Rodrigues B, Santana AA, Santamarina AB et al (2014) Role of training and detraining on
inflammatory and metabolic profile in infarcted rats: influences of cardiovascular autonomic
nervous system. Mediat Inflamm 2014:207131
Rodrigues F, Feriani DJ, Barboza CA et al (2014) Cardioprotection afforded by exercise train-
ing prior to myocardial infarction is associated with autonomic function improvement. BMC
Cardiovasc Disord 14:84
Grans CF, Feriani DJ, Abssamra ME et al (2014) Resistance training after myocardial infarc-
tion in rats: its role on cardiac and autonomic function. Arq Bras Cardiol 103(1):60–68
Chen Z, Siu B, Ho YS et al (1998) Overexpression of MnSOD protects against myocardial
ischemia/reperfusion injury in transgenic mice. J Mol Cell Cardiol 30(11):2281–2289
Wang P, Chen H, Qin H et al (1998) Overexpression of human copper, zinc-superoxide dis-
mutase (SOD1) prevents postischemic injury. Proc Natl Acad Sci 95(8):4556–4560
Xu X, Wan W, Powers AS et al (2008) Effects of exercise training on cardiac function and
myocardial remodeling in post myocardial infarction rats. J Mol Cell Cardiol 44(1):114–122
Lobo Filho HG, Ferreira NL (2011) Experimental model of myocardial infarction induced by
isoproterenol in rats. Rev Bras Cir Cardiovasc 26(3):469–476
American College of Sports Medicine Position Stand (1998) The recommended quantity and
quality of exercise for developing and maintaining cardiorespiratory and muscular fitness, and
flexibility in healthy adults. Med Sci Sports Exerc 30(6):975–991
Artinian NT, Fletcher GF, Mozaffarian D et al (2010) Interventions to promote physical activ-
ity and dietary lifestyle changes for cardiovascular risk factor reduction in adults a scientific
statement from the American Heart Association. Circulation 122(4):406–441
Kraus WE, Bittner V, Appel L et al (2015) The National Physical Activity Plan: a call to action
from the American Heart Association a science advisory from the American Heart Association.
Circulation 131(21):1932–1940
Bito V, De Waard MC, Biesmans L et al (2010) Early exercise training after myocardial
infarction prevents contractile, but not electrical remodeling or hypertrophy. Cardiovasc Res
86(1):72–81
Puhl SL, Müller A, Wagner M et al (2015) Exercise limits scar thinning after myocardial
infarction in mice. Am J Physiol Heart Circ Physiol 309(2):345–359
Westman PC, Lipinski MJ, Luger D et al (2016) Inflammation as a driver of adverse left ven-
tricular remodeling after acute myocardial infarction. J Am Coll Cardiol 67(17):2050–2060
Nakamura K, Fushimi K, Kouchi H et al (1998) Inhibitory effects of antioxidants on neo-
natal rat cardiac myocyte hypertrophy induced by tumor necrosis factor-α and angiotensin
II. Circulation 98(8):794–799
Frederico MJ, Justo SL, Da Luz G et al (2009) Exercise training provides cardioprotection via
a reduction in reactive oxygen species in rats submitted to myocardial infarction induced by
isoproterenol. Free Radic Res 43(10):957–964
Hori M, Nishida K (2009) Oxidative stress and left ventricular remodelling after myocardial
infarction. Cardiovasc Res 81(3):457–464
Talman V, Ruskoaho H (2016) Cardiac fibrosis in myocardial infarction—from repair and
remodeling to regeneration. Cell Tissue Res 365(3):563–581
Bozi LHM, dos Santos IRCM, Baldo MP et al (2013) Exercise training prior to myocardial
infarction attenuates cardiac deterioration and cardiomyocyte dysfunction in rats. Clinics
68(4):549–556
Yengo CM, Zimmerman SD, McCormick RJ et al (2012) Exercise training post-MI favorably
modifies heart extracellular matrix in the rat. Med Sci Sports Exerc 44(6):1005–1012
Melo SF, Fernandes T, Baraúna VG et al (2014) Expression of microRNA-29 and collagen in
cardiac muscle after swimming training in myocardial-infarcted rats. Cell Physiol Biochem
33(3):657–669
Freimann S, Scheinowitz M, Yekutieli D et al (2005) Prior exercise training improves the out-
come of acute myocardial infarction in the rat: heart structure, function, and gene expression.
J Am Coll Cardiol 45(6):931–938