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1 inking, restriction digestion, ligation, and high-throughput DNA sequencing).
2 tated DNA (chromatin immunoprecipitation and high-throughput DNA sequencing).
3 s and subsequent recognition and analysis by high-throughput DNA sequencing.
4 selectively amplified by PCR and revealed by high-throughput DNA sequencing.
5 d drug delivery, early disease diagnosis and high-throughput DNA sequencing.
6 nd on global T-cell populations analyzed via high-throughput DNA sequencing.
7 can exploit the speed and low cost of modern high-throughput DNA sequencing.
8 ectivity into a form that can be read out by high-throughput DNA sequencing.
9 roarray-based techniques, and more recently, high-throughput DNA sequencing.
10 enomic retrotranspositions were mapped using high-throughput DNA sequencing.
11 els with multiplexed protein microarrays and high-throughput DNA sequencing.
12 ion; cDNA library amplification; and finally high-throughput DNA sequencing.
13 the human genome, and can be analyzed using high-throughput DNA sequencing.
14 1 nucleosomes in mouse liver chromatin using high-throughput DNA sequencing.
15 was amplified by PCR and identified by ultra-high-throughput DNA sequencing.
16 an liver using chromatin immunoprecipitation-high-throughput DNA sequencing.
17 d using either microarray detection or ultra-high-throughput DNA sequencing.
18 development of SBS as a viable approach for high-throughput DNA sequencing.
22 ready provided a suitable framework for both high-throughput DNA sequencing and functional studies of
23 Amplifiable clones and libraries facilitate high-throughput DNA sequencing and other applications re
27 array and will benefit not only high-speed, high-throughput DNA sequencing but also genetic typing.
28 ed chromatin immunoprecipitation followed by high-throughput DNA sequencing (ChIP-seq) and detected 1
29 matin immunoprecipitation (ChIP) followed by high-throughput DNA sequencing (ChIP-seq) and detected 4
30 DE chromatin immunoprecipitation followed by high-throughput DNA sequencing (ChIP-seq) data and liver
31 matin immunoprecipitation (ChIP) followed by high-throughput DNA sequencing (ChIP-seq) has become a v
32 d chromatin immunoprecipitation coupled with high-throughput DNA sequencing (ChIP-seq) to determine t
36 er before to analyze the recent abundance of high-throughput DNA sequencing data, both on single and
40 hese methods have been designed for use in a high-throughput DNA sequencing environment processing th
41 n commercial products and may be utilized in high throughput DNA sequencing for authentication of hea
42 t to proficiency were (1) a high-resolution, high-throughput DNA sequencing gel-based electrophoretic
44 for expeditious and inexpensive methods for high-throughput DNA sequencing has been highlighted by t
46 dependent methods, many of them coupled with high-throughput DNA sequencing, has allowed this diversi
47 of clinical samples, and recent advances in high-throughput DNA sequencing have dramatically enhance
48 technological advances leading to low-cost, high-throughput DNA sequencing have made it possible for
49 s without prior axenic culture, coupled with high-throughput DNA sequencing, have revolutionized the
50 g chromatin immunoprecipitation coupled with high-throughput DNA sequencing, here we show in mouse ES
53 ng marries selection for protein function to high-throughput DNA sequencing in order to quantify the
55 The development of novel technologies for high-throughput DNA sequencing is having a major impact
58 Understanding the data obtained using new high-throughput DNA sequencing methods, choices made in
61 es in 9 allergic and 24 healthy adults using high-throughput DNA sequencing of 15,843,270 IGH rearran
68 This system can be readily multiplexed for high-throughput DNA sequencing or PCR analysis directly
71 major results and discoveries stemming from high-throughput DNA sequencing research in our understan
72 process the millions of reads from a typical high-throughput DNA sequencing run within a few minutes.
73 oson-based mutagenesis in S. alvi and, using high-throughput DNA sequencing, screened genome-wide tra
74 igands by exponential enrichment followed by high-throughput DNA sequencing (SELEX-seq) on several fl
76 rminal phosphate are used as key reagents in high-throughput DNA sequencing techniques and in single
81 view, we describe several massively parallel high-throughput DNA sequencing technologies and their as
86 cells in the blood or lymphoid organs using high-throughput DNA sequencing technologies have been ad
90 om an increasing number of parasites, modern high-throughput DNA sequencing technologies have the pot
95 e integration of microfluidic selection with high-throughput DNA sequencing technology for rapid and
100 imental studies now leverage the advances in high-throughput DNA sequencing that have driven the expl
102 r assays and flow cytometry are coupled with high-throughput DNA sequencing to enable parallel screen
104 ariants, moderate selection for activity and high-throughput DNA sequencing to quantify the performan
107 ngle-nucleotide polymorphism microarrays and high-throughput DNA sequencing) to examine genome-wide L
108 ng of high-density transposon mutagenesis to high-throughput DNA sequencing (transposon-insertion seq
110 ng classic genetic suppressor screening with high-throughput DNA sequencing, we identify Mre11 mutati
111 sequencing (PRS) combines the advantages of high-throughput DNA sequencing with new labeling and poo
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