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As IEEE802.11 supports massive throughput and high transmission rate, and IEEE802.11 APs are widely deployed without additional infrastructure, most mobile devices are equipped with IEEE 802.11 series.
A technology which combines the massive throughput of the NGS with the long read lengths achieved by electrophoresis-based Sanger sequencing, would enable rapid, high-quality production of de novo genome sequences (Hert et al. [2008]).
The availability of high-throughput target capture methods combined with the massive throughput of next-generation sequencing platforms has made it possible to interrogate thousands of genomic loci in a cost effective manner[5], [6].
Massive throughput techniques, such as microarrays, allow to study genome-wide associations of gene expression with diseases or phenotypes.
New sequencing technologies, such as deep sequencing, allow massive throughput of sequence data and greatly contribute to genetic variation studies.
Let denote the matrix with results of a massive throughput study (e.g. gene expression data), with d dimensional vectors of gene expression measured for n samples.
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When 'indexing' strategies are applicable during the process [ 12- 14], a multiplex T-NGS approach can enable the researcher to efficiently leverage the massive throughputs offered by NGS platforms and process more samples in parallel.
From high energy physics to cosmology, biology, and genetics, sophisticated instrumentation, massive, high throughput experiments and observatories are increasingly leveraged by scientists and scholars to empirically validate deep, longstanding theories [3 5].
The analysis of massive high throughput data via clustering algorithms is very important for elucidating gene functions in biological systems.
Availability of human genome sequences and massive high throughput data on their expression provides an opportunity to study regulatory relationships between gene families [ 9, 10].
Recent advances in biomolecular engineering, such as genetic engineering, DNA and RNA engineering, protein engineering, site-specific chemical and enzymatic conjugation technologies, self-assembly technology and massive high-throughput screening (HTS) methods, have enabled us to improve, stabilize, integrate and alter the functions and properties of biological materials.
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