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An improved murine femur fracture device for bone healing studies.

机译:一种改进的鼠股骨骨折装置,用于骨愈合研究。

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Murine models are commonly used to investigate bone healing and test new treatments before human trials. Our objective was to design an improved murine femur fracture device and determine optimal mass and velocity settings for maximal likelihood of transverse fracture. Fracture reproducibility was maximized using an adjustable kinetic energy level, a novel mouse positioning system and an electromagnet striker release assembly. Sixty wild-type mice of 8-12-week-old male and female with a weight of 26.4+/-6.1g were subjected to an experimental postmortem fracture in the left and right femur (n=120) using variable kinetic energy inputs. A best-fit prediction equation for transverse fracture was developed using multivariate linear regression. Transverse fracture was shown to correlate most highly with kinetic energy with a maximum likelihood at mv2=292 where m is mass (g) and v is velocity (m/s). Model validation with a group of 134 anesthetized C57BL/6 mice resulted in a favorable transverse fracture rateof 85.8%. Simple modifications to existing fracture devices can improve accuracy and reproducibility. The results may assist researchers studying the effects of genetic modifications and novel treatments on boney healing in murine femur fracture models. Maintaining kinetic energy parameters within suggested ranges may also aid in ensuring accuracy and reproducibility.
机译:鼠模型通常用于研究骨愈合并在人体试验之前测试新疗法。我们的目标是设计一种改进的鼠股骨骨折装置,并确定最佳质量和速度设置,以最大程度地产生横向骨折。使用可调节的动能水平,新颖的鼠标定位系统和电磁撞针释放组件,可以使骨折的重现性最大化。使用可变的动能输入对60只8-12周大的雄性和雌性的野生型小鼠进行了实验性验尸,其体重为26.4 +/- 6.1g,雄性和雌性为26.4 +/- 6.1g。使用多元线性回归建立了横向裂缝的最佳拟合预测方程。横断面与动能的相关性最高,mv2 = 292的可能性最大,其中m为质量(g),v为速度(m / s)。用一组134头麻醉的C57BL / 6小鼠进行模型验证,得出了良好的横向骨折率,为85.8%。对现有压裂装置的简单修改可以提高准确性和可重复性。该结果可能有助于研究人员研究基因修饰和新型治疗对鼠股骨骨折模型骨愈合的影响。将动能参数保持在建议的范围内也可能有助于确保准确性和可重复性。

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