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Exercise induced changes in echo intensity within the muscle: a brief review

机译:运动诱导肌肉内回声强度的变化:简要审查

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摘要

Echo intensity is the mean pixel intensity of a specific region of interest from an ultrasound image. This variable has been increasingly used in the literature as a physiological marker. Although there has been an increased interest in reporting changes in echo intensity in response to exercise, little consensus exists as to what a change in echo intensity represents physiologically. The purpose of this paper is to review some of the earliest, as well as the most up to date literature regarding the changes in echo intensity in response to exercise. Echo intensity has been used to measure muscle quality, muscle damage, acute swelling, and intramuscular glycogen. The changes in echo intensity, however, are not consistent throughout the literature and often times lead to conclusions that seem contrary to the physiologic effects of exercise. For example, echo intensity increases in conjunction with increases in strength, contrary to what would be expected if echo intensity was a marker of muscle quality/muscle damage. It is conceivable that a change in echo intensity represents a range of physiologic effects at different time points. We recommend that these effects should be determined experimentally in order to rule out what echo intensity might and might not represent. Until this is done, caution should be employed when interpreting changes in echo intensity with acute and chronic exercise.
机译:回声强度是来自超声图像的特定感兴趣区域的平均像素强度。该变量越来越多地用于文献中作为生理标志。虽然在响应运动时,对回声强度的报告变化有所增加,但存在与生理学的回声强度的变化的关系很小。本文的目的是审查一些最早的,以及最新的文献,了解回声强度的变化响应运动。回声强度已用于测量肌肉质量,肌肉损伤,急性肿胀和肌肉内糖原。然而,回声强度的变化在整个文献中并不一致,通常往往导致结论似乎与运动的生理作用相反。例如,回声强度随着强度的增加而增加,与回声强度是肌肉质量/肌肉损伤的标志物的预期相反。可以想到,回声强度的变化代表不同时间点的一系列生理效应。我们建议使用这些效果应该通过实验确定,以便排除可能并且可能不代表的回声强度。直到这是这样的,在用急性和慢性锻炼的回声强度的变化时,应采用小心。

著录项

  • 来源
    《Journal of Ultrasound》 |2020年第4期|457-472|共16页
  • 作者单位

    Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA;

    Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA;

    Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA;

    Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA Faculty of Physical Education and Dance Federal University of Goias Goiania Brazil;

    Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA;

    Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA Kevser Ermin Applied Physiology Laboratory Department of Health Exercise Science and Recreation Management The University of Mississippi 231 Turner Center University MS 38677 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Muscle quality; Edema; Muscle damage; Glycogen content; Fluid shift; Muscle swelling; Ultrasound; Intracellular; Exercise;

    机译:肌肉质量;浮肿;肌肉损坏;糖原含量;流体移位;肌肉肿胀;超声;细胞内;锻炼;

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