For the past two decades, linkage analysis and genome-wide analysis have greatly advanced our knowledge of the human genome. But despite these successes the genetic architecture of diseases remains unknown. More recently, the availability of next-generation sequencing has dramatically increased our capability for determining DNA sequences that range from large portions of one individual's genome to targeted regions of many genomes in a cohort of interest. In this review, we highlight the successes and shortcomings that have been achieved using genome-wide association studies (GWAS) to identify the variants contributing to disease. We further review the methods and use of new technologies, based on next-generation sequencing, that are becomi...
Genetic mapping by linkage analysis has been for many years the first step in the identification of ...
Genome-wide sequencing (GWS) is a standard of care for diagnosis of suspected genetic disorders, but...
In the past decade, rapid advances in genomic technologies have dramatically changed the genetic stu...
Genome-wide association studies (GWASs) have had a tremendous impact on the pace of genomic research...
For many years, linkage analysis was the primary tool used for the genetic mapping of Mendelian and ...
For many years, linkage analysis was the primary tool used for the genetic mapping of Mendelian and ...
After more than a decade of hope and hype, researchers are finally making inroads into understanding...
Susceptibility to common human diseases is influenced by both genetic and environmental factors. The...
In the recent decade, high-throughput genotyping and next-generation sequencing plat-forms have enab...
Insight into the biological make-up of complex disorders can improve their diagnosis, lead to the di...
Genome-wide association studies (GWAS) and next generation sequencing (NGS) studies are powerful hig...
Genome-wide association studies (GWAS) and next generation sequencing (NGS) studies are powerful hig...
Insight into the biological make-up of complex disorders can improve their diagnosis, lead to the di...
The sequencing of the human genome1 and the subsequentcompletion of the human haplotype mapping (Hap...
Many “complex” human diseases, which involve multiple genetic and environmental determin...
Genetic mapping by linkage analysis has been for many years the first step in the identification of ...
Genome-wide sequencing (GWS) is a standard of care for diagnosis of suspected genetic disorders, but...
In the past decade, rapid advances in genomic technologies have dramatically changed the genetic stu...
Genome-wide association studies (GWASs) have had a tremendous impact on the pace of genomic research...
For many years, linkage analysis was the primary tool used for the genetic mapping of Mendelian and ...
For many years, linkage analysis was the primary tool used for the genetic mapping of Mendelian and ...
After more than a decade of hope and hype, researchers are finally making inroads into understanding...
Susceptibility to common human diseases is influenced by both genetic and environmental factors. The...
In the recent decade, high-throughput genotyping and next-generation sequencing plat-forms have enab...
Insight into the biological make-up of complex disorders can improve their diagnosis, lead to the di...
Genome-wide association studies (GWAS) and next generation sequencing (NGS) studies are powerful hig...
Genome-wide association studies (GWAS) and next generation sequencing (NGS) studies are powerful hig...
Insight into the biological make-up of complex disorders can improve their diagnosis, lead to the di...
The sequencing of the human genome1 and the subsequentcompletion of the human haplotype mapping (Hap...
Many “complex” human diseases, which involve multiple genetic and environmental determin...
Genetic mapping by linkage analysis has been for many years the first step in the identification of ...
Genome-wide sequencing (GWS) is a standard of care for diagnosis of suspected genetic disorders, but...
In the past decade, rapid advances in genomic technologies have dramatically changed the genetic stu...