首页> 外文期刊>PLoS One >Impaired bone quality characterized by apatite orientation under stress shielding following fixing of a fracture of the radius with a 3D printed Ti-6Al-4V custom-made bone plate in dogs
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Impaired bone quality characterized by apatite orientation under stress shielding following fixing of a fracture of the radius with a 3D printed Ti-6Al-4V custom-made bone plate in dogs

机译:在用狗的3D印刷的Ti-6Al-4V定制骨板固定半径的骨折之后,在应力屏蔽下的磷灰石取向表征受损的骨质质量。

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Custom-made implants have recently gained attention in veterinary medicine because of their ability to properly fit animal bones having a wide variety of shapes and sizes. The effect of custom-made implants on bone soundness and the regeneration process is not yet clear. We fabricated a 3D printed Ti-6Al-4V custom-made bone plate that fits the shape of the dog radius, and placed it into the radius where an osteotomy had been made. The preferential orientation of the apatite c -axis contributes to the mechanical integrity of the bone and is a reliable measure of bone quality. We determined this parameter as well as the bone shape and bone mineral density (BMD). The bone portion which lies parallel to the bone plate exhibited bone resorption, decreased BMD, and significant degradation of apatite orientation, relative to the portion outside the plate, at 7 months after the operation. This demonstrates the presence of stress shielding in which applied stress is not transmitted to bone due to the insertion of a stiff bone plate. This reduced stress condition clearly influences the bone regeneration process. The apatite orientation in the regenerated site remained different even after 7 months of regeneration, indicating insufficient mechanical function in the regenerated portion. This is the first study in which the apatite orientation and BMD of the radius were evaluated under conditions of stress shielding in dogs. Our results suggest that assessment of bone repair by radiography can indicate the degree of restoration of BMD, but not the apatite orientation.
机译:定制植入物最近在兽医中获得了注意力,因为它们能够适当地适应具有各种形状和尺寸的动物骨骼。定制植入物对骨密度和再生过程的影响尚不清楚。我们制造了一个3D印刷的Ti-6AL-4V定制骨板,拟合狗半径的形状,并将其放入到已经进行截端术的半径中。磷灰石C -axis的优先取向有助于骨骼的机械完整性,是骨质质量的可靠度量。我们确定了这个参数以及骨骼形状和骨矿物密度(BMD)。平行于骨板的骨部分表现出骨吸收,降低BMD,并且相对于在操作之外的7个月内相对于板外的部分相对于板外部的磷灰石取向的显着降低。这证明了存在应力屏蔽的存在,其中由于插入僵硬的骨板,施加的应力不会被传递到骨。这种降低的应力条件清楚地影响了骨再生过程。再生部位中的磷灰石取向甚至在再生7个月后仍然不同,表明再生部分中的机械功能不足。这是第一研究,其中在狗的应力屏蔽条件下评估半径的磷灰石取向和BMD。我们的研究结果表明,通过射线照相评估骨骼修复可以指示BMD的恢复程度,但不是磷灰石取向。

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