Abstract
Xiaosu Wang, Jingdan Yu
Abstract
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crossref
Confidence 100%
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Confidence 99%
openalex
Confidence 95%
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Confidence 92%
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Trends in the clinical and pathological characteristics of cardiac rupture in patients with acute myocardial infarction over 35 years
10.1161/jaha.114.000984 · 2014
Mechanical complications of acute myocardial infarction: a scientific statement from the American Heart Association
10.1161/cir.0000000000000985 · 2021
Time course of cardiac rupture after acute myocardial infarction and comparison of clinical features of different rupture types
10.3389/fcvm.2024.1365092 · 2024
Risk prediction models for cardiac rupture after acute myocardial infarction: a systematic review and meta-analysis
10.3389/fcvm.2026.1721103 · 2026
Development and validation of clinical risk score to predict the cardiac rupture in patients with STEMI
10.1016/j.ajem.2016.12.033 · 2017
A risk score model for predicting cardiac rupture after acute myocardial infarction
10.1097/cm9.0000000000000175 · 2019
Temporal trends and outcomes of mechanical complications in patients with acute myocardial infarction
10.1016/j.jcin.2019.04.039 · 2019
Post-infarction ventricular septal defect: percutaneous or surgical management in the UK national registry
10.1093/eurheartj/ehac511 · 2022
Management of severe mitral regurgitation in patients with acute myocardial infarction: jACC focus seminar 2/5
datacite
Confidence 0%
10.1016/j.jacc.2023.09.840 · 2024
Ventricular pseudoaneurysm and free wall rupture after acute myocardial infarction: jACC focus seminar 4/5
10.1016/j.jacc.2023.10.054 · 2024
Clinical outcomes associated with various microvascular injury patterns identified by CMR after STEMI
10.1016/j.jacc.2024.03.408 · 2024
Intramyocardial hemorrhage and the “wave front” of reperfusion injury compromising myocardial salvage
10.1016/j.jacc.2021.10.034 · 2022
Microvascular obstruction and intramyocardial hemorrhage in reperfused myocardial infarctions: pathophysiology and clinical insights from imaging
10.1016/j.jcmg.2024.02.003 · 2024
Association of intramyocardial hemorrhage with inflammatory biomarkers in patients with ST-segment elevation myocardial infarction
10.1016/j.jacadv.2025.101647 · 2025
Evolution of myocardial tissue injury: a CMR study over a decade after STEMI
10.1016/j.jcmg.2022.02.010 · 2022
Galectin-3 levels and outcomes after myocardial infarction: a population-based study
10.1016/j.jacc.2019.02.046 · 2019
IL (interleukin)-10–STAT3–galectin-3 axis is essential for osteopontin-producing reparative macrophage polarization after myocardial infarction
10.1161/circulationaha.118.035047 · 2018
Growth differentiation factor 15 as a biomarker in cardiovascular disease
10.1373/clinchem.2016.255174 · 2017
Long-term prognostic importance of high levels of sST2 in patient with AMI: a meta-analysis
10.62347/haql3794 · 2024
Predictive value of dynamic changes in RvD1, sST2, and PIV levels for the prognosis of STEMI patients after PCI: a prospective study
10.3389/fcvm.2025.1705808 · 2025
Macrophage CARD9 mediates cardiac injury following myocardial infarction through regulation of lipocalin 2 expression
10.1038/s41392-023-01635-w · 2023
Predictive value of HPSE for major adverse cardiovascular events in patients with ST-segment elevation myocardial infarction
10.3389/fcvm.2026.1743115 · 2026
Machine learning for ECG diagnosis and risk stratification of occlusion myocardial infarction
10.1038/s41591-023-02396-3 · 2023
Use of machine learning models to predict death after acute myocardial infarction
10.1001/jamacardio.2021.0122 · 2021
Transforming cardiovascular care with artificial intelligence: from discovery to practice: jACC state-of-the-art review
10.1016/j.jacc.2024.05.003 · 2024
Value creation through artificial intelligence and cardiovascular imaging: a scientific statement from the American Heart Association
10.1161/cir.0000000000001202 · 2024
Uncovering mitochondrial dynamics–related genes as potential diagnostic biomarkers for acute myocardial infarction
10.3389/fcvm.2026.1755024 · 2026
Calculating the sample size required for developing a clinical prediction model
10.1136/bmj.m441 · 2020
Empagliflozin after acute myocardial infarction
10.1056/nejmoa2314051 · 2024
Antiinflammatory therapy with canakinumab for atherosclerotic disease
10.1056/nejmoa1707914 · 2017
A composite view of cardiac rupture in the United States national registry of myocardial infarction
10.1016/0735-1097(96)00008-3 · 1996
Factors related to heart rupture in acute coronary syndromes in the global registry of acute coronary events
10.1093/eurheartj/ehq061 · 2010
Changes in hospital mortality rates in 425 patients with acute ST-elevation myocardial infarction and cardiac rupture over a 30-year period
10.1161/circulationaha.108.776690 · 2008
Changes in hospital mortality rates in 425 patients with acute ST-elevation myocardial infarction and cardiac rupture over a 30-year period
10.1161/circulationaha.108.776690 · doi-reference
Factors related to heart rupture in acute coronary syndromes in the global registry of acute coronary events
10.1093/eurheartj/ehq061 · doi-reference
A composite view of cardiac rupture in the United States national registry of myocardial infarction
10.1016/0735-1097(96)00008-3 · doi-reference
Antiinflammatory therapy with canakinumab for atherosclerotic disease
10.1056/nejmoa1707914 · doi-reference
Empagliflozin after acute myocardial infarction
10.1056/nejmoa2314051 · doi-reference
Calculating the sample size required for developing a clinical prediction model
10.1136/bmj.m441 · doi-reference
Uncovering mitochondrial dynamics–related genes as potential diagnostic biomarkers for acute myocardial infarction
10.3389/fcvm.2026.1755024 · doi-reference
Value creation through artificial intelligence and cardiovascular imaging: a scientific statement from the American Heart Association
10.1161/cir.0000000000001202 · doi-reference
Transforming cardiovascular care with artificial intelligence: from discovery to practice: jACC state-of-the-art review
10.1016/j.jacc.2024.05.003 · doi-reference
Use of machine learning models to predict death after acute myocardial infarction
10.1001/jamacardio.2021.0122 · doi-reference
Machine learning for ECG diagnosis and risk stratification of occlusion myocardial infarction
10.1038/s41591-023-02396-3 · doi-reference
Predictive value of HPSE for major adverse cardiovascular events in patients with ST-segment elevation myocardial infarction
10.3389/fcvm.2026.1743115 · doi-reference
Macrophage CARD9 mediates cardiac injury following myocardial infarction through regulation of lipocalin 2 expression
10.1038/s41392-023-01635-w · doi-reference
Predictive value of dynamic changes in RvD1, sST2, and PIV levels for the prognosis of STEMI patients after PCI: a prospective study
10.3389/fcvm.2025.1705808 · doi-reference
Long-term prognostic importance of high levels of sST2 in patient with AMI: a meta-analysis
10.62347/haql3794 · doi-reference
Growth differentiation factor 15 as a biomarker in cardiovascular disease
10.1373/clinchem.2016.255174 · doi-reference
IL (interleukin)-10–STAT3–galectin-3 axis is essential for osteopontin-producing reparative macrophage polarization after myocardial infarction
10.1161/circulationaha.118.035047 · doi-reference
Galectin-3 levels and outcomes after myocardial infarction: a population-based study
10.1016/j.jacc.2019.02.046 · doi-reference
Association of intramyocardial hemorrhage with inflammatory biomarkers in patients with ST-segment elevation myocardial infarction
10.1016/j.jacadv.2025.101647 · doi-reference
Microvascular obstruction and intramyocardial hemorrhage in reperfused myocardial infarctions: pathophysiology and clinical insights from imaging
10.1016/j.jcmg.2024.02.003 · doi-reference
Intramyocardial hemorrhage and the “wave front” of reperfusion injury compromising myocardial salvage
10.1016/j.jacc.2021.10.034 · doi-reference
Clinical outcomes associated with various microvascular injury patterns identified by CMR after STEMI
10.1016/j.jacc.2024.03.408 · doi-reference
Ventricular pseudoaneurysm and free wall rupture after acute myocardial infarction: jACC focus seminar 4/5
10.1016/j.jacc.2023.10.054 · doi-reference
Management of severe mitral regurgitation in patients with acute myocardial infarction: jACC focus seminar 2/5
10.1016/j.jacc.2023.09.840 · doi-reference
Post-infarction ventricular septal defect: percutaneous or surgical management in the UK national registry
10.1093/eurheartj/ehac511 · doi-reference
Temporal trends and outcomes of mechanical complications in patients with acute myocardial infarction
10.1016/j.jcin.2019.04.039 · doi-reference
A risk score model for predicting cardiac rupture after acute myocardial infarction
10.1097/cm9.0000000000000175 · doi-reference
Development and validation of clinical risk score to predict the cardiac rupture in patients with STEMI
10.1016/j.ajem.2016.12.033 · doi-reference
Risk prediction models for cardiac rupture after acute myocardial infarction: a systematic review and meta-analysis
10.3389/fcvm.2026.1721103 · doi-reference
Time course of cardiac rupture after acute myocardial infarction and comparison of clinical features of different rupture types
10.3389/fcvm.2024.1365092 · doi-reference
Mechanical complications of acute myocardial infarction: a scientific statement from the American Heart Association
10.1161/cir.0000000000000985 · doi-reference
Trends in the clinical and pathological characteristics of cardiac rupture in patients with acute myocardial infarction over 35 years
10.1161/jaha.114.000984 · doi-reference
Evolution of myocardial tissue injury: a CMR study over a decade after STEMI
10.1016/j.jcmg.2022.02.010 · doi-reference