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1 ins with high sensitivity and specificity by next generation DNA sequencing.
2 omatic mutations is one of the main goals of next generation DNA sequencing.
3 gnostic quandary was ultimately solved using next generation DNA sequencing.
4 f transcriptome and chloroplast genome using next generation DNA sequencing.
5 ification, mutation analysis, and (recently) next generation DNA sequencing.
6 combines droplet microfluidic screening with next-generation DNA sequencing.
7 the methylated genomic fraction, followed by next-generation DNA sequencing.
8 species that can now be distinguished using next-generation DNA sequencing.
9 AC (cross-linking and analyses of cDNAs) and next-generation DNA sequencing.
10 ng and characterizing complex variants using next-generation DNA sequencing.
11 g DNA microchips, and read the book by using next-generation DNA sequencing.
12 remained mostly untouched by improvements in next-generation DNA sequencing.
13 C) at 40- to 90-fold coverage using Illumina next-generation DNA sequencing.
14 single-molecule-analysis devices as well as next-generation DNA sequencing.
15 intrinsic tumour genomic features by use of next-generation DNA sequencing and characteristics of th
18 tions in house dust were determined by using next-generation DNA sequencing and quantitative PCR.
19 sign, quantitative yeast surface display and next-generation DNA sequencing and was demonstrated by m
20 ith the advent of low-cost, high throughput 'next generation' DNA sequencing, and user-friendly bioin
21 ng chromatin immunoprecipitation followed by next-generation DNA sequencing, and measured related cha
22 Using a combination of classical mapping and next-generation DNA sequencing approaches, we linked the
23 Chromatin immunoprecipitation followed by next-generation DNA sequencing (ChIP-seq) is a widely us
24 ide chromatin immunoprecipitation coupled to next-generation DNA sequencing (ChIP-seq) we established
25 reasing cost and increasing accessibility of next-generation DNA sequencing combined with the maturat
27 Recently, it has become possible to collect next-generation DNA sequencing data sets that are compos
34 data production technologies, particularly 'next-generation' DNA sequencing, have ushered in widespr
35 ic, and protein expression strategy by using next-generation DNA sequencing in the discovery phase wi
45 by searching a reference database created by next-generation DNA sequencing of the B-cell immunoglobu
50 cent exponential growth in the throughput of next-generation DNA sequencing platforms has dramaticall
58 advances in this field have been enabled by next-generation DNA sequencing strategies such as whole
73 t oligonucleotide sequencing assay that uses next-generation DNA sequencing technology for the assess
75 many potentially high-impact applications of next-generation DNA sequencing that are not yet fully re
76 we coupled arbitrary single primer PCR with next-generation DNA sequencing to catalog mutations and
79 y high-throughput analytical platforms, from next-generation DNA sequencing to drug discovery, rely o
80 ng sequences of two interacting proteins and next-generation DNA sequencing to identify these interac
81 acterization that uses barcode extension and next-generation DNA sequencing to quantitatively measure
83 developed a pooled linkage strategy based on next-generation DNA sequencing to specifically identify
84 findings from several studies that have used next-generation DNA sequencing to unravel the switching
85 put technologies such as DNA microarrays and next generation DNA sequencing, we have begun to associa