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Manfred Boehm

Showing results (11-20 of 115) with videos related to

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Disease Models & Mechanisms|January 10, 2012
The NIH Undiagnosed Diseases Program: bonding scientists and cliniciansWilliam A Gahl, Cornelius F Boerkoel, Manfred Boehm
Stem Cell Research|May 21, 2014
New vessel formation in the context of cardiomyocyte regeneration--the role and importance of an adequate perfusing vasculatureKatherine C Michelis, Manfred Boehm, Jason C Kovacic
Nature Reviews. Nephrology|February 27, 2024
Long-term health outcomes associated with hydration statusNatalia I Dmitrieva, Manfred Boehm, Paul H Yancey, et al.
European Heart Journal|March 29, 2022
Middle age serum sodium levels in the upper part of normal range and risk of heart failureNatalia I Dmitrieva, Delong Liu, Colin O Wu, et al.
Circulation|April 12, 2012
Epithelial-to-mesenchymal and endothelial-to-mesenchymal transition: from cardiovascular development to diseaseJason C Kovacic, Nadia Mercader, Miguel Torres, et al.
Medrxiv : the Preprint Server for Health Sciences|July 29, 2024
Risk for hypertension and heart failure linked to high normal serum sodium and tonicity in electronic medical recordsJonathan Rabinowitz, Mahmoud Darawshi, Nuriel Burak, et al.
European Journal of Preventive Cardiology|April 11, 2025
Risk for hypertension and heart failure linked to high normal serum sodium and tonicity in general healthcare electronic medical recordsJonathan Rabinowitz, Mahmoud Darawshi, Nuriel Burak, et al.
Expert Opinion on Biological Therapy|June 3, 2014
Self-renewal and cell lineage differentiation strategies in human embryonic stem cells and induced pluripotent stem cellsAnastasia G Efthymiou, Guibin Chen, Mahendra Rao, et al.
Ebiomedicine|January 4, 2023
Middle-age high normal serum sodium as a risk factor for accelerated biological aging, chronic diseases, and premature mortalityNatalia I Dmitrieva, Alessandro Gagarin, Delong Liu, et al.
Experimental Cell Research|February 26, 2004
Retinoic acid causes cell growth arrest and an increase in p27 in F9 wild type but not in F9 retinoic acid receptor beta2 knockout cellsRong Li, Teresa N Faria, Manfred Boehm, et al.
Pageof 12

Showing results (11-20 of 115) with videos related to

Sort By:
Pageof 12
Disease Models & Mechanisms|January 10, 2012
The NIH Undiagnosed Diseases Program: bonding scientists and cliniciansWilliam A Gahl, Cornelius F Boerkoel, Manfred Boehm
Stem Cell Research|May 21, 2014
New vessel formation in the context of cardiomyocyte regeneration--the role and importance of an adequate perfusing vasculatureKatherine C Michelis, Manfred Boehm, Jason C Kovacic
Nature Reviews. Nephrology|February 27, 2024
Long-term health outcomes associated with hydration statusNatalia I Dmitrieva, Manfred Boehm, Paul H Yancey, et al.
European Heart Journal|March 29, 2022
Middle age serum sodium levels in the upper part of normal range and risk of heart failureNatalia I Dmitrieva, Delong Liu, Colin O Wu, et al.
Circulation|April 12, 2012
Epithelial-to-mesenchymal and endothelial-to-mesenchymal transition: from cardiovascular development to diseaseJason C Kovacic, Nadia Mercader, Miguel Torres, et al.
Medrxiv : the Preprint Server for Health Sciences|July 29, 2024
Risk for hypertension and heart failure linked to high normal serum sodium and tonicity in electronic medical recordsJonathan Rabinowitz, Mahmoud Darawshi, Nuriel Burak, et al.
European Journal of Preventive Cardiology|April 11, 2025
Risk for hypertension and heart failure linked to high normal serum sodium and tonicity in general healthcare electronic medical recordsJonathan Rabinowitz, Mahmoud Darawshi, Nuriel Burak, et al.
Expert Opinion on Biological Therapy|June 3, 2014
Self-renewal and cell lineage differentiation strategies in human embryonic stem cells and induced pluripotent stem cellsAnastasia G Efthymiou, Guibin Chen, Mahendra Rao, et al.
Ebiomedicine|January 4, 2023
Middle-age high normal serum sodium as a risk factor for accelerated biological aging, chronic diseases, and premature mortalityNatalia I Dmitrieva, Alessandro Gagarin, Delong Liu, et al.
Experimental Cell Research|February 26, 2004
Retinoic acid causes cell growth arrest and an increase in p27 in F9 wild type but not in F9 retinoic acid receptor beta2 knockout cellsRong Li, Teresa N Faria, Manfred Boehm, et al.
Pageof 12