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Normal aging alters in vivo passive biomechanical response of the rat gastrocnemius-Achilles muscle-tendon unit

机译:正常衰老改变了大鼠腓肠肌-跟腱肌肉-肌腱单元的体内被动生物力学反应

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Predisposition to Achilles tendon (AT) ruptures in middle-aged individuals may be associated with age-related changes to inherent passive biomechanical properties of the gastrocnemius-Achilles (GC-AT) muscle-tendon unit, due to known muscle-tendon structural changes in normal aging. The goal of this study was to determine whether the passive biomechanical response of the GC-AT muscle-tendon unit was altered with age in 6 young (8 months) and 6 middle-aged (24 months) F344xBN hybrid rats from the National Institute on Aging colony. Fung's quasilinear viscoelastic (QLV) model was used to determine in vivo history and time-dependent load-relaxation response of the GC-AT. Effective stiffness and modulus were also estimated using linear regression analysis. Fung's QLV revealed a significantly decreased magnitude of the relaxation response (parameter C, p=0.026) in middle-aged animals compared to young animals (0.108±0.007 vs. 0.144±0.015), with similar time-dependent viscous GC-AT properties (τ1, τ2). The product of elastic parameters (A*B), which represents the initial slope of the elastic response, was significantly increased by 50% in middle-aged rats (p=0.014). Estimated GC-AT stiffness increased 28% at peak tensions in middle-aged rats (2.7±0.2N/mm) compared to young rats (1.9±0.2N/mm; p=0.036). While the limitations of this animal model must be considered, the changes we describe could be associated with the observation that GC-AT pathology and injury is more common in middle-aged individuals. Further studies are necessary to characterize the load-to-failure behavior of AT in middle-aged compared to young animals.
机译:中青年人的跟腱断裂易感性可能与腓肠肌-跟腱(GC-AT)肌腱单位固有被动生物力学特性的年龄相关变化,这是由于已知的肌腱结构改变所致。正常老化。这项研究的目的是确定美国国立卫生研究院(National Institute)的6只年轻(8个月)和6只中年(24个月)F344xBN杂种大鼠的年龄是否改变了GC-AT肌腱单位的被动生物力学响应。殖民地老化。 Fung的准线性粘弹性(QLV)模型用于确定GC-AT的体内病史和时间依赖性负荷松弛响应。还使用线性回归分析估计了有效刚度和模量。冯氏QLV显示与中年动物相比,中年动物的松弛反应幅度显着降低(参数C,p = 0.026)(0.108±0.007对0.144±0.015),具有类似的时间依赖性粘性GC-AT特性( τ1,τ2)。弹性参数的乘积(A * B)代表弹性响应的初始斜率,在中年大鼠中显着增加了50%(p = 0.014)。与年轻大鼠(1.9±0.2N / mm; p = 0.036)相比,中年大鼠(2.7±0.2N / mm)的峰值张力估计的GC-AT刚度增加了28%。尽管必须考虑这种动物模型的局限性,但我们描述的变化可能与以下观察结果有关:GC-AT病理学和损伤在中年人中更为常见。与中年动物相比,有必要进行进一步的研究来表征中年人AT的失败失败行为。

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