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首页> 外文期刊>Journal of nanomaterials >Experimental investigations on microcracks in vibrational and conventional drilling of cortical bone
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Experimental investigations on microcracks in vibrational and conventional drilling of cortical bone

机译:振动和常规皮质骨钻孔中微裂纹的实验研究

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摘要

Bone drilling is widely used in orthopedic surgery. Microcracks will be generated in bone drilling, which may cause fatigue damages and stress fractures. Fresh bovine cortical bones were drilled via vibrational and conventional ways. Drilling operations were performed by a dynamic material testing machine, which can provide the vibration while maintaining uniform feed motion. The drill site and bone debris were observed through scanning electron microscope (SEM). The experimental results showed that fewer and shorter micro-cracks were formed in vibrational drilling than those formed in conventional way. And the surface morphology of bone debris from two different drilling ways was also quite different. It is expected that vibrational drilling in orthopedic surgery operation could decrease the microdamage to the bone, which could lower the incidence of stress fracture and contribute to the postoperative recovery.
机译:骨钻孔广泛用于整形外科。骨钻中会产生微裂纹,这可能会导致疲劳损伤和应力断裂。通过振动和常规方式对新鲜的牛皮质骨进行钻削。钻孔操作由动态材料试验机执行,该试验机可在保持均匀进给运动的同时提供振动。通过扫描电子显微镜(SEM)观察钻头部位和骨碎片。实验结果表明,与常规方法相比,振动钻井中形成的微裂纹更少,更短。并且两种不同钻孔方式的骨碎片的表面形态也有很大不同。可以预期,整形外科手术中的振动钻孔可以减少对骨骼的微损伤,从而可以降低应力性骨折的发生率,并有助于术后恢复。

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