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Juvenile bovine bone is an appropriate surrogate for normal and reduced density human bone in biomechanical testing: a validation study

机译:少年牛骨是生物力学测试中正常和密度降低的人骨的合适替代品:一项验证研究

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摘要

Orthopaedic research necessitates accurate and reliable models of human bone to enable biomechanical discoveries and translation into clinical scenarios. Juvenile bovine bone is postulated to be a potential model of normal human bone given its dimensions and comparatively reduced ethical restrictions. Demineralisation techniques can reduce bone density and alter bone properties, and methods to model osteoporotic bone using demineralised juvenile bovine bone are investigated. Juvenile bovine long bones were quantitatively CT scanned to assess bone density. Demineralisation using hydrochloric acid (0.6, 1.2 and 2.4 M) was performed to create different bone density models which underwent biomechanical validation for normal and osteoporotic bone models. All long bones were found to have comparable features to normal human bone including bone density (1.96 ± 0.08 gcm−3), screw insertion torque and pullout strength. Demineralisation significantly reduced bone density and pullout strength for all types, with 0.6 M hydrochloric acid creating reductions of 25% and 71% respectively. Juvenile bovine bone is inexpensive, easy to source and not subject to extensive ethical procedures. This study establishes for the first time, the use of its long bones as surrogates for both normal and osteoporotic human specimens and offers preliminary validation for its use in biomechanical testing.
机译:骨科研究需要精确而可靠的人体骨骼模型,以实现生物力学发现并将其转化为临床场景。鉴于其尺寸和相对较少的伦理限制,假定少年牛骨是正常人骨的潜在模型。脱矿质技术可以降低骨密度并改变骨质,并且研究了使用脱矿质幼牛骨对骨质疏松性骨进行建模的方法。对幼年牛长骨进行CT定量扫描以评估骨密度。使用盐酸(0.6、1.2和2.4μM)进行脱矿质处理,以创建不同的骨密度模型,并对该模型进行了正常和骨质疏松性骨模型的生物力学验证。发现所有长骨都具有与正常人骨相当的特征,包括骨密度(1.96±±0.08 gcm -3 ),螺钉插入扭矩和拔出强度。脱矿质显着降低了所有类型的骨密度和抗拉强度,用0.6μM盐酸分别降低了25%和71%。少年牛骨价格便宜,易于获取且不受广泛的道德程序约束。这项研究首次确定了将长骨用作正常和骨质疏松人类标本的替代物,并为其在生物力学测试中的应用提供了初步验证。

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