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The advancement of genotyping technology has made genotypic data readily accessible to investigators at low cost.
The rapid advance in genotyping technology including sequencing has led to an increased ability to accurately assess genetic variation across biological disciplines.
Increased knowledge about the human genome and advances in genotyping technology have made possible genome-wide association studies (GWAS) of human diseases.
First, whole gene sequencing is on the threshold of being cheap enough to dominate genotyping technology and commercial implementations are likely to increase.
SNP genotyping technology is developing very rapidly.
With the recent advancements of genotyping technology, GWASs are being completed in record numbers.
Recent advances in genotyping technology have greatly improved our understanding of the genetic risk factors that contribute to such diseases.
Advances in genotyping technology have recently afforded insights into the genetic determinants of common diseases through the use of genome-wide association (GWA) studies [1].
Although genotyping technology has expanded greatly over the past decade, metabolic phenotyping has languished due to the difficulty of 'top-down' chemical analyses.
This platform employs a chip-based TaqMan genotyping technology.
As genotyping technology improves, much higher densities should become possible.
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