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Optical measurement of blood flow in exercising skeletal muscle: a pilot study

机译:光学测量骨骼肌运动中的血流:一项初步研究

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摘要

Blood flow monitoring during rhythm exercising is very important for sports medicine and muscle dieases. Diffuse correlation spectroscopy(DCS) is a relative new invasive way to monitor blood flow but suffering from muscle fiber motion. In this study we focus on how to remove exercise driven artifacts and obtain accurate estimates of the increase in blood flow from exercise. Using a novel fast software correlator, we measured blood flow in forearm flexor muscles of N=2 healthy adults during handgrip exercise, at a sampling rate of 20 Hz. Combining the blood flow and acceleration data, we resolved the motion artifact in the DCS signal induced by muscle fiber motion, and isolated the blood flow component of the signal from the motion artifact. The results show that muscle fiber motion strongly affects the DCS signal, and if not accounted for, will result in an overestimate of blood flow more than ~1000%. Our measurements indicate rapid dilation of arterioles following exercise onset, which enabled blood flow to increase to a plateau of ~200% in ~10s. The blood flow also rapidly recovered to baseline following exercise in ~10s. Finally, preliminary results on the dependence of blood flow from exercise intensity changes will be discussed.
机译:有节奏的运动过程中的血流监测对于运动医学和肌肉疾病非常重要。弥散相关光谱法(DCS)是一种相对较新的侵入性方法,可监测血流,但会遭受肌肉纤维运动。在这项研究中,我们专注于如何去除运动驱动的假象并获得运动产生的血流增加的准确估计。使用新型快速软件相关器,我们以20 Hz的采样率测量了手握运动期间N = 2健康成年人的前臂屈肌的血流量。结合血流和加速度数据,我们解决了肌肉纤维运动引起的DCS信号中的运动伪影,并从运动伪影中分离了信号的血流成分。结果表明,肌肉纤维运动会强烈影响DCS信号,如果不加以考虑,将导致血流过高估计超过1000%。我们的测量结果表明,运动开始后小动脉快速扩张,这使血流在约10s内增加至200%的平稳期。运动后约10秒钟,血流也迅速恢复至基线。最后,将讨论运动强度变化对血流依赖性的初步结果。

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  • 来源
    《Clinical and preclinical optical diagnostics》|2017年|104110I.1-104110I.4|共4页
  • 会议地点 Munich(DE)
  • 作者单位

    Interdisciplinary Laboratory of Physics and Biomedicine, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, Sichuan Province 621900, PRC,Dept. Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA;

    Dept. Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA;

    Dept. Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA;

    Interdisciplinary Laboratory of Physics and Biomedicine, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, Sichuan Province 621900, PRC;

    Interdisciplinary Laboratory of Physics and Biomedicine, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, Sichuan Province 621900, PRC;

    Dept. Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-26 14:31:01

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