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Unfortunately, microarray techniques suffer from certain limitations.
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However, the complimentary deoxyribonucleic acid cDNA microarray technique suffers from its inherent high background signals and depends on predesigned probes against known target transcripts, which makes it unable to detect novel transcript regions and it can only cover a portion of annotated transcriptome.
However, these techniques suffer from BDD size explosion problems.
Present MC measurement techniques suffer from several drawbacks.
The limitation is that the techniques suffer from the potential for chance correlation.
Most existing triple indexing techniques suffer from data duplication and the oversized index tree problem.
Current γ′ volume fraction characterization techniques suffer from a lack of precision and repeatability.
However, these techniques suffer from certain drawbacks, e.g., many among them are based on methods that require the genes to be independent and uncorrelated, which microarray data is not [8].
However the techniques suffer from unclear anatomical localization of the radioactive uptake.
Laser speckle techniques suffer from the same drawback.
However, these microscopy techniques suffer from relatively shallow imaging depths.
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