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1. Contribution of Previously Unrecognized RNA Splice-Altering Variants to Congenital Heart Disease.

2. Noncoding variants and sulcal patterns in congenital heart disease: Machine learning to predict functional impact

3. Increased endothelial sclerostin caused by elevated DSCAM mediates multiple trisomy 21 phenotypes

4. Neither cardiac mitochondrial DNA variation nor copy number contribute to congenital heart disease risk

5. Discordant clinical features of identical hypertrophic cardiomyopathy twins

6. EM-mosaic detects mosaic point mutations that contribute to congenital heart disease

7. GATA6 mutations in hiPSCs inform mechanisms for maldevelopment of the heart, pancreas, and diaphragm.

8. Genomic analyses implicate noncoding de novo variants in congenital heart disease

9. An ancient founder mutation located between ROBO1 and ROBO2 is responsible for increased microtia risk in Amerindigenous populations

10. Contribution of rare inherited and de novo variants in 2,871 congenital heart disease probands

11. De novo mutations in congenital heart disease with neurodevelopmental and other congenital anomalies

12. Increased Frequency of De Novo Copy Number Variants in Congenital Heart Disease by Integrative Analysis of Single Nucleotide Polymorphism Array and Exome Sequence Data

13. A gene-centric strategy for identifying disease-causing rare variants in dilated cardiomyopathy

15. Genetic Contribution to End-Stage Cardiomyopathy Requiring Heart Transplantation

17. Genetic Variants Associated With Cancer Therapy–Induced Cardiomyopathy

19. Damaging variants in FOXI3 cause microtia and craniofacial microsomia

20. Pathogenesis of Cardiomyopathy Caused by Variants in ALPK3 , an Essential Pseudokinase in the Cardiomyocyte Nucleus and Sarcomere

23. Spectrum of somatic mitochondrial mutations in five cancers

24. THSD1 (Thrombospondin Type 1 Domain Containing Protein 1) Mutation in the Pathogenesis of Intracranial Aneurysm and Subarachnoid Hemorrhage

25. HUMAN GENETICS: De novo mutations in congenital heart disease with neurodevelopmental and other congenital anomalies

26. Contribution of Noncanonical Splice Variants toTTNTruncating Variant Cardiomyopathy

27. Filamin C Cardiomyopathy Variants Cause Protein and Lysosome Accumulation

30. Genetic and Phenotypic Landscape of Peripartum Cardiomyopathy

31. Mechanisms of Congenital Heart Disease Caused by NAA15 Haploinsufficiency

34. Damaging variants in FOXI3cause microtia and craniofacial microsomia

35. Truncations of Titin Causing Dilated Cardiomyopathy

36. Rare genetic variation at transcription factor binding sites modulates local DNA methylation profiles

37. Founder Mutation in N Terminus of Cardiac Troponin I Causes Malignant Hypertrophic Cardiomyopathy

38. BET bromodomain proteins regulate transcriptional reprogramming in genetic dilated cardiomyopathy

40. SEQUENCE VARIANTS IN TITIN CAUSING SPLICING DEFECTS AND CARDIOMYOPATHY: INSIGHTS FOR GENE BASED DIAGNOSIS AND NORMAL PHYSIOLOGY

41. Mutations in sarcomere protein genes as a cause of dilated cardiomyopathy

43. Additional file 3 of EM-mosaic detects mosaic point mutations that contribute to congenital heart disease

44. Additional file 2 of EM-mosaic detects mosaic point mutations that contribute to congenital heart disease

45. Genomic analyses implicate noncoding de novo variants in congenital heart disease

47. Early post-zygotic mutations contribute to congenital heart disease

48. Abstract 785: Modeling Congenital Heart Disease-Associated Variants in GATA6 Using CRISPR/Cas9 and Human Induced Pluripotent Stem Cells

49. Abstract 202: The R21C Mutation in Troponin I Has a Founder Effect in South Lebanon and Causes Malignant Hypertrophic Cardiomyopathy

50. Abstract 104: Identification and Characterization of a Titin Enhancer using CRISPR/Cas9 Genome Editing and hiPSC-Derived Cardiomyocytes

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