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George A Porter

Showing results (51-60 of 76) with videos related to

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JACC. Basic to Translational Science|April 25, 2026
Inhibition of Cyclophilin D Rescues Cardiac Function and Bioenergetic Defects Caused by Neonatal HypoxiaJonathan R Burris, Gisela Beutner, Min Yee, et al.
Biorxiv : the Preprint Server for Biology|February 6, 2026
Dysregulated TGFβ-ERK Signaling Drives Aberrant Extracellular Matrix Production in Noonan Syndrome-Associated Pulmonary Valve StenosisClifford Z Liu, Shrey Patel, Simone Sidoli, et al.
Circulation. Genomic and Precision Medicine|February 7, 2022
Genome-Wide De Novo Variants in Congenital Heart Disease Are Not Associated With Maternal Diabetes or ObesitySarah U Morton, Alexandre C Pereira, Daniel Quiat, et al.
Annals of Clinical and Translational Neurology|November 27, 2023
Association of genetic and sulcal traits with executive function in congenital heart diseaseLara Maleyeff, Jane W Newburger, David Wypij, et al.
Plos Genetics|November 20, 2020
Rare genetic variation at transcription factor binding sites modulates local DNA methylation profilesAlejandro Martin-Trujillo, Nihir Patel, Felix Richter, et al.
American Journal of Human Genetics|April 9, 2022
Neither cardiac mitochondrial DNA variation nor copy number contribute to congenital heart disease riskJon A L Willcox, Joshua T Geiger, Sarah U Morton, et al.
Iscience|January 29, 2025
Noncoding variants and sulcal patterns in congenital heart disease: Machine learning to predict functional impactEnrique Mondragon-Estrada, Jane W Newburger, Steven R DePalma, et al.
Medical Image Analysis|March 23, 2025
Graph-based prototype inverse-projection for identifying cortical sulcal pattern abnormalities in congenital heart diseaseHyeokjin Kwon, Seungyeon Son, Sarah U Morton, et al.
Cell Stem Cell|April 8, 2022
Uncompensated mitochondrial oxidative stress underlies heart failure in an iPSC-derived model of congenital heart diseaseXinxiu Xu, Kang Jin, Abha S Bais, et al.
Communications Medicine|February 6, 2026
Machine learning to infer neurocognitive testing scores among adolescents and young adults with congenital heart diseaseMohammad Arafat Hussain, Sheng He, Heather R Adams, et al.
Pageof 8

Showing results (51-60 of 76) with videos related to

Sort By:
Pageof 8
JACC. Basic to Translational Science|April 25, 2026
Inhibition of Cyclophilin D Rescues Cardiac Function and Bioenergetic Defects Caused by Neonatal HypoxiaJonathan R Burris, Gisela Beutner, Min Yee, et al.
Biorxiv : the Preprint Server for Biology|February 6, 2026
Dysregulated TGFβ-ERK Signaling Drives Aberrant Extracellular Matrix Production in Noonan Syndrome-Associated Pulmonary Valve StenosisClifford Z Liu, Shrey Patel, Simone Sidoli, et al.
Circulation. Genomic and Precision Medicine|February 7, 2022
Genome-Wide De Novo Variants in Congenital Heart Disease Are Not Associated With Maternal Diabetes or ObesitySarah U Morton, Alexandre C Pereira, Daniel Quiat, et al.
Annals of Clinical and Translational Neurology|November 27, 2023
Association of genetic and sulcal traits with executive function in congenital heart diseaseLara Maleyeff, Jane W Newburger, David Wypij, et al.
Plos Genetics|November 20, 2020
Rare genetic variation at transcription factor binding sites modulates local DNA methylation profilesAlejandro Martin-Trujillo, Nihir Patel, Felix Richter, et al.
American Journal of Human Genetics|April 9, 2022
Neither cardiac mitochondrial DNA variation nor copy number contribute to congenital heart disease riskJon A L Willcox, Joshua T Geiger, Sarah U Morton, et al.
Iscience|January 29, 2025
Noncoding variants and sulcal patterns in congenital heart disease: Machine learning to predict functional impactEnrique Mondragon-Estrada, Jane W Newburger, Steven R DePalma, et al.
Medical Image Analysis|March 23, 2025
Graph-based prototype inverse-projection for identifying cortical sulcal pattern abnormalities in congenital heart diseaseHyeokjin Kwon, Seungyeon Son, Sarah U Morton, et al.
Cell Stem Cell|April 8, 2022
Uncompensated mitochondrial oxidative stress underlies heart failure in an iPSC-derived model of congenital heart diseaseXinxiu Xu, Kang Jin, Abha S Bais, et al.
Communications Medicine|February 6, 2026
Machine learning to infer neurocognitive testing scores among adolescents and young adults with congenital heart diseaseMohammad Arafat Hussain, Sheng He, Heather R Adams, et al.
Pageof 8