Magnetic Resonance Technique in the Assessment of Exercise-induced Long- and Short-Term Changes in Cardiac Function and Morphology
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 30
- 试验地点
- 1
- 主要终点
- cardiac fibrosis (area in cm^2) on late contrast enhanced MR images
研究概览
简要总结
Until now it has been assumed that regular endurance training has a positive influence on cardiac function and that the positive effect increases with increasing intensity. However, little is known about the effects of intense endurance stress on the heart. According to current knowledge repeated exposure to strenuous endurance activity may lead to minor but possibly irreversible damage to the heart with resultant scarring of the heart's muscle.
Within this study the investigators attempt to find out by different analytical methods - in particular magnetic resonance imaging (MRI) and ultrasound of the heart - to what extent the heart muscle is affected by long term intense endurance exercise and which changes in cardiac function and morphology can possibly be found. Therefore the investigators compare former national competitive endurance athletes with sedentary controls.
详细描述
Background
Despite the well documented cardio-protective effects of aerobic exercise of moderate intensity, short- and long-term consequences of strenuous exercise are less clear. There is increasing evidence that maintaining a high cardiac workload over a prolonged duration may result in transient impairment of cardiac function. Recent studies have also reported a transient increase in cardiac biomarkers after prolonged strenuous exercise. While in patients with cardiac disease the presence of cardiac dysfunction and increased cardiac biomarkers generally reflects myocardial damage, the impact of these observations in athletes is ill defined. It is a matter of concern whether in athletes such findings simply reflect a reversible response or whether repetitive events may lead to an accumulative cardiac damage. Traditional echocardiographic methods used to determine potential cardiac changes in morphology or function are investigator-dependent and may be subject to interference by cardiac pre- and afterload. Cardiac magnetic resonance imaging provides an investigator-independent and objective method to quantify cardiac dimensions and function. Delayed contrast enhancement MR imaging is a highly reproducible cardiovascular magnetic resonance imaging technique to directly visualize myocardial edema, necrosis and fibrosis.
Objective
To use cardiac and delayed contrast enhancement magnetic resonance imaging in combination with echocardiographic methods to to assess whether athletes involved in prolonged strenuous exercise over years reveal persistent alterations of cardiac morphology and function.
Methods
研究设计
- 研究类型
- Observational
- 观察模型
- Case Control
- 时间视角
- Cross Sectional
入排标准
- 年龄范围
- 40 Years 至 65 Years(Adult, Older Adult)
- 性别
- Male
- 接受健康志愿者
- 否
入选标准
- •Age 40-65y
- •history of national competitive endurance running (cases)
- •no history of endurance running (controls)
- •Exclusion Criteria
- •Contraindication for MRI
- •History of relevant cardiac disease (including cardiomyopathies)
- •coronary heart disease
- •coronary abnormalities
- •cardiovascular risk factors
- •History of any chronic disease
- •drug abuse
- •Arrhythmias which make adequate echocardiography unfeasible (such as atrial fibrillation or bundle-branch blocks)
排除标准
- 未提供
结局指标
主要结局
cardiac fibrosis (area in cm^2) on late contrast enhanced MR images
时间窗: at subject enrollment (cross-sectional design)
次要结局
- stress-ECG(at subject enrollment (cross-sectional design))
- various parameters of cardiac function and morphology assessed with MRI and echocardiography(at subject enrollment (cross-sectional design))
- resting-ECG(at subject enrollment (cross-sectional design))
- blood analyses(at subject enrollment (cross-sectional design))
- systolic/diastolic function and contractility measured by echocardiography(at subject enrollment (cross-sectional design))
- anthropometric data(at subject enrollment (cross-sectional design))
- VO2max(at subject enrollment (cross-sectional design))
