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And that means microarrays will have a long life ahead of them.
Consequently, lower quality microarrays will have more narrow spreads of distribution of rank averages.
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Smaller rearrangements, within these or other genes that are beneath the resolution of the microarray will have been missed in this study.
Focusing only on the unique sequences in our microarray will have potentially led to an underestimation of the number of CNV events.
Therefore, it is important to consider the potential of microarrays in biomaterials research and cell-based studies; however, biomaterials research using the microarray method will have to be further developed in the future.
Given that etsrp has a similar function in zebrafish, it is likely that many of the genes identified in this microarray screen will have mammalian homologs functionally important for angiogenesis and/or vasculogenesis.
With the vast amount of work still to be done, microarray technology will have an increasingly important role in the post-genomic era and will most certainly be an essential player in the post-genomic era.
RNA sequencing or microarray analyses will have to be performed to verify levels of transcription, but the data presented here suggests that these unique stages express sets of genes that are needed for specific developmental programs.
Study of the impact of complex host risk factors for TB such as tobacco smoke, indoor air pollution, malnutrition and diabetes on the bacilli by exploiting metabolomics, proteomics and microarray analyses will have broad public health and socioeconomic implications.
Undoubtedly, the benchmark for any newly identified biomarker or biomarker DNA or RNA expression profile arising from these new microarray technologies will have to be its comparison to standard prognostic factors.
In addition, our approach allows for the first time the assessment of the fidelity of in situ RNA microarray synthesis and will have an important impact on the emergence of high-density complex RNA array technology.
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