PubMed Health⌕ Search

PubMed · 15216748

[Coronary collateral circulation].

Abstract

Coronary collaterals are anastomotic connections without an intervening capillary bed between portions of the same coronary artery and between different coronary arteries. The main determinants of coronary collateral circulation are preinfarction angina, severity of coronary artery disease, significant pressure gradient and an increase in shear stress. In presence of pressure gradient the blood flow is redistributed through the preexistent arterioles that connect a high-pressure with a low-pressure area. The consequence is an increased flow velocity and therefore increased shear stress in the collateral arteries, which leads to a marked activation of the endothelium with the subsequent morphological changes, vascular remodeling and activation of growth factors involved in angiogenesis and arteriogenesis. Well-developed coronary collateral circulation can be observed in 25% to 37% of patients with one vessel coronary artery disease and in 74.7% patients with extensive disease. Recruitable collaterals can be evaluated by performing coronary angiography, a qualitative or semiquantitative technique and by measurement of pressure and velocity in distal vascular beds (quantitative technique). Demonstration of well-developed collaterals in patients with angina pectoris or myocardial infarction has been associated with limited infarct size, improved ventricular function, less ventricular aneurysm formation and improved in-hospital and long-term survival.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Guering Eid-Lidt. [Coronary collateral circulation].. https://pubmed.ncbi.nlm.nih.gov/15216748/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Comparison of stress-induced myocardial ischemia in patients with and without coronary arterial collaterals.

Coronary artery collaterals may have a protective role against myocardial ischemia at rest. However, their role during stress is controversial and poorly defined. We evaluated 212 consecutive patients (57 +/- 16 years; 70% men) who underwent coronary angiography and stress echocardiography within a 3-month period. This cohort of patients (all had significant epicardial coronary artery disease) was divided into 3 groups based on the presence and type of collaterals: group A, no collaterals; group B, collaterals supplied by vessels without flow-limiting stenosis; and group C, collaterals supplied by vessels with flow-limiting stenosis. In all patients, angiographic jeopardy score, ejection fraction, and regional and cumulative wall motion score indexes (WMSIs) at rest and during stress were evaluated. Angiographic jeopardy scores were 2.9, 3.5, and 7.3 for groups A, B, and C, respectively. Baseline ejection fraction was similar between groups A and B (48% vs 46%, p = NS) but lower in group C (31%, p <0.01). During stress echocardiography, all groups demonstrated a significant increase in WMSI from baseline (WMSI at rest vs that during stress 1.72 +/- 0.06 vs 1.79 +/- 0.04 for group A, 1.97 +/- 0.06 vs 2.09 +/- 0.03 for group B, 2.35 +/- 0.11 vs 2.41 +/- 0.07 for group C; p <0.01 for all groups). In addition, the number of ischemic segments increased significantly in all groups (2.96 +/- 0.07 in group A vs 4.52 +/- 0.11 in group B vs 5.61 +/- 0.13 in group C, p <0.01). Coronary artery collaterals do not offer protection against stress-induced myocardial ischemia. Moreover, the presence of jeopardized angiographic coronary collaterals (group C) is associated with a higher angiographic jeopardy score, higher baseline WMSI, and decreased ejection fraction.

Collateral Circulation↗

Usefulness of myocardial contrast echocardiography in predicting collateral blood flow in the presence of a persistently occluded acute myocardial infarction-related coronary artery.

Adequate collateral blood flow at rest can sustain myocardial viability despite persistent occlusion of the infarct-related artery (IRA) in acute myocardial infarction (AMI). This has therapeutic and prognostic implications. Studies addressing the value of intravenous myocardial contrast echocardiography (MCE) to detect collateral blood flow after AMI in humans are limited. Accordingly, 70 consecutive patients with AMI underwent low-power intravenous MCE using a Sonovue infusion 7 to 10 days after thrombolysis. Myocardial perfusion detected by MCE was analyzed (qualitatively and quantitatively) in the akinetic segments in 20 patients (29%) with an occluded IRA who subsequently underwent revascularization. Contractile reserve, which is a marker of myocardial viability, was assessed with low-dose dobutamine 12 weeks after mechanical revascularization. Of the 102 akinetic segments (32%), 37 (36%) showed contractile reserve. Contractile reserve was present in 24 of the 29 segments (83%) with homogenous contrast opacification and absent in 60 of the 73 segments (82%) with reduced/absent opacification. Quantitative peak contrast intensity, microbubble velocity, and myocardial blood flow were significantly higher (p <0.0001) in the segments with contractile reserve than in those without contractile reserve. Multiple logistic regression analysis using electrocardiographic, biochemical, and myocardial contrast echocardiographic markers of collateral blood flow showed that MCE (odds ratio 26.0, 95% confidence interval 6.3 to 108.0, p <0.001) was the only independent predictor of collateral blood flow as demonstrated by the presence of contractile reserve. MCE may thus be used as a reliable bedside technique for the accurate evaluation of collateral blood flow in the presence of an occluded IRA after AMI.

Collateral Circulation↗