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首页> 外文期刊>PLoS One >Drill holes decrease cancellous bone strength: A comparative study of 33 paired osteoporotic human and 9 paired artificial bone samples
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Drill holes decrease cancellous bone strength: A comparative study of 33 paired osteoporotic human and 9 paired artificial bone samples

机译:钻孔减少松质骨强度:对33种成对的骨质疏松症人和9种人工骨样品的比较研究

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This study was designed to compare compressive strength of cancellous bone retrieved from the femoral head in a specimen with and without guide wire hole, with comparison to synthetic bone samples. Femoral heads retrieved from 33 patients who sustained femoral neck fractures and underwent hip arthroplasty were cut into cuboids leaving two matching samples from the same femoral head. Similar samples were prepared from synthetic femurs. One of the matching samples was chosen at random and was drilled with a guide wire for cancellous screws. The uniaxial compression tests of bone blocks were carried out using the Zwick-Roell Z020 strength testing machine. The mean loss of sample cross section area due to drilling was 24%. The force at failure in drilled specimens was significantly smaller by 18% in human (median: 26%) and by 25% in synthetic bone (median 27%). The strength of human specimens was almost 2 times greater, and their stiffness nearly 4 times greater than in synthetic samples. The study shows that the weakening of the bone after drilling is roughly proportional to the loss of sample cross section area. The percentage decrease in strength was similar in human and artificial bone, but human samples were stronger and stiffer. The comparison shows that forces measured in biomechanical studies on artificial bone cannot be directly attributed to humans, but the relative differences in mechanical properties of synthetic samples after some damage may be accurate and resemble that of human bones.
机译:该研究旨在比较从股本上从股本头部检索的松质骨骼的压缩强度,与合成骨样品相比。从33例持续股骨颈骨折和接受髋关节关节造身术中检索的股骨头被切成长方体,留下来自同一股骨头的两种匹配样品。用合成股份制备类似的样品。其中一个匹配样品随机选择并用用于松质螺钉的导丝钻。使用Zwick-Roell Z020强度试验机进行骨块的单轴压缩试验。由于钻孔引起的样品横截面区域的平均损失为24%。钻石试样失效的力在人(中位数:26%)中的18%明显小于18%,合成骨中的25%(中位数27%)。人类标本的强度差不多2倍,并且它们的刚度比合成样品大约4倍。该研究表明,钻井后骨的弱化大致与样品横截面区域的损失成比例。人工骨骼的强度降低的百分比相似,但人类样品更强,更硬。比较表明,在人造骨的生物力学研究中测量的力不能直接归因于人类,但在一些损坏后合成样品的机械性能的相对差异可能是准确的,并且类似于人体骨骼。

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