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2
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Sci Med Footb. 2022 Aug;6(3):295-308. doi: 10.1080/24733938.2021.2013522. Epub 2021 Dec 19.
3
The effect of bio-banding on physical and psychological indicators of talent identification in academy soccer players.生物绷带对青少年足球运动员选材中身体和心理指标的影响。
Sci Med Footb. 2021 Nov;5(4):280-292. doi: 10.1080/24733938.2020.1862419. Epub 2021 Jan 19.
4
The effect of bio-banding on academy soccer player passing networks: Implications of relative pitch size.生物带宽对学院足球运动员传球网络的影响:相对音高大小的启示。
PLoS One. 2021 Dec 16;16(12):e0260867. doi: 10.1371/journal.pone.0260867. eCollection 2021.
5
The effect of bio-banding on the anthropometric, physical fitness and functional movement characteristics of academy soccer players.生物带宽对学院足球运动员人体测量学、体能和功能性运动特征的影响。
PLoS One. 2021 Nov 29;16(11):e0260136. doi: 10.1371/journal.pone.0260136. eCollection 2021.
6
The influence of season phase on multivariate load relationships in professional youth soccer.赛季阶段对职业青年足球多元负荷关系的影响。
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7
Effect of bio-banding on physiological and technical-tactical key performance indicators in youth elite soccer.生物带宽对青少年精英足球运动员生理和技术战术关键绩效指标的影响。
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9
Relationship Between Subjective and External Training Load Variables in Youth Soccer Players.青少年足球运动员主观与外部训练负荷变量之间的关系
Int J Sports Physiol Perform. 2021 Aug 1;16(8):1127–1133. doi: 10.1123/ijspp.2019-0956. Epub 2021 Feb 19.
10
Monitoring Practices of Training Load and Biological Maturity in UK Soccer Academies.英国足球学院训练负荷和生物成熟度监测实践。
Int J Sports Physiol Perform. 2021 Mar 1;16(3):395-406. doi: 10.1123/ijspp.2019-0624. Epub 2021 Jan 5.

检查生物带小型比赛中不同的感知用力等级(dRPE)。

Examination of differential ratings of perceived exertion (dRPE) during bio-banded small-sided games.

机构信息

Playermaker, London, United Kingdom.

Department of Sport, Health and Exercise Science, University of Hull, Hull, United Kingdom.

出版信息

PLoS One. 2022 Jul 29;17(7):e0270259. doi: 10.1371/journal.pone.0270259. eCollection 2022.

DOI:10.1371/journal.pone.0270259
PMID:35905073
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9337628/
Abstract

The aims of the current study were to investigate the use of dRPE with academy soccer players to: 1) examine the effect of bio-banded and non-bio-banded maturity groups within SSG on players dRPE; 2) describe the multivariate relationships between dRPE measures investigating the sources of intra and inter-individual variation, and the effects of maturation and bio-banding. Using 32 highly trained under (U) 12 to U14 soccer players (mean (SD) age 12.9 (0.9) years, body mass 46.4 (8.5) kg and stature 158.2 (14.9) cm) academy soccer players from two English professional male soccer academies. Players were categorised according to somatic maturity status using estimated percentage of adult stature attainment, with players randomly assigned into teams to play 4v4 SSG. The study used a repeated measures design, whereby the selected players participated within 6 bio-banded (maturity matched [pre-PHV Vs pre-PHV and post-PHV vs post PHV] and miss-matched [pre-PHV vs post-PHV] and 6 mixed maturity SSG at their respective clubs. Using mixed and fixed effect regression models, it was established hat pre-PHV players exhibited higher dRPE compared with their post-PHV counterparts. Mixed bio-banded games reported higher dRPE outputs overall. Variation in dRPE measures across a series of bio-banded games are caused by both between and within sources of variation in relatively equal amounts. Across a series of bio-banded games, the four dRPE measures do not provide unique information, and between variation is best expressed by one or two highly correlated components, with within variation best explained by a single equally loaded component. Using a bio-banding SSG design study, we have shown that pre-PHV players report higher subjective measures of exertion than post-PHV players during. Additionally, when evenly mixing players based on measures of maturation, higher measures of perceived exertion were generally reported.

摘要

本研究的目的是调查 dRPE 在学院足球运动员中的应用:1)检查 SSG 内生物带和非生物带成熟组对球员 dRPE 的影响;2)描述 dRPE 测量的多元关系,研究个体内和个体间变异的来源,以及成熟和生物带的影响。使用来自两个英国职业男性足球学院的 32 名高度训练的 U12 至 U14 足球运动员(平均(SD)年龄 12.9(0.9)岁,体重 46.4(8.5)kg,身高 158.2(14.9)cm)作为参与者。根据估计的成人身高百分比,根据身体成熟状态对运动员进行分类,运动员随机分配到各自俱乐部的 4v4 SSG 中。研究采用重复测量设计,选择的运动员在各自俱乐部参加 6 次生物带(成熟匹配[PHV 前对 PHV 前和 PHV 后对 PHV 后]和错配[PHV 前对 PHV 后]和 6 次混合成熟 SSG)。使用混合和固定效应回归模型,确定 PHV 前运动员的 dRPE 高于 PHV 后运动员。混合生物带游戏总体上报告了更高的 dRPE 输出。一系列生物带游戏中 dRPE 测量的变化是由个体内和个体间变异的来源引起的,两者的变异量大致相等。在一系列生物带游戏中,四个 dRPE 测量值没有提供独特的信息,并且个体间变异最好由一个或两个高度相关的分量来表示,而个体内变异最好由一个单独的同等加载分量来解释。使用生物带 SSG 设计研究,我们表明 PHV 前运动员在运动过程中报告的主观用力程度高于 PHV 后运动员。此外,当根据成熟度测量值均匀混合运动员时,通常会报告更高的感知用力程度。