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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Mechanical characterisation of a bone defect model filled with ceramic cements
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Mechanical characterisation of a bone defect model filled with ceramic cements

机译:填充有骨水泥的骨缺损模型的力学表征

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摘要

Ceramic bone substitute materials are often used to fill defects in comminuted articular fractures. In an in vivo study, calcium phosphate cements have been injected into highly loaded slot defects in the proximal tibial metaphysis. During healing, cracks were formed mostly in the proximal anterior aspect of the implanted cement and wedge-like gaps formed between the tibial plateau and the cement. Mechanical ex vivo tests were done to investigate the mechanical competence of the bone cement in such a defect situation. Entirely filled defects were loaded with up to 4.5 kN until they failed. Cyclic loading of the proximal tibiae caused micro fragmentation of the cement after 1000 cycles at 1.5-2.0kN load. This aspect was comparable to cement fragmentation observed in vivo. Large defects in highly loaded areas should therefore additionally be stabilised with metallic implants. The ceramic cement can only be used as a filler material, which can be replaced by new bone upon resorption.
机译:陶瓷骨替代材料通常用于填充粉碎性关节骨折中的缺损。在体内研究中,磷酸钙骨水泥已被注入到胫骨近端干physi端的高负荷缝隙缺损中。在愈合过程中,裂缝大部分形成在植入的骨水泥的近端前部,并且在胫骨平台和骨水泥之间形成楔形间隙。进行了体外机械测试,以研究这种缺损情况下骨水泥的机械​​性能。完全填充的缺陷最多加载4.5 kN,直到它们失效为止。胫骨近端的循环载荷在1.5-2.0kN载荷下经过1000次循环后导致水泥的微碎裂。这方面与体内观察到的水泥碎裂相当。因此,还应使用金属植入物来稳定高负载区域的大缺陷。陶瓷水泥只能用作填充材料,吸收后可以用新骨代替。

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