Background: Coronary inflammation induces dynamic changes in the balance between water and lipid content in perivascular adipose tissue (PVAT), as captured by perivascular Fat Attenuation Index (FAI) in standard coronary CT angiography (CCTA). However, inflammation is not the only process involved in atherogenesis and we hypothesized that additional radiomic signatures of adverse fibrotic and microvascular PVAT remodelling, may further improve cardiac risk prediction. Methods and results: We present a new artificial intelligence-powered method to predict cardiac risk by analysing the radiomic profile of coronary PVAT, developed and validated in patient cohorts acquired in three different studies. In Study 1, adipose tissue biopsies were ob...
ObjectivesWe evaluated the association between pericardial fat and myocardial ischemia for risk stra...
AIMS Perivascular fat attenuation index (FAI) has emerged as a novel coronary computed tomography...
Perivascular adipose tissue (PVAT) surrounding the human coronary arteries, secretes a wide range of...
Background: Coronary inflammation induces dynamic changes in the balance between water and lipid co...
Coronary inflammation is a major driver of cardiovascular disease and has been implicated in all sta...
Background Coronary artery inflammation inhibits adipogenesis in adjacent perivascular fat. A novel ...
Perivascular adipose tissue mapping by means of the coronary CT angiography (CCTA)–derived fat atten...
Early detection of vascular inflammation is a long-standing goal that would allow deployment of targ...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
By use of coronary CT angiography in two large real-life prospective cohorts from completely differe...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
BACKGROUND: Epicardial adipose tissue volume (EAT) is a marker of visceral obesity that can be measu...
This study was aimed to investigate the predictive value of the radiomics features extracted from pe...
ObjectivesWe evaluated the association between pericardial fat and myocardial ischemia for risk stra...
AIMS Perivascular fat attenuation index (FAI) has emerged as a novel coronary computed tomography...
Perivascular adipose tissue (PVAT) surrounding the human coronary arteries, secretes a wide range of...
Background: Coronary inflammation induces dynamic changes in the balance between water and lipid co...
Coronary inflammation is a major driver of cardiovascular disease and has been implicated in all sta...
Background Coronary artery inflammation inhibits adipogenesis in adjacent perivascular fat. A novel ...
Perivascular adipose tissue mapping by means of the coronary CT angiography (CCTA)–derived fat atten...
Early detection of vascular inflammation is a long-standing goal that would allow deployment of targ...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
By use of coronary CT angiography in two large real-life prospective cohorts from completely differe...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
Objectives: To determine the association between radiomics signature (Rad-signature) of pericoronary...
BACKGROUND: Epicardial adipose tissue volume (EAT) is a marker of visceral obesity that can be measu...
This study was aimed to investigate the predictive value of the radiomics features extracted from pe...
ObjectivesWe evaluated the association between pericardial fat and myocardial ischemia for risk stra...
AIMS Perivascular fat attenuation index (FAI) has emerged as a novel coronary computed tomography...
Perivascular adipose tissue (PVAT) surrounding the human coronary arteries, secretes a wide range of...