy number variants (CNVs) are causative in a subset of cases. We used exome sequence data in 349 trios with IS or LGS to identify putative de novo CNVs. We confirm 18 de novo CNVs in 17 patients (4.8%), 10 of which are likely pathogenic, giving a firm genetic diagnosis for 2.9% of patients. Confirmation of exome-predicted CNVs by array-based methods is still required due to false-positive rates of prediction algorithms. Our exome-based results are consistent with recent array-based studies in similar cohorts and highlight novel candidate g...
Emerging evidence indicates that epileptic encephalopathies are genetically highly heterogeneous, un...
Objective: To assess the benefits and limitations of whole genome sequencing (WGS) compared to exome...
BACKGROUND: De novo mutations are a frequent cause of disorders related to brain development. We rep...
Infantile spasms (IS) and Lennox-Gastaut syndrome (LGS) are epileptic encephalopathies characterized...
Copy number variants (CNV) are established risk factors for neurodevelopmental disorders with seizur...
PURPOSE: The management of epilepsy in children is particularly challenging when seizures are resist...
Objective: Copy number variations (CNVs) represent a significant genetic risk for several neurodevel...
Trio exome sequencing has been successful in identifying genes with de novo mutations (DNMs) causing...
Epilepsy is the most common serious neurological disorder, and there is a genetic basis in almost 50...
Epileptic encephalopathies are a devastating group of severe childhood epilepsy disorders for which ...
Trio exome sequencing has been successful in identifying genes with de novo mutations (DNMs) causing...
Copy number variants (CNV) are established risk factors for neurodevelopmental disorders with seizur...
Emerging evidence indicates that epileptic encephalopathies are genetically highly heterogeneous, un...
Infantile spasms (IS) is an early-onset epileptic encephalopathy of unknown etiology in ∼40 % of pat...
<div><p>Trio exome sequencing has been successful in identifying genes with <i>de novo</i> mutations...
Emerging evidence indicates that epileptic encephalopathies are genetically highly heterogeneous, un...
Objective: To assess the benefits and limitations of whole genome sequencing (WGS) compared to exome...
BACKGROUND: De novo mutations are a frequent cause of disorders related to brain development. We rep...
Infantile spasms (IS) and Lennox-Gastaut syndrome (LGS) are epileptic encephalopathies characterized...
Copy number variants (CNV) are established risk factors for neurodevelopmental disorders with seizur...
PURPOSE: The management of epilepsy in children is particularly challenging when seizures are resist...
Objective: Copy number variations (CNVs) represent a significant genetic risk for several neurodevel...
Trio exome sequencing has been successful in identifying genes with de novo mutations (DNMs) causing...
Epilepsy is the most common serious neurological disorder, and there is a genetic basis in almost 50...
Epileptic encephalopathies are a devastating group of severe childhood epilepsy disorders for which ...
Trio exome sequencing has been successful in identifying genes with de novo mutations (DNMs) causing...
Copy number variants (CNV) are established risk factors for neurodevelopmental disorders with seizur...
Emerging evidence indicates that epileptic encephalopathies are genetically highly heterogeneous, un...
Infantile spasms (IS) is an early-onset epileptic encephalopathy of unknown etiology in ∼40 % of pat...
<div><p>Trio exome sequencing has been successful in identifying genes with <i>de novo</i> mutations...
Emerging evidence indicates that epileptic encephalopathies are genetically highly heterogeneous, un...
Objective: To assess the benefits and limitations of whole genome sequencing (WGS) compared to exome...
BACKGROUND: De novo mutations are a frequent cause of disorders related to brain development. We rep...