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Structural and functional left ventricular impairment in subjects with chronic spinal cord injury and no overt
Insights
Individuals with spinal cord injury (SCI) show early cardiac changes, including left ventricular remodeling. Lifestyle interventions like exercise and weight management are crucial for preventing cardiovascular disease (CVD) in SCI patients.
Area of Science:
- Cardiology
- Sports Medicine
- Rehabilitation Medicine
Background:
- Cardiovascular disease (CVD) is a primary cause of death in individuals with long-term spinal cord injury (SCI).
- Current CVD prevention strategies for SCI require more specific guidance.
- This study investigates cardiac adaptations in individuals with SCI.
Purpose of the Study:
- To assess cardiac structure and function in individuals with SCI compared to able-bodied persons (ABPs).
- To identify factors influencing cardiac adaptations in SCI.
- To inform CVD prevention strategies for the SCI population.
Main Methods:
- Transthoracic echocardiography (TTE) was performed on 47 male subjects with SCI and 83 ABPs.
- Multiple regression analysis evaluated the impact of age, weight, mean arterial pressure (MAP), and physical training on cardiac adaptations.
- Tissue Doppler Imaging (TDI) assessed myocardial velocities.
Main Results:
- Subjects with SCI exhibited increased left ventricular wall thickness and altered diastolic/systolic myocardial velocities compared to ABPs.
- Larger aortic diameters were observed in the SCI group.
- Weight and age were significant independent predictors of left ventricular structure and function in SCI.
Conclusions:
- Individuals with chronic SCI demonstrate early left ventricular remodeling, even without overt cardiovascular risk factors.
- Regular physical exercise and weight control are recommended for all SCI patients to mitigate cardiovascular risk.
- Early lifestyle interventions are vital for preventing CVD development in SCI populations.
Context:
Cardiovascular disease (CVD) is the leading cause of morbidity and mortality in subjects with long-term spinal cord injury (SCI). More specific recommendations for CVD prevention in this population are needed.
Methods:
One hundred thirty male subjects (47 subjects with SCI and 83 able-bodied persons (ABPs), mean age 43.89 ± 1.9 and 45.44 ± 12.2 years; P = 0.48) underwent transthoracic echocardiography (TTE). The effects of age, weight, mean arterial pressure (MAP) and level of physical training on cardiac adaptations were evaluated through multiple regression analysis.
Results:
In subjects with SCI, TTE revealed increased wall thickness (P < 0.05), lower E wave, E/A ratio and early diastolic myocardial relaxation velocity on Tissue Doppler Imaging (TDI) (P < 0.05) and higher systolic myocardial contraction velocity on TDI (0.10 ± 0.02 vs. 0.09 ± 0.02 m/seconds, P = 0.002) and peak systolic pressure to end-systolic volume ratio (3.62 ± 1.39 vs. 2.82 ± 0.90, P < 0.001) compared with ABPs. Aortic diameters were larger in subjects with SCI than ABPs. Differences remained statistically significant even after adjustment for age, weight, MAP, and level of physical training. Weight and age were found to be independent variables that substantially affected left ventricular structure and function in subjects with SCI.
Conclusions:
Subjects with post-traumatic chronic SCI and no overt cardiovascular risk factors, exhibit initial left ventricular remodeling (as assessed by TTE) compared with ABPs. Lifestyle modifications, including regular physical exercise and weight control, should be implemented in all subjects with SCI, even at a very early stage, in order to reduce cardiovascular risk and prevent the development of CVD.
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