BrogenRAAlabasOAlmudarraS, et al.Relative survival and excess mortality following primary percutaneous coronary intervention for ST-elevation myocardial infarction. Eur Heart J Acute Cardiovasc Care2019; 8: 68–77.
2.
RosamondWDChamblessLEHeissG, et al.Twenty-two-year trends in incidence of myocardial infarction, coronary heart disease mortality and case fatality in 4 US communities, 1987–2008. Circulation2012; 125: 1848–1857.
3.
HuberCAMeyerMRSteffelJ, et al.Post-myocardial infarction (MI) care: Medication adherence for secondary prevention after mi in a large real-world population. Clin Ther2019; 41: 107–117.
4.
ArtinianNTFletcherGFMozaffarianD, et al.Interventions to promote physical activity and dietary lifestyle changes for cardiovascular risk factor reduction in adults: A scientific statement from the American Heart Association. Circulation2010; 122: 406–441.
5.
GauthierSReisbergBZaudigM, et al.Mild cognitive impairment. Lancet2006; 367: 1262–1270.
6.
Prevalence and patterns of cognitive impairment in acute coronary syndrome patients: A systematic review. Eur J Prev Cardiol. 2020; 27: 284–293.
7.
GuSZBeskaBChanD, et al.Cognitive decline in older patients with non-ST elevation acute coronary syndrome. J Am Heart Assoc2019; 8: e011218–e011218.
8.
DouQWangWWangH, et al.Prognostic value of frailty in elderly patients with acute coronary syndrome: A systematic review and meta-analysis. BMC Geriatr2019; 19: 222–222.
9.
SilvaMPereiraERochaA, et al.Neurocognitive impairment after acute coronary syndrome: Prevalence and characterization in a hospital-based cardiac rehabilitation program sample. J Cardiovasc Thorac Res2018; 10: 70–75.
10.
BrietCBlanchartKLemaîtreA, et al.Bedside mental status and outcome in elderly patients admitted for acute coronary syndromes. Heart2019; 105: 1635–1641.
11.
GreavesDPsaltisPJRossTJ, et al.Cognitive outcomes following coronary artery bypass grafting: A systematic review and meta-analysis of 91,829 patients. Int J Cardiol2019; 289: 43–49.
12.
SalzwedelAHeidlerMDMengK, et al.Impact of cognitive performance on disease-related knowledge six months after multi-component rehabilitation in patients after an acute cardiac event. Eur J Prev Cardiol2019; 26: 45–55.
13.
SheaYFLeeMCMokMM, et al.Prevalence of cognitive impairment among peritoneal dialysis patients: A systematic review and meta-analysis. Clin Exp Nephrol2019; 23: 1221–1234.
14.
VolonghiIPendleburySTWelchSJ, et al.Cognitive outcomes after acute coronary syndrome: A population based comparison with transient ischaemic attack and minor stroke. Heart2013; 99: 1509–1514.
15.
MarzecLNCareyEPLambert-KerznerAC, et al.Cognitive dysfunction and poor health literacy are common in veterans presenting with acute coronary syndrome: Insights from the MEDICATION study. Patient Prefer Adherence2015; 9: 745–751.
16.
BielasHMeister-LangrafRESchmidJP, et al.C-reactive protein as a predictor of posttraumatic stress induced by acute myocardial infarction. Gen Hosp Psychiatry2018; 53: 125–130.
17.
CelanoCMMillsteinRABedoyaCA, et al.Association between anxiety and mortality in patients with coronary artery disease: A meta-analysis. Am Heart J2015; 170: 1105–1115.
18.
MeijerAConradiHJBosEH, et al.Prognostic association of depression following myocardial infarction with mortality and cardiovascular events: A meta-analysis of 25 years of research. Gen Hosp Psychiatry2011; 33: 203–216.
19.
PogosovaNKotsevaKDe BacquerD, et al.Psychosocial risk factors in relation to other cardiovascular risk factors in coronary heart disease: Results from the EUROASPIRE IV survey. A registry from the European Society of Cardiology. Eur J Prev Cardiol2017; 24: 1371–1380.