无扭矩因素的等速模式下自行车短跑成绩的可靠性和有效性:对训练有素的男性自行车运动员的初步研究。

Eduardo Marcel Fernandes Nascimento, Fernando Klitzke Borszcz, Thiago Pereira Ventura, Fabrizio Caputo, Luiz Guilherme Antonacci Guglielmo, Ricardo Dantas de Lucas
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A linear function modeled the sprints within each mode to extrapolate maximal cadence (C<sub>MAX</sub>) and torque (T<sub>MAX</sub>), and a quadratic function was used to extrapolate the apex defined as optimal cadence power (OPT<sub>CAD</sub>) and peak power output (P<sub>MAX</sub>). Fifteen subjects performed another 4 sprints at ISO<sub>LIN</sub> mode on different days to verify the reliability. <b>Results:</b> The measures from the power-cadence relationship were not different between the ISO<sub>LIN</sub> and ISO<sub>VEL</sub> modes. Although significant differences were detected in the T-C relationship, T<sub>MAX</sub> was greater at ISO<sub>LIN</sub> than ISO<sub>VEL</sub> (<i>p</i> = .006). On the other hand, C<sub>MAX</sub> was higher at ISO<sub>VEL</sub> than ISO<sub>LIN</sub> (<i>p</i> < .001). The correlation between parameters was <i>large</i> to <i>very large</i> (<i>r</i> = 0.51 to 0.89). However, high limits of agreement were verified. 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引用次数: 0

摘要

目的:本研究旨在比较利用孤立(ISOLIN)和等速(ISOVEL)短跑自行车模式获得的成绩参数。方法:20 名训练有素的男性自行车运动员进行了 2 次等速冲刺:为此,20 名训练有素的男性自行车运动员在电磁制动自行车测力计上以 ISOLIN 模式进行了 2 次 7 秒钟的冲刺,并以 ISOVEL 模式进行了 6 次冲刺,速度介于 90 至 180 rpm 之间,每次冲刺间隔为 3 分钟。每个模式下的冲刺均采用线性函数建模,以推断最大步频(CMAX)和扭矩(TMAX),并采用二次函数推断顶点,即最佳步频功率(OPTCAD)和峰值功率输出(PMAX)。15 名受试者在不同的日期以 ISOLIN 模式进行了另外 4 次冲刺,以验证其可靠性。结果伊索林模式和 ISOVEL 模式的功率-节奏关系测量结果没有差异。虽然在 T-C 关系中发现了明显差异,但 ISOLIN 模式下的 TMAX 要大于 ISOVEL 模式(p = .006)。另一方面,ISOVEL 的 CMAX 比 ISOLIN 高(p 从大到非常大(r = 0.51 到 0.89)。不过,一致性很高。ISOLIN 在试验过程中表现出一致性,随机误差可接受(CV = 5.3% 至 11.5%)。结论利用功率-阶跃关系,两种短跑模式(ISOLIN 和 ISOVEL)之间的 PMAX 和 OPTCAD 检测结果相似。因此,研究结果表明,单一的 ISOLIN 冲刺测试可作为一种合适的工具,用于量化训练有素的男性自行车运动员在自行车运动中和运动后肌肉疲劳的时间过程。
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Reliability and Validity of Cycling Sprint Performance at Isolinear Mode Without Torque Factor: A Preliminary Study in Well-Trained Male Cyclists.

Purpose: This study aimed to compare the performance-derived parameters utilizing isolinear (ISOLIN) and isovelocity (ISOVEL) sprint cycling modes. Method: For that, 20 male trained cyclists performed 2 sprints of 7 s on an electromagnetically braked cycle ergometer in ISOLIN and six sprints in ISOVEL mode with cadences between 90 and 180 rpm, each separated by 3-min. A linear function modeled the sprints within each mode to extrapolate maximal cadence (CMAX) and torque (TMAX), and a quadratic function was used to extrapolate the apex defined as optimal cadence power (OPTCAD) and peak power output (PMAX). Fifteen subjects performed another 4 sprints at ISOLIN mode on different days to verify the reliability. Results: The measures from the power-cadence relationship were not different between the ISOLIN and ISOVEL modes. Although significant differences were detected in the T-C relationship, TMAX was greater at ISOLIN than ISOVEL (p = .006). On the other hand, CMAX was higher at ISOVEL than ISOLIN (p < .001). The correlation between parameters was large to very large (r = 0.51 to 0.89). However, high limits of agreement were verified. The ISOLIN presented consistency during the trials, and the random errors were acceptable (CV = 5.3% to 11.5%). Conclusion: Using the power-cadence relationship, PMAX and OPTCAD could be detected similarly between the two sprint modes (ISOLIN and ISOVEL). Thus, the findings demonstrated that a single ISOLIN sprint test could be a suitable tool for quantifying the time course of muscle fatigue during and after cycling exercises in well-trained male cyclists.

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