确保在高强度循环测力仪运动中VO2响应剖面参数准确计算的策略

D. Hill
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引用次数: 2

摘要

通过将运动试验的逐息VO2数据拟合到适当的数学模型中,获得了VO2响应曲线的参数。已经推荐了几种策略来确保或至少提高这些值的准确性。目的本研究的目的是评估两种策略,以提高描述高强度运动中双组分VO2反应的参数估计的准确性。第一种方法是使用来自多个测试的数据,而不仅仅是一个。第二种方法是“平滑”数据,在将数据拟合到双成分模型之前,使用三次呼吸、五次呼吸或七次呼吸的VO2数据滚动平均值。方法20名受试者(8名女性和12名男性)进行6次6分钟高强度(呼吸阈值和最大摄氧量之间)循环测力仪测试。每个测试的逐呼吸数据和平滑数据拟合到一个双成分模型中。将第一次测试的参数估计值以及前两次、前三次、前四次、前五次和所有六次测试的平均值与标准值进行比较,标准值是使用五次呼吸平均值获得的所有六个值的平均值。结果对第一次试验数据的五次呼吸平均值进行建模,生成与标准值密切相关的参数值。来自两个或三个测试的建模数据略微提高了准确性,但改进很小,当包括三个以上的测试时可以忽略不计。根据所需的准确性,即取决于每个参与者的值必须与他或她的“真实”值的接近程度,从一个或两个测试中获得的平滑数据足以计算描述高强度循环运动中双参数VO2响应曲线的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategies to Ensure Accurate Calculation of Parameters of the VO2 Response Profile During Heavy Intensity Cycle Ergometer Exercise
BackgroundThe parameters of the VO2 response profile are obtained by fitting breath-by-breath VO2 data from an exercise test to an appropriate mathematical model. Several strategies have been recommended to ensure, or at least improve, the accuracy of the values.ObjectivesThe purpose of this study was to evaluate two strategies to enhance the accuracy of parameter estimates that describe the two-component VO2 response during heavy intensity exercise. The first was to use data from a number of tests rather than just one. The second was to ‘smooth’ the data, using three-breath, five-breath, or seven-breath rolling averages of the breath-by-breath VO2 data prior to fitting the data to the two-component model.MethodsTwenty participants (eight women and twelve men) performed six 6-min heavy-intensity (midway between the ventilatory threshold and VO2max) cycle ergometer tests. Breath-by-breath data and smoothed data from each test were fit to a two-component model. The parameter estimates from the first test, and the average of the values from the first two, first three, first four, first five, and all six tests were compared against the criterion value, which was the average of all six values obtained using five-breath averages.ResultsModeling five-breath averages of data from the first test generated values for the parameters that were closely related to the criterion values. Modeling data from two or three tests improved the accuracy slightly, but improvements were small, and negligible when more than three tests were included.ConclusionsDepending upon the accuracy required, that is depending upon how close each and every participant’s value must be to his or her ‘true’ value, smoothed data from one or two tests is sufficient to calculate the values that describe the two-parameter VO2 response profile in heavy intensity cycling exercise.
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