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Spontaneous Coronary Artery Dissection: Pathophysiological Insights From Optical Coherence Tomography Double-Kissing Culotte Technique for Coronary Bifurcation Stenting - Technical evaluation and comparison with conventional double stenting techniques Developing a Mobile Application for Global Cardiovascular Education Coronary CT Angiographic and Flow Reserve-Guided Management of Patients With Stable Ischemic Heart Disease The Impact of Coronary Physiology on Contemporary Clinical Decision Making Clinical use of intracoronary imaging. Part 1: guidance and optimization of coronary interventions. An expert consensus document of the European Association of Percutaneous Cardiovascular Interventions: Endorsed by the Chinese Society of Cardiology Coronary Physiology in the Cardiac Catheterization Laboratory Physiological Stratification of Patients With Angina Due to Coronary Microvascular Dysfunction Prognostic Implications of Plaque Characteristics and Stenosis Severity in Patients With Coronary Artery Disease Echocardiographic Screening for Pulmonary Hypertension in Congenital Heart Disease

Clinical Trial2020 Dec 11;S1936-878X(20)30941-4.

JOURNAL:JACC Cardiovasc Imaging. Article Link

High-Risk Coronary Plaque Regression After Intensive Lifestyle Intervention in Nonbstructive Coronary Disease: A Randomized Study

J Henzel, C Kępka, M Kruk et al. Keywords: high-risk plaque burden; ASCVD progression; lifestyle intervention; RCT

ABSTRACT

OBJECTIVES - The authors sought to study the impact of diet and lifestyle intervention on changes in atherosclerotic plaque volume and composition.

 

BACKGROUND - Lifestyle and diet modification are the leading strategies to manage coronary artery disease; however, their direct impact on atherosclerosis remains unknown. Coronary plaque composition is related to the risk of future cardiovascular events independent of stenosis severity and can be conveniently evaluated with computed tomography angiography (CTA).

 

METHODS - We enrolled 92 patients (41% women; mean age 60 ± 7.7 years) with nonobstructive (<70% stenosis) coronary atherosclerosis identified by CTA. Participants were randomized (1:1) to either the DISCO (Dietary Intervention to Stop Coronary Atherosclerosis in Computed Tomography) intervention group (systematic follow-up by a dietitian to adhere to the Dietary Approaches to Stop Hypertension nutrition model together with optimal medical therapy [OMT]) or the control group (OMT alone). In all patients, CTA was repeated after 66.9 ± 13.7 weeks. The outcome was change (Δ) in atheroma volume and plaque composition. Based on atherosclerotic tissue attenuation ranges in Hounsfield units (HU), the following components of coronary plaque were distinguished: dense calcium (>351 HU), fibrous plaque (151 to 350 HU), and fibrofatty plaque combined with necrotic core (-30 to 150 HU), referred to as noncalcified plaque.

 

RESULTS - Percent atheroma volume increased in the control arm (Δ = +1.1 ± 3.4%; p = 0.033) versus no significant change in the experimental arm (Δ = +1.0% ± 4.2%; p = 0.127; intergroup p = 0.851). There was a reduction in noncalcified plaque in both the experimental arm (Δ = 51.3 ± 79.5 mm3 [1.7 ± 2.7%]; p < 0.001) and the control arm (Δ = 21.3 ± 57.7 [0.7 ± 1.9%]; p = 0.018), which was greater in the DISCO intervention group (intergroup p = 0.045). No differences in fibrous component or dense calcium changes were observed between the groups.

 

CONCLUSIONS - Controlled diet and lifestyle intervention together with OMT may slow the progression of atherosclerosis and reduce noncalcified plaque volume compared to OMT alone. (Dietary Intervention to Stop Coronary Atherosclerosis in Computed Tomography [DISCO-CT]; NCT02571803)