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The advent of complete genomic sequences of over 800 organisms (including the human, mouse, and zebra fish genomes), and the development of microarray technology have revolutionized molecular biology.
As studies using microarray technology have evolved, so have the data analysis methods used to analyze these experiments.
In the research field, these genome-wide analyses using microarray technology have been providing deeper biological insights for a decade.
During the last decade, advances in Molecular Biology and substantial improvements in microarray technology have led biologists toward high-throughput genomic studies.
Although advances in microarray technology have provided massive high-dimensional gene expression data, the analysis of such data is still challenging.
Advances in microarray technology have enabled exon-specific microarray platforms, in which all known and predicted exons in the genome have hybridization probes.
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Recently, microarray technology has increasingly been widely applied in glycobiology.
Supporting this view, the number of applications of DNA microarray technology has since expanded exponentially.
This is appropriate for discovery based investigations where microarray technology has been successfully utilized.
Microarray technology has come of age for use in high-throughput operations and large-scale studies.
Microarray technology has characterized global gene expression in complex disorders such as preeclampsia.
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