首页> 外文期刊>Journal of biomedical optics >Underwater near-infrared spectroscopy measurements of muscle oxygenation: laboratory validation and preliminary observations in swimmers and triathletes
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Underwater near-infrared spectroscopy measurements of muscle oxygenation: laboratory validation and preliminary observations in swimmers and triathletes

机译:水下肌肉的氧合近红外光谱测量:游泳运动员和铁人三项运动员的实验室验证和初步观察

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摘要

The purpose of this research was to waterproof a near-infrared spectroscopy device (PortaMon, Artinis Medical Systems) to enable NIR measurement during swim exercise. Candidate materials were initially tested for waterproof suitability by comparing light intensity values during phantom-based tissue assessment. Secondary assessment involved repeated isokinetic exercises ensuring reliability of the results obtained from the modified device. Tertiary assessment required analysis of the effect of water immersion and temperature upon device function. Initial testing revealed that merely covering the PortaMon light sources with waterproof materials considerably affected the NIR light intensities. Modifying a commercially available silicone covering through the addition of a polyvinyl chloride material (impermeable to NIR light transmission) produces an acceptable compromise. Bland-Altman analysis indicated that exercise-induced changes in tissue saturation index (TSI %) were within acceptable limits during laboratory exercise. Although water immersion had a small but significant effect upon NIR light intensity, this resulted in a negligible change in the measured TSI (%). We then tested the waterproof device in vivo illustrating oxygenation changes during a 100 m freestyle swim case study. Finally, a full study compared club level swimmers and triathletes. Significant changes in oxygenation profiles when comparing upper and lower extremities for the two groups were revealed, reflecting differences in swim biomechanics.
机译:这项研究的目的是为近红外光谱仪设备(PortaMon,Artinis Medical Systems)提供防水功能,以便在游泳运动中进行近红外测量。最初通过比较基于幻像的组织评估中的光强度值来测试候选材料的防水适用性。二级评估涉及重复的等速运动,以确保从改进型设备获得的结果的可靠性。第三级评估需要分析浸水和温度对设备功能的影响。初步测试表明,仅用防水材料覆盖PortaMon光源会大大影响NIR的光强度。通过添加聚氯乙烯材料(不透射近红外光)来修改市售的有机硅覆盖层会产生可接受的折衷。 Bland-Altman分析表明,运动引起的组织饱和指数(TSI%)的变化在实验室运动期间处于可接受的范围内。尽管浸入水中对NIR的光强度影响很小,但影响很大,但这导致测得的TSI(%)的变化可忽略不计。然后,我们在100 m自由泳游泳案例研究中对防水装置进行了体内测试,以说明氧合作用的变化。最后,一项全面的研究比较了俱乐部级别的游泳运动员和铁人三项运动员。当比较两组的上肢和下肢时,发现了氧合曲线的显着变化,反映了游泳生物力学的差异。

著录项

  • 来源
    《Journal of biomedical optics》 |2014年第12期|127002.1-127002.10|共10页
  • 作者单位

    University of Essex, Centre for Sport and Exercise Sciences, School of Biological Sciences, Wivenhoe Park, Colchester CO4 3SQ, United Kingdom;

    Artinis Medical Systems, A Einsteinweg 17, 6662 PW Elst, The Netherlands;

    University of Essex, Centre for Sport and Exercise Sciences, School of Biological Sciences, Wivenhoe Park, Colchester CO4 3SQ, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    near-infrared spectroscopy; reliability; swimming; triathlete; muscle; waterproof;

    机译:近红外光谱可靠性;游泳的;铁人三项肌肉;防水;

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