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次最大强度到最大强度骑行运动期间腿部肌肉氧饱和度对称性的评估。

Evaluation of leg symmetry in muscle oxygen saturation during submaximal to maximal cycling exercise.

作者信息

Sendra-Pérez Carlos, Priego-Quesada Jose I, Murias Juan M, Carpes Felipe P, Salvador-Palmer Rosario, Encarnación-Martínez Alberto

机构信息

Department of Physical Education and Sports, Research Group in Sports Biomechanics (GIBD), Universitat de València, Valencia, Spain.

Department of Education and Specific Didactics, Jaume I University, Castellon, Spain.

出版信息

Eur J Sport Sci. 2025 Jan;25(1):e12230. doi: 10.1002/ejsc.12230. Epub 2024 Dec 4.

Abstract

It is unclear whether physiological responses, such as muscle oxygen saturation (SmO), can be considered symmetrical during cycling. This knowledge has important practical implications for both training and performance assessment. The aim of this study was to determine whether oxygenation profiles in the three active muscles of both legs were symmetrical during cycling at different intensities. Twenty-six trained cyclists and triathletes completed a graded exercise test (GXT) and an 8-min functional threshold power estimation test (8MTT) on a cycle ergometer over two nonconsecutive days. SmO was bilaterally assessed using NIRS technology in the vastus lateralis, gastrocnemius medialis, and tibialis anterior. Symmetry was compared between legs in both tests, and reliability and agreement between the measurements were quantified. The main results were that SmO in the three muscles assessed did not differ between legs during the GXT and 8MTT (p > 0.05). Reliability of the measures was poor to good in the vastus lateralis (ICC = 0.83-0.37), moderate to excellent in the tibialis anterior (ICC = 0.92-0.73), and poor to good for the gastrocnemius medialis (ICC = 0.80-0.24). Overall, the group variability in SmO showed a narrower distribution at lower intensities, with data dispersion increasing at higher intensities. In conclusion, the SmO was similar and showed symmetrical responses in both the preferred and nonpreferred limb in different muscles assessed during cycling at different intensities within a range of 10%-20%. Although individual physiological differences that might be relevant in some clinical/performance settings should not be disregarded, these findings indicate that measuring a single lower limb provides an accurate approximation of the responses in both lower limbs.

摘要

目前尚不清楚诸如肌肉氧饱和度(SmO)等生理反应在骑行过程中是否可被视为对称。这一认知对于训练和性能评估均具有重要的实际意义。本研究的目的是确定在不同强度骑行过程中,双腿三个活动肌肉的氧合情况是否对称。26名受过训练的自行车运动员和铁人三项运动员在非连续的两天内在自行车测力计上完成了递增运动测试(GXT)和8分钟功能阈值功率估计测试(8MTT)。使用近红外光谱技术对股外侧肌、腓肠肌内侧头和胫骨前肌进行双侧SmO评估。比较了两项测试中双腿之间的对称性,并对测量结果的可靠性和一致性进行了量化。主要结果是,在GXT和8MTT期间,所评估的三块肌肉中的SmO在双腿之间没有差异(p>0.05)。股外侧肌测量的可靠性从差到好(组内相关系数ICC = 0.83 - 0.37),胫骨前肌为中等至优秀(ICC = 0.92 - 0.73),腓肠肌内侧头为差到好(ICC = 0.80 - 0.24)。总体而言,SmO的组内变异性在较低强度时分布较窄,在较高强度时数据离散度增加。总之,在10% - 20%的强度范围内,不同强度骑行时,所评估的不同肌肉中,优势腿和非优势腿的SmO相似且反应对称。尽管在某些临床/性能环境中可能相关的个体生理差异不应被忽视,但这些发现表明,测量单个下肢可准确近似两条下肢的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1d5/11680555/29089e1294ab/EJSC-25-e12230-g001.jpg

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