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使用个性化人体工程学手柄对单人双桨划船时上肢运动学、神经肌肉活动、感知舒适度及表现的影响。

Influence of using individualised ergonomic handles on upper limb kinematics and neuromuscular activity, perceived comfort and performance during scull rowing.

作者信息

Ertel Geoffrey N, Pitto Lorenzo, Simon Frédéric R, Mornieux Guillaume, Jehl Jean-Philippe, Gauchard Gérome C

机构信息

DevAH, Université de Lorraine, Nancy, France.

CARE Grand Est, Université de Lorraine, Nancy, France.

出版信息

Sports Biomech. 2025 Jul 31:1-19. doi: 10.1080/14763141.2025.2533962.

Abstract

Articular stress, discomfort exposure and the use handles that are not adapted to the task-specific grip during repetitive movements may increase the upper limb injuries risk during boat rowing. Therefore, the purpose of this study was to introduce and evaluate the impact of two individualised ergonomic handles on comfort, upper limb's biomechanics, and performance in scull rowing, compared to standard handles. These two individualised handle designs were based on the irregular hexagon, and one was further individualised with the rower's comfort feedback. Perceived comfort, upper limbs kinematics, and neuromuscular activity, as well as boat speed and power production were monitored for 13 elite rowers. The handles tuned on the rower's comfort feedback increased significantly comfort (9.63 ± 0.3) while maintaining similar performance level (4.22 m.s ± 0.18). The improved comfort ( < 0.001) and the increased wrist extension ( = 0.014) were associated with a better blade orientation feeling. However, the handle orientation setup needs further investigation. Except for Deltoideus Posterior, upper limb neuromuscular parameters, power production and speed were not influenced by the ergonomic handles. New irregular hexagon handle diameters were found for optimal comfort in scull rowing. We recommend individualising irregular hexagon shaped handles for scull rowers wanting to improve comfort.

摘要

在重复性动作过程中,关节压力、不适暴露以及使用不适合特定任务抓握的手柄,可能会增加划船时上肢受伤的风险。因此,本研究的目的是与标准手柄相比,引入并评估两种个性化人体工程学手柄对单人双桨划船时舒适度、上肢生物力学和表现的影响。这两种个性化手柄设计基于不规则六边形,其中一种还根据划船者的舒适度反馈进行了进一步个性化设计。对13名精英划船运动员的感知舒适度、上肢运动学、神经肌肉活动以及船速和功率输出进行了监测。根据划船者舒适度反馈进行调整的手柄在保持相似表现水平(4.22米/秒±0.18)的同时,显著提高了舒适度(9.63±0.3)。舒适度的提高(<0.001)和手腕伸展的增加(=0.014)与更好的划桨方向感觉相关。然而,手柄方向设置需要进一步研究。除了三角肌后部,上肢神经肌肉参数、功率输出和速度不受人体工程学手柄的影响。发现了用于单人双桨划船最佳舒适度的新不规则六边形手柄直径。我们建议为希望提高舒适度的单人双桨划船者定制不规则六边形形状的手柄。

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