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A Biomechanical Assessment of Ergometer Task Specificity in Elite Flatwater Kayakers

机译:优秀的平水皮划艇运动员测功计任务特异性的生物力学评估。

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摘要

The current study compared EMG, stroke force and 2D kinematics during on-ergometer and on-water kayaking. Male elite flatwater kayakers (n = 10) performed matched exercise protocols consisting of 3 min bouts at heart and stroke rates equivalent to 85% of VO2peak (assessed by prior graded incremental test). EMG data were recorded from Anterior Deltoid (AD), Triceps Brachii (TB), Latissimus Dorsi (LD) and Vastus Lateralis (VL) via wireless telemetry. Video data recorded at 50 Hz with audio triggers pre- and post-exercise facilitated synchronisation of EMG and kinematic variables. Force data were recorded via strain gauge arrays on paddle and ergometer shafts. EMG data were root mean squared (20ms window), temporally and amplitude normalised, and averaged over 10 consecutive cycles. In addition, overall muscle activity was quantified via iEMG and discrete stroke force and kinematic variables computed. Significantly greater TB and LD mean iEMG activity were recorded on-water (239 ± 15 vs. 179 ± 10 μV. s, p < 0.01 and 158 ± 12 vs. 137 ± 14 μV.s, p < 0.05, respectively), while significantly greater AD activity was recorded on-ergometer (494 ± 66 vs. 340 ± 35 μV.s, p < 0.01). Time to vertical shaft position occurred significantly earlier on-ergometer (p < 0.05). Analysis of stroke force data and EMG revealed that increased AD activity was concurrent with increased external forces applied to the paddle shaft at discrete phases of the on-ergometer stroke cycle. These external forces were associated with the ergometer loading mechanism and were not observed on- water. The current results contradict a previous published hypothesis on shoulder muscle recruitment during on-water kayaking.Key points class="unordered" style="list-style-type:disc">When exercising at fixed heart and stroke rates, biomechanical differences exist between onergometer and on-water kayaking.Ergometer kayaking results in significantly greater Anterior Deltoid activity but significantly lower Triceps Brachii and Latissimus Dorsi activity, compared with on-water kayaking.The altered muscle recruitment patterns observed on-ergometer are most likely a result of additional forces associated with the ergometer loading mechanism, acting upon the paddle shaft.
机译:当前的研究在测功机和水上皮划艇过程中比较了肌电图,冲程力和二维运动学。雄性精英平水皮艇(n = 10)进行了匹配的运动方案,包括3分钟的心跳和搏动速率,相当于VO2peak的85%(由先前的分级增量测试进行评估)。 EMG数据通过无线遥测技术从前三角肌(AD),肱三头肌(TB),背阔肌(LD)和背阔肌(VL)记录下来。运动前和运动后以音频触发以50 Hz录制的视频数据促进了EMG和运动学变量的同步。力数据通过桨板和测功计轴上的应变仪阵列记录。 EMG数据是均方根(20毫秒窗口),将时间和幅度归一化,并在10个连续周期中取平均值。另外,通过iEMG量化整体肌肉活动,并计算离散的冲程力并计算运动学变量。水中记录的TB和LD平均iEMG活性明显更高(分别为239±15 vs. 179±10μV.s,p <0.01和158±12 vs. 137±14μV.s,p <0.05)测功机上记录到的AD活性明显更高(494±66 vs. 340±35μV.s,p <0.01)。到垂直轴位置的时间明显早于测功机(p <0.05)。对冲程力数据和EMG的分析表明,在活动度计冲程周期的离散阶段,AD活动的增加与施加到桨轴上的外力的增加同时发生。这些外力与测力计的加载机制有关,在水上未观察到。目前的结果与先前发表的关于在水上皮划艇过程中肩部肌肉募集的假设相矛盾。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior = unordered prefix- word = mark-type = disc max-label-size = 0-> 以固定的心脏和中风速率运动时,测湿仪和水上皮划艇之间存在生物力学差异。 测湿仪皮划艇结果与水上皮划艇相比,前三角肌活动明显增强,但肱三头肌肱三头肌和背阔肌活动明显降低。 在测功机上观察到的肌肉募集模式改变很可能是由于与测功机加载机构,作用在桨轴上。

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