Mitochondrial Morphology, Dynamics, and Function in Human Pressure Overload or Ischemic Heart Disease With Preserved or Reduced Ejection Fraction

scientific article published on 01 February 2019

Mitochondrial Morphology, Dynamics, and Function in Human Pressure Overload or Ischemic Heart Disease With Preserved or Reduced Ejection Fraction is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1161/CIRCHEARTFAILURE.118.005131
P698PubMed publication ID30744415

P50authorJoseph A DearaniQ96650505
Margaret M RedfieldQ98243295
P2093author name stringRoger J Hajjar
K Sreekumaran Nair
Simon Maltais
John M Stulak
Lyle D Joyce
David L Joyce
Katherine Klaus
Antoine H Chaanine
P433issue2
P407language of work or nameEnglishQ1860
P921main subjectbiopsyQ179991
aortic valveQ616071
ejection fractionQ641303
coronary artery diseaseQ844935
P304page(s)e005131
P577publication date2019-02-01
P1433published inCirculation: Heart FailureQ2865806
P1476titleMitochondrial Morphology, Dynamics, and Function in Human Pressure Overload or Ischemic Heart Disease With Preserved or Reduced Ejection Fraction
P478volume12

Reverse relations

cites work (P2860)
Q91826290MFN1-dependent alteration of mitochondrial dynamics drives hepatocellular carcinoma metastasis by glucose metabolic reprogramming
Q92064029Mitochondrial ROS-Modulated mtDNA: A Potential Target for Cardiac Aging
Q92519637Morphological Stages of Mitochondrial Vacuolar Degeneration in Phenylephrine-Stressed Cardiac Myocytes and in Animal Models and Human Heart Failure
Q97645720Pyrroloquinoline quinone can prevent chronic heart failure by regulating mitochondrial function

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