Affiliation:
1. Shanxi Open University, Xi’an, Shaanxi 710000, China
Abstract
The main test objective of cardiopulmonary function is the maximum oxygen uptake. In order to identify the maximum oxygen uptake, this study constructs the maximum oxygen uptake recognition regression equation of exercise training respiration and heart rate. Students were selected from high school and randomly assigned to modeling and experimental groups. In the first phase, the general physical characteristics of more than 200 people and whether the vehicle load has increased are directly checked, relevant information is collected, and the indicators, such as age, height, weight, body weight, heart rate, and regression equation, are compared. Predictive model: the results show that the F value in Model 5 is 102.948, much less than 0.000, and much less than 0.001, indicating maximum load, weight, sex, maximum heart rate, BMI, and maximum oxygen uptake. Therefore, the predictive models used to determine body weight, maximum load, sex, maximum heart rate, BMI independent variable, and VO2max as a dependent variable were reliable. The results of the Durbin Watson test are 1,639, indicating that the independence of the terminology of the recognition error in the regression model is good.
Reference25 articles.
1. Formation and regression of the ebro delta: ethical implications of human intervention (tree cutting and dam construction) in the natural environment;J. Armengou;The Journal of Physical Chemistry A,2015
2. Construction of rotation symmetric bent functions with maximum algebraic degree
3. Construction of near-infrared light-triggered reactive oxygen species-sensitive (UCN/SiO2-RB + DOX)@PPADT nanoparticles for simultaneous chemotherapy and photodynamic therapy
4. Theoretical analysis of the optimal free responses of graph-based sfa for the design of training graphs;A. N. Escalante-B;Journal of Machine Learning Research,2016
5. Construction of surface lattice oxygen in metallic n-cucos_(1.97) porous nanowire for wearable zn-air battery;B. Jie Yin;Journal of Energy Chemistry,2019
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献