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首页> 外文期刊>Journal of Biomedical Science and Engineering >Measurement of the exercising blood flow during rhythmical muscle contractions assessed by Doppler ultrasound: Methodological considerations
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Measurement of the exercising blood flow during rhythmical muscle contractions assessed by Doppler ultrasound: Methodological considerations

机译:多普勒超声评估节律性肌肉收缩过程中运动血流量的测量:方法学上的考虑

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摘要

Given the recent technological developments, ultra-sound Doppler can provide valuable measurements of arterial blood flow with high temporal resolution. In a clinical setting, measurements of hemodynamics is used to monitor, diagnose and manage changes in blood velocity profile for cardiac valve disease, relatively large vessel stenosis and other cardiovascular diseases. In health science and preventive medicine for cardiovascular disease with exercise therapy, evaluation of cardiac and vascular function is a useful indicator not only at rest but also during exercise, leading to improved exercise tolerance as well as physical activity. During exercise, the increase in oxygen uptake (calculated as product of arterial blood flow to the exercising limb and the arteriovenous oxygen difference) is directly proportional to the work performed. The increased oxygen demand is met through a central mechanism, an increase in cardiac output and blood pressure, as well as a peripheral mechanism, an increase in vascular conductance and oxygen extraction (major part in the whole exercising muscles) from the blood. Therefore, the determination of the local blood flow dynamics (potential oxygen supply) feeding to rhythmic muscle contractions can contribute to the understanding of the factors limiting the work capacity including, for instance the muscle metabolism, substance utilization and vasodilatation in the exercising muscle. Using non-invasive measures of pulsed Doppler ultrasound the validity of evaluating blood velocity/flow in the fore- arm or lower limb conduit artery feeding to the mus- cle is demonstrated during rhythmic muscle exercise; however the exercising blood velocity profile (fast Fourier transformation) due to muscle contractions is always seen as a physiological variability or fluctuations in the magnitude in blood velocity due to the spontaneous muscle contraction and relaxation induced changes in force curve intensity. Considering the above mentioned variation in blood velocity in relation to muscle contractions may provide valuable information for evaluating the blood flow dynamics during exercise. This review presents the methodological concept that underlines the methodological considerations for determining the exercising blood velocity/flow in the limb conduit artery in relation the exercise model of dynamic leg exercise assessed by pulsed Doppler ultrasonography.
机译:鉴于最近的技术发展,超声多普勒可以提供高时间分辨率的有价值的动脉血流测量。在临床环境中,血液动力学的测量用于监测,诊断和管理心脏瓣膜疾病,相对较大的血管狭窄和其他心血管疾病的血流速度变化。在通过运动疗法治疗心血管疾病的健康科学和预防医学中,心脏和血管功能的评估不仅是静止时的有用指标,而且在运动过程中也是有用的指标,从而提高了运动耐力和身体活动能力。在运动过程中,摄氧量的增加(以流向运动肢体的动脉血量与动静脉氧差的乘积计算)与所从事的工作成正比。通过中央机制,心输出量和血压的增加以及周围机制,血管传导性的增加和从血液中抽氧(占整个运动肌肉的主要部分),可以满足增加的需氧量。因此,确定供给有节奏的肌肉收缩的局部血流动力学(潜在的氧气供应)可以有助于理解限制工作能力的因素,包括例如运动中的肌肉的新陈代谢,物质利用和血管舒张。在有节奏的肌肉锻炼过程中,使用脉冲多普勒超声的非侵入性措施可以评估评估前臂或下肢导管向肌肉供血的血流速度/流量的有效性。然而,由于肌肉收缩而引起的运动血流速度曲线(快速傅立叶变换)总是被视为生理变化或由于自发性肌肉收缩和放松引起的力曲线强度变化而引起的血流速度大小的波动。考虑到上述相对于肌肉收缩的血流速度变化可为评估运动过程中的血流动力学提供有价值的信息。这篇综述提出了方法学概念,该方法论着重于确定与通过脉冲多普勒超声检查评估的动态腿部锻炼的运动模型有关的肢体导管动脉中的锻炼血流速度/流量的方法学考虑。

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