171 results on '"Splinter, Erik"'
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2. Formalin-Fixed, Paraffin-Embedded–Targeted Locus Capture: A Next-Generation Sequencing Technology for Accurate DNA-Based Gene Fusion Detection in Bone and Soft Tissue Tumors
3. Robust detection of translocations in lymphoma FFPE samples using targeted locus capture-based sequencing
4. Long-Range Chromatin Contacts in Embryonic Stem Cells Reveal a Role for Pluripotency Factors and Polycomb Proteins in Genome Organization
5. X chromosome inactivation in a female carrier of a 1.28 Mb deletion encompassing the human X inactivation centre
6. Targeted locus amplification to develop robust patient-specific assays for liquid biopsies in pediatric solid tumors
7. Targeted locus amplification to develop robust patient-specific assays for liquid biopsies in pediatric solid tumors
8. Targeted locus amplification to develop robust patient-specific assays for liquid biopsies in pediatric solid tumors
9. Elevated enhancer-oncogene contacts and higher oncogene expression levels by recurrent CTCF inactivating mutations in acute T cell leukemia
10. Targeted Locus Amplification and Haplotyping
11. Formalin-Fixed, Paraffin-Embedded-Targeted Locus Capture: A Next-Generation Sequencing Technology for Accurate DNA-Based Gene Fusion Detection in Bone and Soft Tissue Tumors
12. Targeted locus amplification to develop robust patient-specific assays for liquid biopsies in pediatric solid tumors
13. Elevated enhancer-oncogene contacts and higher oncogene expression levels by recurrent CTCF inactivating mutations in acute T cell leukemia
14. Targeted Locus Amplification and Haplotyping
15. Targeted locus amplification to develop robust patient-specific assays for liquid biopsies in pediatric solid tumors
16. The Dynamic Architecture of Hox Gene Clusters
17. Elevated Enhancer-Oncogene Contacts and Higher Oncogene Expression Levels By Recurrent CTCF inactivating Mutations in T Cell Acute Lymphoblastic Leukemia
18. The pluripotent genome in three dimensions is shaped around pluripotency factors
19. Robust detection of translocations in lymphoma FFPE samples using targeted locus capture-based sequencing
20. The complex transcription regulatory landscape of our genome: control in three dimensions
21. The active spatial organization of the beta-globin locus requires the transcription factor EKLF
22. Allelic exclusion of the immunoglobulin heavy chain locus is independent of its nuclear localization in mature B cells
23. Abstract PO-45: Robust detection of translocations in lymphoma FFPE samples using Targeted Locus Capture-based sequencing
24. Large-scale discovery of mouse transgenic integration sites reveals frequent structural variation and insertional mutagenesis
25. Supplementary Table 1. Genes Included in the XIC deletion from X chromosome inactivation in a female carrier of a 1.28 Mb deletion encompassing the human X inactivation centre
26. Supplementary Methods: Primersets used in qPCR from X chromosome inactivation in a female carrier of a 1.28 Mb deletion encompassing the human X inactivation centre
27. Supplementary Figure 1. Overview of genome integrity from X chromosome inactivation in a female carrier of a 1.28 Mb deletion encompassing the human X inactivation centre
28. Genetic Screening Test to Detect Translocations in Acute Leukemias by Use of Targeted Locus Amplification
29. Sensitive Monogenic Noninvasive Prenatal Diagnosis by Targeted Haplotyping
30. Sensitive Monogenic Noninvasive Prenatal Diagnosis by Targeted Haplotyping
31. Erratum to: Dynamics of gene silencing during X inactivation using allele-specific RNA-seq [Genome Biol. 2015;16:149]
32. CTCF mediates long-range chromatin looping and local histone modification in the Beta-globin locus
33. Genetic and epigenetic features direct differential efficiency of Xist-mediated silencing at X-chromosomal and autosomal locations
34. Sensitive Monogenic Noninvasive Prenatal Diagnosis by Targeted Haplotyping
35. Efficient mapping of transgene integration sites and local structural changes in Cre transgenic mice using targeted locus amplification
36. Additional file 1: Figure S1. of Quantitative analysis of chromatin interaction changes upon a 4.3 Mb deletion at mouse 4E2
37. Erratum to: Dynamics of gene silencing during X inactivation using allele-specific RNA-seq
38. Erratum to: Dynamics of gene silencing during X inactivation using allele-specific RNA-seq [Genome Biol. 2015;16:149]
39. Dynamics of gene silencing during X inactivation using allele-specific RNA-seq
40. Quantitative analysis of chromatin interaction changes upon a 4.3 Mb deletion at mouse 4E2
41. CTCF Binding Polarity Determines Chromatin Looping
42. Quantitative analysis of chromatin interaction changes upon a 4.3 Mb deletion at mouse 4E2
43. CTCF Binding Polarity Determines Chromatin Looping
44. Dynamics of gene silencing during X inactivation using allele-specific RNA-seq
45. Identification of Candidate Oncogenes and Chromosomal Breakpoint Sequencing By Targeted Locus Amplification in T-Cell Acute Lymphoblastic Leukemia
46. Targeted Locus Amplification & Next Generation Sequencing for the Detection of Recurrent and Novel Gene Fusions for Improved Treatment Decisions in Pediatric Acute Lymphoblastic Leukemia
47. Targeted Locus Amplification (TLA): A Novel Next Generation Sequencing (NGS) Technology to Detect New Molecular Markers and Monitoring Minimal Residual Disease (MRD) in Mantle Cell and Follicular Lymphoma
48. Quantitative analysis of chromatin interaction changes upon a 4.3 Mb deletion at mouse 4E2
49. CTCF Binding Polarity Determines Chromatin Looping
50. Dynamics of gene silencing during X inactivation using allele-specific RNA-seq
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