Research Centre for Physical Activity, Sport and Exercise Science, Coventry University, Coventry, CV1 5FB, UK.
Faculty of Life Sciences, University of Bradford, Bradford, BD7 1DP, UK.
J Exp Biol. 2024 Apr 15;227(8). doi: 10.1242/jeb.247158. Epub 2024 Apr 30.
Force-length relationships derived from isometric activations may not directly apply to muscle force production during dynamic contractions. As such, different muscle starting lengths between isometric and dynamic conditions could be required to achieve maximal force and power. Therefore, this study examined the effects of starting length [±5-10% of length corresponding to maximal twitch force (L0)] on work loop (WL) power output (PO), across a range of cycle frequencies, of the soleus (SOL) and extensor digitorum longus muscle (EDL; N=8-10) isolated from ∼8 week old C57 mice. Furthermore, passive work was examined at a fixed cycle frequency to determine the association of passive work and active net work. Starting length affected maximal WL PO of the SOL and EDL across evaluated cycle frequencies (P<0.030, ηp2>0.494). For the SOL, PO produced at -5% L0 was greater than that at most starting lengths (P<0.015, Cohen's d>0.6), except -10% L0 (P=0.135, d<0.4). However, PO produced at -10% L0 versus L0 did not differ (P=0.138, d=0.35-0.49), indicating -5% L0 is optimal for maximal SOL WL PO. For the EDL, WL PO produced at -10% L0 was lower than that at most starting lengths (P<0.032, d>1.08), except versus -5% L0 (P=0.124, d<0.97). PO produced at other starting lengths did not differ (P>0.163, d<1.04). For the SOL, higher passive work was associated with reduced PO (Spearman's r=0.709, P<0.001), but no relationship was observed between passive work and PO of the EDL (Pearson's r=0.191, r2=0.04, P=0.184). This study suggests that starting length should be optimised for both static and dynamic contractions and confirms that the force-length curve during dynamic contractions is muscle specific.
从等长激活中得出的力-长度关系可能不能直接应用于动态收缩过程中的肌肉力产生。因此,为了达到最大力和功率,等长和动态条件下的肌肉起始长度可能需要不同。因此,本研究检测了起始长度[±5-10%最大单收缩力(L0)对应的长度]对分离自约 8 周龄 C57 小鼠的比目鱼肌(SOL)和趾伸肌(EDL)的工作环(WL)功率输出(PO)的影响,在一系列的循环频率下。此外,在固定的循环频率下检测了被动功,以确定被动功和主动净功之间的关系。起始长度影响了 SOL 和 EDL 在评估的循环频率下的最大 WL PO(P<0.030,ηp2>0.494)。对于 SOL,在-5% L0 时产生的 PO 大于大多数起始长度时的 PO(P<0.015,Cohen's d>0.6),除了-10% L0(P=0.135,d<0.4)。然而,-10% L0 与 L0 时产生的 PO 没有差异(P=0.138,d=0.35-0.49),这表明-5% L0 是最大 SOL WL PO 的最佳选择。对于 EDL,在-10% L0 时产生的 WL PO 小于大多数起始长度时的 PO(P<0.032,d>1.08),除了与-5% L0 时的 PO(P=0.124,d<0.97)。在其他起始长度时产生的 PO 没有差异(P>0.163,d<1.04)。对于 SOL,较高的被动功与降低的 PO 相关(Spearman's r=0.709,P<0.001),但在 EDL 的被动功和 PO 之间没有观察到关系(Pearson's r=0.191,r2=0.04,P=0.184)。本研究表明,起始长度应在静态和动态收缩中进行优化,并证实了动态收缩过程中的力-长度曲线是肌肉特异性的。