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Apoptosis and cardiomyopathy
Jagat Narula
, Frank D. Kolodgie
, Renu Virmani
Research output
:
Contribution to journal
›
Review article
›
peer-review
95
Scopus citations
Overview
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Nursing and Health Professions
Congestive Heart Failure
100%
Myocardial Disease
100%
Cytoplasm Protein
100%
Cytochrome C
100%
Caspase
100%
Cell Death
100%
Heart Transplantation
50%
Heart Muscle Biopsy
50%
Dilatation
50%
Congestive Cardiomyopathy
50%
Ischemic Cardiomyopathy
50%
Systolic Dysfunction
50%
Protein Depletion
50%
Transcription Factors
50%
Mitochondrial Protein
50%
Contractile Protein
50%
Keyphrases
Apoptosis
100%
Cardiomyopathy
100%
Cytochrome c (Cyt c)
33%
Cytoplasmic Proteins
33%
Caspase
33%
Muscle Cells
33%
Heart muscle
33%
Cell Death
16%
Mitochondria
16%
Transcription Factor
16%
Organ System
16%
Heart Failure
16%
Dilated Cardiomyopathy
16%
Mitochondrial Proteins
16%
End-stage Heart Failure
16%
Myocytes
16%
Physiological Processes
16%
Endomyocardial Biopsy
16%
Cardiac Hypertrophy
16%
Cardiac Transplantation
16%
Necrotic Cell Death
16%
Systolic Dysfunction
16%
Explanted Heart
16%
Ischemic Cardiomyopathy
16%
Adult Heart
16%
Protein Loss
16%
Nuclear Fragmentation
16%
Cell Studies
16%
Contractile Proteins
16%
Body Systems
16%
Neurohormonal Activation
16%
Ventricular Dilatation
16%
Nuclear Condensation
16%
Mitochondrium
16%
Medicine and Dentistry
Programmed Cell Death
100%
Myocardial Disease
100%
Cell Death
33%
Congestive Heart Failure
33%
Cytoplasm Protein
33%
Caspase
33%
Cytochrome C
33%
Transcription Factors
16%
Organ Systems
16%
Cell Cycle
16%
Mitochondrion
16%
Dilated Cardiomyopathy
16%
Upregulation
16%
Heart Transplantation
16%
Heart Muscle Biopsy
16%
Systolic Dysfunction
16%
Ischemic Cardiomyopathy
16%
Protein Depletion
16%
Mitochondrial Protein
16%
Contractile Protein
16%
Biochemistry, Genetics and Molecular Biology
Programmed Cell Death
100%
Cell Death
33%
Mitochondrion
33%
Caspase
33%
Cytochrome C
33%
Upregulation
16%
Cell Cycle
16%
Transcription Factors
16%
Dilatation
16%
Contractile Protein
16%