Osteogenesis imperfecta (OI) and Marfan syndrome (MFS) are common Mendelian disorders. Both conditions are usually diagnosed clinically, as genetic testing is expensive due to the size and number of potentially causative genes and mutations. However, genetic testing may benefit patients, at-risk family members and individuals with borderline phenotypes, as well as improving genetic counseling and allowing critical differential diagnoses. We assessed whether whole exome sequencing (WES) is a sensitive method for mutation detection in OI and MFS. WES was performed on genomic DNA from 13 participants with OI and 10 participants with MFS who had known mutations, with exome capture followed by massive parallel sequencing of multiplexed samples. ...
Next generation sequencing (NGS) is a rapidly developing area in genetics. Utilizing this technology...
Next-generation sequencing has catapulted healthcare into a revolutionary genomics era. One such tec...
Item does not contain fulltextOsteogenesis imperfecta (OI) is a heterogeneous genetic disorder chara...
Osteogenesis imperfecta (OI) and Marfan syndrome (MFS) are common Mendelian disorders. Both conditio...
Over the past several years whole exome sequencing (WES) by high-throughput sequencing of target-enr...
<div><p>Genetic disorders of the skeleton comprise a large group of more than 450 clinically distinc...
BACKGROUND:With the expanded availability of next generation sequencing (NGS)-based clinical genetic...
BACKGROUND: There is considerable interest in the use of next-generation sequencing to help diagnose...
Background Marfan syndrome (MFS) is an inherited connective tissue disorder affecting the ocular, sk...
Marfan syndrome (MFS) is a rare disease that affects connective tissue, which causes abnormalities i...
International audienceMultiple malformation syndromes (MMS) belong to a group of genetic disorders c...
International audienceMassively parallel sequencing is rapidly becoming a widely used method in gene...
Multiple osteochondromas (MO) is an inherited skeletal disorder, and the molecular mechanism of MO r...
PURPOSE: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
Purpose: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
Next generation sequencing (NGS) is a rapidly developing area in genetics. Utilizing this technology...
Next-generation sequencing has catapulted healthcare into a revolutionary genomics era. One such tec...
Item does not contain fulltextOsteogenesis imperfecta (OI) is a heterogeneous genetic disorder chara...
Osteogenesis imperfecta (OI) and Marfan syndrome (MFS) are common Mendelian disorders. Both conditio...
Over the past several years whole exome sequencing (WES) by high-throughput sequencing of target-enr...
<div><p>Genetic disorders of the skeleton comprise a large group of more than 450 clinically distinc...
BACKGROUND:With the expanded availability of next generation sequencing (NGS)-based clinical genetic...
BACKGROUND: There is considerable interest in the use of next-generation sequencing to help diagnose...
Background Marfan syndrome (MFS) is an inherited connective tissue disorder affecting the ocular, sk...
Marfan syndrome (MFS) is a rare disease that affects connective tissue, which causes abnormalities i...
International audienceMultiple malformation syndromes (MMS) belong to a group of genetic disorders c...
International audienceMassively parallel sequencing is rapidly becoming a widely used method in gene...
Multiple osteochondromas (MO) is an inherited skeletal disorder, and the molecular mechanism of MO r...
PURPOSE: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
Purpose: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
Next generation sequencing (NGS) is a rapidly developing area in genetics. Utilizing this technology...
Next-generation sequencing has catapulted healthcare into a revolutionary genomics era. One such tec...
Item does not contain fulltextOsteogenesis imperfecta (OI) is a heterogeneous genetic disorder chara...