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首页> 外文期刊>The Journal of Experimental Biology >Skinned fibres produce the same power and force as intact fibre bundles from muscle of wild rabbits
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Skinned fibres produce the same power and force as intact fibre bundles from muscle of wild rabbits

机译:剥皮的纤维产生的力和力与野兔肌肉中完整的纤维束相同

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摘要

Skinned fibres have advantages for comparing the muscle properties of different animal species because they can be prepared from a needle biopsy taken under field conditions. However, it is not clear how well the contractile properties of skinned fibres reflect the properties of the muscle fibres in vivo. Here, we compare the mechanical performance of intact fibre bundles and skinned fibres from muscle of the same animals. This is the first such direct comparison. Maximum power and isometric force were measured at 25 degrees C using peroneus longus (PL) and extensor digiti-V (ED-V) muscles from wild rabbits (Oryctolagus cuniculus). More than 90% of the fibres in these muscles are fast-twitch, type 2 fibres. Maximum power was measured in force-clamp experiments. We show that maximum power per volume was the same in intact (121.3 +/- 16.1 W l(-1), mean +/- s.e.m.; N=16) and skinned (122.6 +/- 4.6 W l(-1); N=141) fibres. Maximum relative power (power/F-IM L-o, where F-IM is maximum isometric force and Lo is standard fibre length) was also similar in intact (0.645 +/- 0.037; N=16) and skinned (0.589 +/- 0.019; N=141) fibres. Relative power is independent of volume and thus not subject to errors in measurement of volume. Finally, maximum isometric force per cross-sectional area was also found to be the same for intact and skinned fibres (181.9 kPa +/- 19.1; N=16; 207.8 kPa +/- 4.8; N=141, respectively). These results contrast with previous measurements of performance at lower temperatures where skinned fibres produce much less power than intact fibres from both mammals and non-mammalian species.
机译:皮肤纤维在比较不同动物物种的肌肉特性方面具有优势,因为它们可以从野外条件下进行的针头活检中制备。然而,尚不清楚表皮纤维的收缩特性在体内如何反映肌肉纤维的特性。在这里,我们比较了完整纤维束和相同动物肌肉的皮肤纤维的机械性能。这是第一次这样的直接比较。在25摄氏度下,使用来自野兔(Oryctolagus cuniculus)的腓骨长肌(PL)和伸指数字肌(ED-V)肌肉测量最大力量和等距力量。这些肌肉中超过90%的纤维为2类纤维,即快肌。在力钳实验中测量最大功率。我们显示,每体积的最大功率在完好无损(121.3 +/- 16.1 W l(-1),平均+/- sem; N = 16)和剥皮的情况下是相同的(122.6 +/- 4.6 W l(-1); N = 141)纤维。最大相对功率(功率/ F-IM Lo,其中F-IM是最大等距力,Lo是标准光纤长度)在裸皮(0.645 +/- 0.037; N = 16)和蒙皮(0.589 +/- 0.019)方面也相似; N = 141)纤维。相对功率与体积无关,因此不会受到体积测量误差的影响。最后,还发现完整和蒙皮纤维的每横截面积最大等距力相同(分别为181.9 kPa +/- 19.1; N = 16; 207.8 kPa +/- 4.8; N = 141)。这些结果与以前在较低温度下的性能测量结果形成对比,在低温条件下,与哺乳动物和非哺乳动物物种的完整纤维相比,蒙皮纤维产生的功率要低得多。

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