The emergence of next-generation genomic sequencing (NGS) tests for use in clinical care has generated widespread interest around the globe, but little is known about the availability and funding of these tests worldwide. We examined NGS availability across world regions and countries, with a particular focus on availability of three key NGS tests—Whole-Exome Sequencing or Whole-Genome Sequencing for diagnosis of suspected genetic diseases such as intellectual disability disorders or rare diseases, non-invasive prenatal testing for common genetic abnormalities in fetuses and tumor sequencing for therapy selection and monitoring of cancer treatment. We found that these NGS tests are available or becoming available in every major region of th...
Genome sequencing (GS) can identify novel diagnoses for patients who remain undiagnosed after routin...
While next generation sequencing has enhanced our understanding of the biological basis of malignanc...
The Clinical Sequencing Evidence-Generating Research (CSER) consortium, now in its second funding cy...
The emergence of next-generation genomic sequencing (NGS) tests for use in clinical care has generat...
Genome sequencing technology provides new and promising tests for clinical practice, including whole...
and decreases in the cost of DNA sequencing have made the possibility of whole genome sequencing (WG...
Next-generation sequencing (NGS) has ignited a revolution in genomic science and presents a new tool...
Abstract Background There is tremendous potential for...
Single gene tests to predict whether cancers respond to specific targeted therapies are performed in...
The market for next-generation sequencing technologies (NGS) has grown dramatically. Health care dec...
The potential applications of next-generation sequencing technologies in diagnostic laboratories hav...
Clinical laboratories have adopted next generation sequencing (NGS) as a gold standard for the diagn...
International audienceNext-generation sequencing (NGS) may enable more focused and highly personaliz...
Background: Genetic testing in inherited disease has traditionally relied upon recognition of the pr...
Genome sequencing (GS) can identify novel diagnoses for patients who remain undiagnosed after routin...
While next generation sequencing has enhanced our understanding of the biological basis of malignanc...
The Clinical Sequencing Evidence-Generating Research (CSER) consortium, now in its second funding cy...
The emergence of next-generation genomic sequencing (NGS) tests for use in clinical care has generat...
Genome sequencing technology provides new and promising tests for clinical practice, including whole...
and decreases in the cost of DNA sequencing have made the possibility of whole genome sequencing (WG...
Next-generation sequencing (NGS) has ignited a revolution in genomic science and presents a new tool...
Abstract Background There is tremendous potential for...
Single gene tests to predict whether cancers respond to specific targeted therapies are performed in...
The market for next-generation sequencing technologies (NGS) has grown dramatically. Health care dec...
The potential applications of next-generation sequencing technologies in diagnostic laboratories hav...
Clinical laboratories have adopted next generation sequencing (NGS) as a gold standard for the diagn...
International audienceNext-generation sequencing (NGS) may enable more focused and highly personaliz...
Background: Genetic testing in inherited disease has traditionally relied upon recognition of the pr...
Genome sequencing (GS) can identify novel diagnoses for patients who remain undiagnosed after routin...
While next generation sequencing has enhanced our understanding of the biological basis of malignanc...
The Clinical Sequencing Evidence-Generating Research (CSER) consortium, now in its second funding cy...