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Tissue Engineering. Part A
|
February 24, 2009
Increased myocyte content and mechanical function within a tissue-engineered myocardial patch following implantation
Damon J Kelly, Amy B Rosen, Adam J T Schuldt, et al.
The American Journal of Clinical Nutrition
|
April 25, 2020
Neonatal diet alters fecal microbiota and metabolome profiles at different ages in infants fed breast milk or formula
Lauren R Brink, Kelly E Mercer, Brian D Piccolo, et al.
The American Journal of Sports Medicine
|
June 4, 2026
Restoration of Anterior Tibial Translation Is Achievable With an Anterior Cruciate Ligament Reconstruction and Ramp Repair With Increasing Posterior Tibial Slope While Medial Meniscus Deficiency Requires Concomitant Slope-Correcting Osteotomy
Matthew T Rasmussen, Benjiman J Wilebski, Luke V Tollefson, et al.
Circulation
|
July 25, 2007
Xenografted adult human mesenchymal stem cells provide a platform for sustained biological pacemaker function in canine heart
Alexei N Plotnikov, Iryna Shlapakova, Matthias J Szabolcs, et al.
Stem Cells (Dayton, Ohio)
|
May 15, 2007
Finding fluorescent needles in the cardiac haystack: tracking human mesenchymal stem cells labeled with quantum dots for quantitative in vivo three-dimensional fluorescence analysis
Amy B Rosen, Damon J Kelly, Adam J T Schuldt, et al.
American Journal of Physiology. Heart and Circulatory Physiology
|
October 7, 2008
Enhanced recovery of mechanical function in the canine heart by seeding an extracellular matrix patch with mesenchymal stem cells committed to a cardiac lineage
Irina A Potapova, Sergey V Doronin, Damon J Kelly, et al.
Circulation
|
August 23, 2006
Wild-type and mutant HCN channels in a tandem biological-electronic cardiac pacemaker
Annalisa Bucchi, Alexei N Plotnikov, Iryna Shlapakova, et al.
Circulation Research
|
February 28, 2004
Human mesenchymal stem cells as a gene delivery system to create cardiac pacemakers
Irina Potapova, Alexei Plotnikov, Zhongju Lu, et al.
Journal of Electrocardiology
|
November 13, 2007
Replacing damaged myocardium
Irina A Potapova, Sergey V Doronin, Damon J Kelly, et al.
Circulation. Arrhythmia and Electrophysiology
|
May 14, 2017
Induced Pluripotent Stem Cell-Derived Cardiomyocytes Provide In Vivo Biological Pacemaker Function
Samuel Chauveau, Evgeny P Anyukhovsky, Meital Ben-Ari, et al.
Page
of 22
Search research articles
Search
Showing results (201-210 of 215) with videos related to
Sort By:
Page
of 22
Tissue Engineering. Part A
|
February 24, 2009
Increased myocyte content and mechanical function within a tissue-engineered myocardial patch following implantation
Damon J Kelly, Amy B Rosen, Adam J T Schuldt, et al.
The American Journal of Clinical Nutrition
|
April 25, 2020
Neonatal diet alters fecal microbiota and metabolome profiles at different ages in infants fed breast milk or formula
Lauren R Brink, Kelly E Mercer, Brian D Piccolo, et al.
The American Journal of Sports Medicine
|
June 4, 2026
Restoration of Anterior Tibial Translation Is Achievable With an Anterior Cruciate Ligament Reconstruction and Ramp Repair With Increasing Posterior Tibial Slope While Medial Meniscus Deficiency Requires Concomitant Slope-Correcting Osteotomy
Matthew T Rasmussen, Benjiman J Wilebski, Luke V Tollefson, et al.
Circulation
|
July 25, 2007
Xenografted adult human mesenchymal stem cells provide a platform for sustained biological pacemaker function in canine heart
Alexei N Plotnikov, Iryna Shlapakova, Matthias J Szabolcs, et al.
Stem Cells (Dayton, Ohio)
|
May 15, 2007
Finding fluorescent needles in the cardiac haystack: tracking human mesenchymal stem cells labeled with quantum dots for quantitative in vivo three-dimensional fluorescence analysis
Amy B Rosen, Damon J Kelly, Adam J T Schuldt, et al.
American Journal of Physiology. Heart and Circulatory Physiology
|
October 7, 2008
Enhanced recovery of mechanical function in the canine heart by seeding an extracellular matrix patch with mesenchymal stem cells committed to a cardiac lineage
Irina A Potapova, Sergey V Doronin, Damon J Kelly, et al.
Circulation
|
August 23, 2006
Wild-type and mutant HCN channels in a tandem biological-electronic cardiac pacemaker
Annalisa Bucchi, Alexei N Plotnikov, Iryna Shlapakova, et al.
Circulation Research
|
February 28, 2004
Human mesenchymal stem cells as a gene delivery system to create cardiac pacemakers
Irina Potapova, Alexei Plotnikov, Zhongju Lu, et al.
Journal of Electrocardiology
|
November 13, 2007
Replacing damaged myocardium
Irina A Potapova, Sergey V Doronin, Damon J Kelly, et al.
Circulation. Arrhythmia and Electrophysiology
|
May 14, 2017
Induced Pluripotent Stem Cell-Derived Cardiomyocytes Provide In Vivo Biological Pacemaker Function
Samuel Chauveau, Evgeny P Anyukhovsky, Meital Ben-Ari, et al.
Page
of 22