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首页> 外文期刊>Journal of biomechanical engineering. >Healing Ligaments Have Shorter Lifetime and Greater Strain Rate During Fatigue Than Creep at Functional Stresses
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Healing Ligaments Have Shorter Lifetime and Greater Strain Rate During Fatigue Than Creep at Functional Stresses

机译:在功能性压力下,疲劳时的疲劳韧带比蠕变的疗程短,寿命长,应变率高

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摘要

Healing ligaments have compromised strength, which makes them susceptible to damage during daily activities at normal functional stresses. Daily activities expose ligaments to cyclic (fatigue) and static (creep) loading. A gap injury was created in the midsubstance of both hindlimb medial collateral ligaments of 40 female 1-year-old New Zealand White rabbits. After a 14-week healing interval, medial collateral ligament gap scars were exposed to long-term fatigue and creep loading over a range of functional force/stress levels. Lifetime and strain behavior were compared during fatigue and creep. The contribution of time-dependent mechanisms to fatigue lifetime was modeled using creep data. Fatigue-loaded healing ligaments had shorter lifetime, greater steady-state strain rate and greater increase in strain at 0.8 h than creep-loaded healing ligaments. The actual fatigue lifetime was less than the predicted fatigue lifetime which was derived from time-dependent damage alone, indicating an important role for cycle-dependent damage mechanisms in healing ligaments during fatigue loading. Cyclic loading decreased life-time and increased strain rate and strain prior to rupture compared to static loading in healing ligaments. These findings suggest that, after a ligament injury, more care should be taken when exercises result in cyclic loading rather than static loading of the healing ligament even at functional stresses.
机译:修复韧带的强度受损,这使得它们在正常活动压力下的日常活动中容易受损。日常活动会使韧带承受周期性(疲劳)和静态(蠕变)负荷。在40只1岁大的新西兰白兔的后肢内侧副韧带的中间物质中产生了间隙损伤。在经过14周的愈合间隔后,内侧副韧带间隙疤痕在一系列功能力/压力水平下长期处于疲劳和蠕变负荷状态。比较了疲劳和蠕变过程中的寿命和应变行为。时间相关机制对疲劳寿命的贡献使用蠕变数据进行建模。与蠕变加载的修复韧带相比,疲劳加载的修复韧带的寿命更短,稳态应变率更高,并且在0.8 h时的应变增加更大。实际疲劳寿命小于预期的疲劳寿命,该疲劳寿命仅源自与时间有关的损伤,这表明疲劳载荷期间韧带愈合过程中与循环有关的损伤机制具有重要作用。与愈合韧带的静态载荷相比,循环载荷减少了使用寿命,并增加了断裂之前的应变率和应变。这些发现表明,韧带损伤后,即使锻炼导致功能性负荷,即使锻炼导致周期性的负荷而不是静态负荷,锻炼时也应格外小心。

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