Is left coronary system more susceptible to atherosclerosis than right? A pathophysiological insight
Yiannis S Chatzizisis1, George D Giannoglou, George E Parcharidis
11st Cardiology Department, AHEPA University General Hospital, Aristotle University Medical School, 1 St. Kyriakidi Street, 54636, Thessaloniki, Greece. joc@med.auth.gr
Insights
Coronary atherosclerosis is more common in the left coronary artery due to differences in blood flow and artery structure. These factors create more stress on the left artery walls, promoting disease development.
Area of Science:
- Cardiovascular Medicine
- Biomedical Engineering
- Pathophysiology
Background:
- Coronary atherosclerosis shows higher prevalence in the left coronary arterial system compared to the right.
- The underlying pathophysiological mechanisms for this discrepancy are not fully understood.
Purpose of the Study:
- To investigate the role of hemodynamic and anatomical differences in the left vs. right coronary artery in the prevalence of coronary atherosclerosis.
- To explore how flow characteristics, geometry, and motion patterns influence the atherogenic environment.
Main Methods:
- Analysis of pathological, angiographical, intravascular ultrasound, and computed tomography data.
- Evaluation of physiological flow patterns and wall stress during the cardiac cycle.
- Assessment of anatomical configuration and phasic motion differences.
Main Results:
- The left coronary artery experiences more non-uniform blood flow with systolic decline and diastolic increment compared to the right.
- Higher intensity of oscillatory shear stress and more oscillatory wall stress are observed in the left coronary system.
- Differences in 3D geometry, branching, and phasic motion contribute to a more atherogenic environment in the left coronary artery.
Conclusions:
- Flow dynamics, geometrical features, and phasic motion patterns in the left coronary artery generate increased oscillatory stress on the arterial wall.
- These augmented oscillatory stresses, combined with systemic risk factors, likely contribute to the higher prevalence of atherosclerosis in the left coronary system.
Abstract:
On the basis of pathological, angiographical, intravascular ultrasound and computed tomography data coronary atherosclerosis appears to be more prevalent in the left coronary arterial system compared to the right. However, the pathophysiological mechanisms implicated in this discrepancy largely remain uncertain. The hemodynamic or anatomical differences between the right and left coronary artery might play a key role. Physiologically, the right coronary flow is more uniform during the cardiac cycle compared to the left, which experiences a remarkable systolic decline accompanied by a significant diastolic increment. Thus, the oscillatory shear stress, that constitutes a proved atherogenic factor, is more intense in regions with disturbed flow in the left coronary system. Likewise, the wall stress is more oscillatory during the cardiac cycle in the left coronary artery. On top of that, several differences regarding the anatomical configuration (3D geometry, branching) and the phasic motion between the right and the left arterial system appear to play a critical role in the modulation of the local atherogenic environment. Therefore, it could be assumed that the flow characteristics along with the geometrical and phasic motion patterns generate an intense oscillation of the imposed to the arterial wall stresses, especially in the left coronary artery. Over the long-term, these augmented oscillatory stresses, in combination with the effect of systemic risk factors, might modulate a more atherogenic environment in the atherosclerosis-prone regions of the left coronary system.
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