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artículu científicu espublizáu en 2016 artigo científico wetenschappelijk artikel scientific article published on December 2016 наукова стаття, опублікована в грудні 2016 مقالة علمية نشرت في ديسمبر 2016 vetenskaplig artikel vědecký článek articolo scientifico wissenschaftlicher Artikel vedecký článok article scientifique videnskabelig artikel article científic научни чланак bilimsel makale
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Robert E Gerszten J Travis Hinson Christopher S Chen Sean M Wu Kiran Musunuru Hiroko Wakimoto Rajat M Gupta Jonathan G Seidman Andre Lowe Kehan Zhang Anant Chopra Joshua Gorham Calvin C Sheng Michael A Burke Rajarajan Kuppusamy
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Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis.
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Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis.
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Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis.
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