In genome medicine, which is now being implemented in medical care, variants detected by genome analysis such as next-generation sequencers are clinically interpreted to determine the diagnosis and treatment plan. The clinical interpretation is performed based on the detailed clinical background and the information from journal papers and public databases, such as frequencies in the population and their relationship to the disease. A large amount of genomic data has been accumulated so far, and many genomic variant databases related to diseases have been developed, including ClinVar. On the other hand, the genes and variants involved in diseases are different between populations with different genetic backgrounds. Furthermore, it has been r...
The translation of emerging genomic knowledge into public health and clinical care is one of the maj...
A new generation of non-Sanger-based sequencing technologies, so called “next-generation” sequencing...
This talk is based on our paper: Li MJ, Wang P, Liu X, Lim EL, Wang Z, Yeager M, Wong MP, Sham PC, C...
In genome medicine, which is now being implemented in medical care, variants detected by genome anal...
The sequencing of the human genome has opened up completely new avenues in research and the notion o...
The field of human genetics has been radically changed by the introduction of massive parallel seque...
Discerning genetic contributions to diseases not only enhances our understanding of disease mechanis...
Insight into the biological make-up of complex disorders can improve their diagnosis, lead to the di...
Advances in genomic medicine have the potential to change the way we treat human disease, but transl...
All human beings are approximately 99.9% similar in their DNA sequences. The 0.1% contains different...
Molecular biology is currently a fast-advancing science. Sequencing techniques are getting cheaper, ...
Background: Human genome sequencing has enabled the association of phenotypes with genetic loci, but...
Over the past fifty years, the genetic bases for many human diseases have been discovered. Genome-wi...
High-throughput next-generation DNA sequencing has evolved rapidly over the past 20 years. The Human...
Precision medicine programs to identify clinically relevant genetic variation have been revolutioniz...
The translation of emerging genomic knowledge into public health and clinical care is one of the maj...
A new generation of non-Sanger-based sequencing technologies, so called “next-generation” sequencing...
This talk is based on our paper: Li MJ, Wang P, Liu X, Lim EL, Wang Z, Yeager M, Wong MP, Sham PC, C...
In genome medicine, which is now being implemented in medical care, variants detected by genome anal...
The sequencing of the human genome has opened up completely new avenues in research and the notion o...
The field of human genetics has been radically changed by the introduction of massive parallel seque...
Discerning genetic contributions to diseases not only enhances our understanding of disease mechanis...
Insight into the biological make-up of complex disorders can improve their diagnosis, lead to the di...
Advances in genomic medicine have the potential to change the way we treat human disease, but transl...
All human beings are approximately 99.9% similar in their DNA sequences. The 0.1% contains different...
Molecular biology is currently a fast-advancing science. Sequencing techniques are getting cheaper, ...
Background: Human genome sequencing has enabled the association of phenotypes with genetic loci, but...
Over the past fifty years, the genetic bases for many human diseases have been discovered. Genome-wi...
High-throughput next-generation DNA sequencing has evolved rapidly over the past 20 years. The Human...
Precision medicine programs to identify clinically relevant genetic variation have been revolutioniz...
The translation of emerging genomic knowledge into public health and clinical care is one of the maj...
A new generation of non-Sanger-based sequencing technologies, so called “next-generation” sequencing...
This talk is based on our paper: Li MJ, Wang P, Liu X, Lim EL, Wang Z, Yeager M, Wong MP, Sham PC, C...