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1 q (chromatin immunoprecipitation followed by massively parallel DNA sequencing).
2 ty enrichment is subjected to analysis using massively parallel DNA sequencing.
3 ns of the calling cards can be determined by massively parallel DNA sequencing.
4 fulfils these criteria, combining MeDIP with massively parallel DNA sequencing.
5  the TF that put it there) are determined by massively parallel DNA sequencing.
6 ch an ENU-induced mutation was identified by massively parallel DNA sequencing.
7 l DNase I cleavages from intact nuclei using massively parallel DNA sequencing.
8 eps for library construction and analysis by massively parallel DNA sequencing.
9   Chromatin immunoprecipitation coupled with massively parallel DNA sequencing and gene expression an
10  and Chem-seq (chemical affinity capture and massively parallel DNA sequencing), are enabling the com
11                                              Massively parallel DNA sequencing can be used to assist
12 hod that couples ligand-affinity capture and massively parallel DNA sequencing (Chem-seq) to identify
13 atin immunoprecipitation (ChIP) coupled with massively parallel DNA sequencing (ChIP-Seq) and functio
14           Chromatin immunoprecipitation with massively parallel DNA sequencing (ChIP-seq) has greatly
15 s, chromatin immunoprecipitation followed by massively parallel DNA sequencing (ChIP-Seq) was perform
16 ng chromatin immunoprecipitation followed by massively parallel DNA sequencing (ChIP-seq).
17 ssessed by chromatin immunoprecipitation and massively parallel DNA sequencing (ChIP-seq).
18 nment of whole-genome CHD7 ChIP coupled with massively parallel DNA sequencing data to the rDNA refer
19 e combined in vitro nucleobase excision with massively parallel DNA sequencing (Excision-seq) to dete
20 ied in 40 chromatin immunoprecipitation with massively parallel DNA sequencing experiments.
21                                              Massively parallel DNA sequencing generates staggering a
22                                              Massively parallel DNA sequencing has shown that de-novo
23                 In contrast with advances in massively parallel DNA sequencing, high-throughput prote
24                                    ChIP with massively parallel DNA sequencing identified a direct as
25 th microarray analysis and ChIP coupled with massively parallel DNA sequencing in both erythroid and
26 recent technological advances, in particular massively parallel DNA sequencing, induced pluripotent s
27            We performed targeted capture and massively parallel DNA sequencing of 619 cancer genes to
28 ral antibodies using immunoprecipitation and massively parallel DNA sequencing of a bacteriophage lib
29 as significantly mutated through large-scale massively parallel DNA sequencing of chronic lymphocytic
30                   Over the past three years, massively parallel DNA sequencing platforms have become
31 shift is made feasible by recent advances in massively parallel DNA sequencing platforms, which affor
32 ing of probe signals for optimal analysis by massively parallel DNA sequencing (RASL-seq).
33    Chromatin immunoprecipitation followed by massively parallel DNA sequencing showed that genes invo
34                                              Massively parallel DNA sequencing technologies are revol
35                                              Massively parallel DNA sequencing technologies have grea
36                                              Massively parallel DNA sequencing technologies provide a
37             Here we describe a test based on massively parallel DNA sequencing to characterize base s
38                                 We exploited massively parallel DNA sequencing to develop meiotic map
39                                      We used massively parallel DNA sequencing to obtain a very high
40 ram will help bring the power and promise of massively-parallel DNA sequencing to a broader group of
41 d by 5'-to-3' exonuclease treatment and then massively parallel DNA sequencing) to GATA1 and TAL1 to
42  Chromatin immunoprecipitation combined with massively parallel DNA sequencing was performed to chara
43                                        Using massively parallel DNA sequencing, we constructed fine-r
44                                        Using massively parallel DNA sequencing, we identified a somat
45  by chromatin immunoprecipitation coupled to massively parallel DNA sequencing, we identified the miR

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