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Effect of Seat Tube Angle and Exercise Intensity on Muscle Activity Patterns in Cyclists

机译:座管角度和运动强度对骑自行车者肌肉活动模式的影响

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International Journal of Exercise Science 10(8): 1145-1156, 2017. Previous studies have reported improved efficiency at steeper seat tube angle (STA) during ergometer cycling; however, neuromuscular mechanisms have yet to be fully determined. The current study investigated effects of STA on lower limb EMG activity at varying exercise intensities. Cyclists (n=11) were tested at 2 workloads; 160W and an individualised workload (IWL) equivalent to lactate threshold (TLac) minus 10%δ (derived from maximal incremental data), using 3 STA (70, 75 and 80°). Electromyographic data from Vastus Medialis (VM), Rectus Femoris (RF), Vastus Lateralis (VL) and Biceps Femoris (BF) were assessed. The timing and magnitude of activation were quantified and analysed using a two-way ANOVA. STA had significant (P < 0.05) effects on timing of onset and offset of VM, timing of offset of VL, and angle at peak for RF, all occurring later at 80 vs. 70° STA at IWL. In RF, increased activity occurred during the first 108° of the crank cycle at 80 vs. 70° at IWL (P < 0.01). As most of the power in the pedal stroke is generated during the mid-section of the down-stroke, movement of the activation range of knee extensors into the predominantly power phase of the pedal stroke would potentially account for increased efficiency and decreased cardio-respiratory costs. Greater activity of bi-articular RF, in the first 108o of the crank cycle at IWL (80 vs. 70o) may more closely resemble the pelvic stabilising activity of RF in running biomechanics; and potentially explain the more effective transition from cycling to running reported in triathletes using steeper STA.
机译:国际运动科学杂志10(8):1145-1156,2017。以前的研究已经报告了在测力计骑行过程中,在更陡的座管角度(STA)时效率得到了提高;然而,神经肌肉机制尚未完全确定。当前的研究调查了不同运动强度下STA对下肢肌电活动的影响。在2个工作负荷下对骑自行车的人(n = 11)进行了测试; 160 W,使用3 STA(70、75和80°)相当于乳酸阈值(TLac)减去10%δ(来自最大增量数据)的个性化工作量(IWL)。评估了来自内侧肌(VM),直肌(RF),外侧肌(VL)和肱二头肌(BF)的肌电数据。使用双向方差分析对激活的时间和幅度进行量化和分析。 STA对VM发生和偏移的时间,VL偏移的时间以及RF的峰值角度具有显着的影响(P <0.05),所有这些后来都发生在IWL的80和70°STA之间。在RF中,曲柄循环的第一个108°在IWL处的活动度从80°升高到70°(P <0.01)。由于踏板冲程中的大部分力量是在下冲程的中段产生的,因此膝部伸肌的激活范围进入踏板冲程的主要力量阶段可能会导致效率提高和心肺功能下降费用。在IWL的曲柄循环的第一个108o中,双关节RF的活动更大(80 vs. 70o),可能更类似于运行生物力学中RF的骨盆稳定活动。并可能说明使用更陡峭的STA在铁人三项运动员中从骑行到跑步的更有效过渡。

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