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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Dynamics of individual sarcomeres during and after stretch in activated single myofibrils.
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Dynamics of individual sarcomeres during and after stretch in activated single myofibrils.

机译:激活的单个肌原纤维拉伸过程中和拉伸后单个肉瘤的动力学。

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It is generally assumed that sarcomere lengths (SLs) change in isometric fibres following activation and following stretch on the descending limb of the force-length relationship, because of an inherent instability. Although this assumption has never been tested directly, instability and SL non-uniformity have been associated with several mechanical properties, such as 'creep' and force enhancement. The aim of this study was to test directly the hypothesis that sarcomeres are unstable on the descending limb of the force-length relationship. We used single myofibrils, isolated from rabbit psoas, that were attached to glass needles that allowed for controlled stretching of myofibrils. Images of the sarcomere striation pattern were projected onto a linear photodiode array, which was scanned at 20 Hz to produce dark-light patterns corresponding to the A- and I-bands, respectively. Starting from a mean SL of 2.55 +/- 0.07 microm, stretches of 11.2 +/- 1.6% of SL at a speed of 118.9 +/- 5.9 nm s(-1) were applied to the activated myofibrils (pCa(2+) = 4.75). SLs along the myofibril were non-uniform before, during and after the stretch, but with few exceptions, they remained constant during the isometric period before stretch, and during the extended isometric period after stretch. Sarcomeres never lengthened to a point beyond thick and thin filament overlap. We conclude that sarcomeres are non-uniform but generally stable on the descending limb of the force-length relationship.
机译:通常假定,等距纤维中的肌小节长度(SLs)在激活后以及在力-长度关系的下降分支上拉伸后由于固有的不稳定性而发生变化。尽管从未直接测试过此假设,但不稳定和SL不均匀性已与多种机械性能相关联,例如“蠕变”和力增强。本研究的目的是直接检验假肢在力长关系的下肢不稳定的假设。我们使用从兔子腰大肌分离的单个肌原纤维,将其附着于玻璃针上,以控制肌原纤维的拉伸。肌节条纹图案的图像投影到线性光电二极管阵列上,以20 Hz扫描,以产生分别对应于A波段和I波段的暗光图案。从平均SL为2.55 +/- 0.07微米开始,以118.9 +/- 5.9 nm s(-1)的速度拉伸SL的11.2 +/- 1.6%s(-1)应用于活化的肌原纤维(pCa(2+) = 4.75)。沿着肌原纤维的SL在拉伸前,拉伸中和拉伸后是不均匀的,但几乎没有例外,它们在拉伸前等轴测期间和拉伸后等轴测期间均保持恒定。肉瘤从未加长到超过粗细丝重叠的程度。我们得出结论,肉瘤是不均匀的,但在力长关系的下降肢上通常是稳定的。

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