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Functional adaptation in bone

机译:骨骼功能适应

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摘要

This study investigates the relationship between microdamage and bone adaptation in a sheep forelimb model. Based on gait analysis, a simple test rig was developed for in vitro measurement of strain on the cranial and caudal surfaces of the radius to study the effects of ulnar osteotomy and ulnar reinforcement using a Steinmann pin. Control, osteotomy and pin procedures were carried out in vivo and the adaptive response measured at intervals up to 24 weeks. Pinning proved ineffective in altering load on the radius, but ulnar osteotomy elicited an adaptive response which returned surface strains to near control levels by 24 weeks. The overloaded radius adapted by forming new bone at surfaces - renewed modelling, and by remodelling the existing cortex. The incidence of microcracks and resorption cavities increased signficantly in osteotomies at 6 weeks compared with controls and preceded the formation of secondary osteons. The timing and location of microcrack, resorption cavities and secondary osteons support the hypothesis that microdamage is a stimulus for bone remodelling.
机译:这项研究调查了羊前肢模型中微损伤与骨骼适应之间的关系。基于步态分析,开发了一种简单的测试装置,用于体外测量the骨的颅骨和尾骨表面的应变,以研究使用Steinmann销钉进行尺骨截骨和尺骨加固的效果。体内进行了对照,截骨和钉扎程序,并在长达24周的间隔内测量了适应性反应。钉扎法不能有效地改变radius骨的负荷,但尺骨截骨术会引起适应性反应,使表面张力在24周内恢复到接近控制水平。通过在表面形成新的骨骼来适应过载半径-重新建模,并重新建模现有皮质。与对照组相比,截骨后第6周,微裂纹和吸收腔的发生率显着增加,并在继发骨形成之前发生。微裂纹的时间和位置,吸收腔和继发性骨质支持微损伤是骨骼重塑的刺激这一假设。

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