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1
Background: Massively
parallel
sequencing
has recently been used in noninvasive prenatal diagnosis.
2
Conclusions: Massively
parallel
sequencing
is a powerful tool for studying posttransplantation chimerism.
3
Target enrichment and massively
parallel
sequencing
were performed for each plasma DNA library.
4
Massively
parallel
sequencing
of cDNA has enabled deep and efficient probing of transcriptomes.
5
Plasma DNA libraries with and without target enrichment were analyzed by massively
parallel
sequencing
.
6
Pulldown of expressed sequences from genomic DNA followed by massively
parallel
sequencing
was undertaken.
7
In contrast, massively
parallel
sequencing
allows such testing for many genes simultaneously at low cost.
8
The advent of massively
parallel
sequencing
will allow the field to expand its capabilities substantially.
9
When applied to sequencing the transcriptome, massively
parallel
sequencing
can reveal latent or silent infections.
10
Epidermal growth factor receptor (EGFR) mutations were further validated by massive
parallel
sequencing
.
11
Background: Massively
parallel
sequencing
of barcoded DNA samples significantly increases screening efficiency for clinically important genes.
12
This study demonstrates the cost-effectiveness of investigation using massively
parallel
sequencing
technologies in paediatric muscle disease.
13
Massively
parallel
sequencing
(MPS) offers an alternative that can overcome limitations of the CE.
14
RNA from 20 tumors was evaluated by massively
parallel
sequencing
to search for potentially oncogenic viruses.
15
The DHS map was developed by sequencing individual DNase I cleavage sites using massively
parallel
sequencing
technologies.
16
This review describes the salient features of massively
parallel
sequencing
and how it can impact forensic genetics.
parallel
sequencing
parallel