Vidu Garg
Affiliations: | Ohio State University, Columbus, Columbus, OH |
Area:
cardiac developmental biology, cardiovascular geneticsGoogle:
"Vidu Garg"
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Publications
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Yasuhara J, Manivannan SN, Majumdar U, et al. (2023) Novel pathogenic GATA6 variant associated with congenital heart disease, diabetes mellitus and necrotizing enterocolitis. Pediatric Research |
Landis BJ, Helvaty LR, Geddes GC, et al. (2023) A Multicenter Analysis of Abnormal Chromosomal Microarray Findings in Congenital Heart Disease. Journal of the American Heart Association. e029340 |
Blue EE, White JJ, Dush MK, et al. (2023) Rare variants in increase risk for isolated hypoplastic left heart syndrome. Hgg Advances. 4: 100232 |
Yasuhara J, Schultz K, Bigelow AM, et al. (2023) Congenital aortic valve stenosis: from pathophysiology to molecular genetics and the need for novel therapeutics. Frontiers in Cardiovascular Medicine. 10: 1142707 |
Ackah RL, Yasuhara J, Garg V. (2023) Genetics of aortic valve disease. Current Opinion in Cardiology |
Adhicary S, Ye S, Lin H, et al. (2022) Establishment of NCHi009-A, an iPSC line from a patient with hypoplastic left heart syndrome (HLHS) carrying a heterozygous NOTCH1 mutation. Stem Cell Research. 66: 103013 |
Ye S, Wang C, Xu Z, et al. (2022) Impaired Human Cardiac Cell Development due to NOTCH1 Deficiency. Circulation Research |
Alonzo M, Contreras J, Ye S, et al. (2022) Characterization of an iPSC line NCHi006-A from a patient with hypoplastic left heart syndrome (HLHS). Stem Cell Research. 64: 102892 |
Manivannan S, Mansfield C, Zhang X, et al. (2022) Single-cell transcriptomic profiling unveils dysregulation of cardiac progenitor cells and cardiomyocytes in a mouse model of maternal hyperglycemia. Communications Biology. 5: 820 |
Choudhury TZ, Garg V. (2022) Molecular genetic mechanisms of congenital heart disease. Current Opinion in Genetics & Development. 75: 101949 |