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19 results on '"optical genome mapping"'

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1. Genomic structural variants analysis in leukemia by a novel cytogenetic technique: Optical genome mapping.

2. Utility of Optical Genome Mapping in Repeat Disorders.

3. Optical Genome Mapping Identifies a Second Xq27.1 Rearrangement Associated With Charcot–Marie–Tooth Neuropathy CMTX3.

4. Long‐read sequencing and optical genome mapping identify causative gene disruptions in noncoding sequence in two patients with neurologic disease and known chromosome abnormalities.

5. Optical genome mapping with genome sequencing identifies subtelomeric Xq28 deletion and inserted 7p22.3 duplication in a male with multisystem developmental disorder.

6. An Inversion Affecting the GCH1 Gene as a Novel Finding in Dopa‐Responsive Dystonia.

7. The clinical value of optical genome mapping in the rapid characterization of RB1 duplication and 15q23q24.2 triplication, for more appropriate prenatal genetic counselling.

8. Optical genome mapping identifies structural variants in potentially new cancer predisposition candidate genes in pediatric cancer patients.

9. A novel de novo intragenic duplication in FBN1 associated with early‐onset Marfan syndrome in a 16‐month‐old: A case report and review of the literature.

10. Optical genome mapping reveals balanced and unbalanced genetic changes associated with tumor‐forming potential in an early‐stage prostate cancer epithelial subline (M2205).

11. 11q13.3q13.4 deletion plus 9q21.13q21.33 duplication in an affected girl arising from a familial four‐way balanced chromosomal translocation.

12. Optical genome mapping for detection of chromosomal aberrations in prenatal diagnosis.

13. Parallel deletion and duplication at 7q11.23 in a silent carrier for two reciprocal syndromic disorders.

14. Optical genome mapping identifies a novel pediatric embryonal tumor with a ZNF532::NUTM1 fusion.

15. A novel FAME1 repeat configuration in a European family identified using a combined genomics approach.

17. Optical genome mapping reveals additional prognostic information compared to conventional cytogenetics in AML/MDS patients.

18. Evaluation of optical genome mapping for detecting chromosomal translocation in clinical cytogenetics.

19. Detection of a mosaic CDKL5 deletion and inversion by optical genome mapping ends an exhaustive diagnostic odyssey.

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