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手摇车挑战赛训练:对休闲轮椅使用者的训练负荷和手摇车体能的探索性分析。

Training for the HandbikeBattle: an explorative analysis of training load and handcycling physical capacity in recreationally active wheelchair users.

机构信息

Research and Development, Heliomare Rehabilitation Center, Wijk aan Zee, The Netherlands.

University of Groningen, University Medical Center Groningen, Center for Human Movement Sciences, Groningen, The Netherlands.

出版信息

Disabil Rehabil. 2022 Jun;44(12):2723-2732. doi: 10.1080/09638288.2020.1839974. Epub 2020 Nov 4.

Abstract

PURPOSE

(1) to analyze training characteristics of recreationally active wheelchair users during handcycle training, and (2) to examine the associations between training load and change in physical capacity.

METHODS

Former rehabilitation patients ( = 60) with health conditions such as spinal cord injury or amputation were included. Participants trained for five months. A handcycling/arm crank graded exercise test was performed before and after the training period. Outcomes: peak power output per kg (POpeak/kg) and peak oxygen uptake per kg (VOpeak/kg). Training load was defined as Training Impulse (TRIMP), which is rating of perceived exertion (sRPE) multiplied by duration of the session, in arbitrary units (AU). Training intensity distribution (TID) was also determined (time in zone 1, RPE ≤4; zone 2, RPE 5-6; zone 3, RPE ≥7).

RESULTS

Multilevel regression analyses showed that TRIMP was not significantly associated with change in physical capacity. Time in zone 2 (RPE 5-6) was significantly associated with ΔVOpeak, %ΔVOpeak, ΔVOpeak/kg and %ΔVOpeak/kg.

CONCLUSION

Training at RPE 5-6 was the only determinant that was significantly associated with improvement in physical capacity. Additional controlled studies are necessary to demonstrate causality and gather more information about its usefulness, and optimal handcycle training regimes for recreationally active wheelchair users.IMPLICATIONS FOR REHABILITATIONMonitoring of handcycle training load is important to structure the training effort and intensity over time and to eventually optimize performance capacity. This is especially important for relatively untrained wheelchair users, who have a low physical capacity and a high risk of overuse injuries and shoulder pain.Training load can be easily calculated by multiplying the intensity of the training (RPE 0-10) with the duration of the training in minutes.Results on handcycle training at RPE 5-6 intensity in recreationally active wheelchair users suggests to be promising and should be further investigated with controlled studies.

摘要

目的

(1) 分析娱乐性主动轮椅使用者在手摇自行车训练中的训练特征,以及 (2) 研究训练负荷与身体能力变化之间的关系。

方法

纳入了患有脊髓损伤或截肢等健康状况的前康复患者(n=60)。参与者接受了五个月的训练。在训练期前后进行了手摇自行车/臂曲柄递增运动试验。结果:每公斤峰值功率输出 (POpeak/kg) 和每公斤峰值摄氧量 (VOpeak/kg)。训练负荷定义为训练冲动 (TRIMP),即感觉用力等级 (sRPE) 乘以训练时间的乘积,以任意单位 (AU) 表示。还确定了训练强度分布 (TID)(区 1 内的时间,RPE≤4;区 2,RPE 5-6;区 3,RPE≥7)。

结果

多水平回归分析显示,TRIMP 与身体能力变化无显著相关性。区 2 时间(RPE 5-6)与 ΔVOpeak、%ΔVOpeak、ΔVOpeak/kg 和 %ΔVOpeak/kg 显著相关。

结论

RPE 5-6 的训练是唯一与身体能力提高显著相关的决定因素。需要进一步进行对照研究,以证明其因果关系,并收集更多关于其有用性和娱乐性主动轮椅使用者最佳手摇自行车训练方案的信息。

康复意义

监测手摇自行车训练负荷对于随着时间的推移构建训练努力和强度以及最终优化运动能力非常重要。对于相对未经训练的轮椅使用者来说尤其重要,他们的身体能力较低,过度使用损伤和肩部疼痛的风险较高。训练负荷可以通过将训练强度 (RPE 0-10) 与训练持续时间(以分钟为单位)相乘来轻松计算。在娱乐性主动轮椅使用者中进行 RPE 5-6 强度的手摇自行车训练的结果有希望,应该通过对照研究进一步进行调查。

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