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Published on: January 13, 2012
Physical activity throughout life reduces the atherosclerotic wall process in the carotid artery
M Sandrock1, C Schulze, D Schmitz
1Freiburg University Hospital, Centre for Internal Medicine, Department for Rehabilitative and Preventative Sports Medicine, Freiburg, D-79106, Germany. markus.sandrock@gmx.de
Insights
Good cardiorespiratory fitness is linked to reduced atherosclerosis in the carotid artery. Lifelong physical activity may slow arterial wall changes, with roughness being a more sensitive indicator than intima-media thickness.
Area of Science:
- Cardiovascular disease research
- Vascular biology
- Exercise physiology
Background:
- Cardiorespiratory fitness is associated with reduced atherosclerotic vascular disease events.
- The relationship between fitness and the progression of early atherosclerosis remains unclear.
- Understanding this link is crucial for preventive cardiovascular strategies.
Purpose of the Study:
- To investigate the influence of cardiorespiratory fitness on early atherosclerosis progression in the carotid artery.
- To compare ultrasonographic parameters (intima-media thickness and roughness) between healthy inactive and physically active individuals.
- To determine if cardiorespiratory fitness (Vo2max) is associated with carotid artery atherosclerosis.
Main Methods:
- Utilized a dynamic model with automatic layer detection for carotid artery wall process analysis.
- Compared two groups: healthy inactive (PIP) and healthy lifelong physically active (PA) middle-aged men.
- Assessed cardiorespiratory fitness (Vo2max), cardiovascular risk factors, and carotid ultrasound parameters (IMT, roughness).
Main Results:
- Physically active individuals exhibited significantly lower carotid artery roughness compared to inactive individuals.
- No significant difference in intima-media thickness (IMT) was observed between the groups.
- Cardiorespiratory fitness (Vo2max) showed an inverse association with carotid atherosclerotic parameters.
Conclusions:
- Good cardiorespiratory fitness is associated with reduced atherosclerosis in the common carotid artery.
- Arterial roughness appears more sensitive than IMT in characterizing arterial wall changes.
- Measuring roughness alongside IMT may provide additional insights into atherosclerosis progression.
Background:
Good cardiorespiratory fitness has been associated with a reduced risk for clinical events of atherosclerotic vascular diseases. It is still unclear how this relates to a slower progression of the early atherosclerosis wall process.
Method:
Using a dynamic model, we generated new parameters for describing the pathologic wall process in the carotid artery, based on an automatic layer detection system. In this study, we scrutinised the influence of two ultrasonographic parameters, intima-media thickness (IMT) and roughness, by comparing two groups: a healthy inactive group (PIP) (mean (SD) age 64.37 (5.10) years; n = 50) and a healthy lifelong physically active group (PA) (mean (SD) age 64.48 (3.45) years; n = 51). All subjects underwent a blood test, spiroergometry, echocardiography and carotid ultrasound examination.
Results:
There was a significant difference in the well known risk factors for cardiovascular disease (for example, high density lipoprotein cholesterol, triglyceride) between groups. PIP compared to PA had a significantly higher roughness (PIP 0.073 (0.015) vs PA 0.065 (0.0156); p<0.01). No significantly higher IMT was found for PIP (PIP 0.89 (0.18) vs PA 0.90 (0.22); p = 0.63) compared to PA. In this cross sectional study of middle aged men, Vo(2)max was inversely associated with carotid atherosclerotic parameters.
Conclusion:
In this study, good cardiorespiratory fitness was associated with an increase of the proven risk factors and a reduction of atherosclerosis in the common carotid artery. Roughness seems to be significantly more sensitive than IMT for characterising the changes of the arterial wall. We suggest measuring roughness in addition to IMT to gain additional information about the atherosclerotic wall.
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