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Mechanical evaluation of bone gap filled with rigid formulations castor oil polyurethane and chitosan in horses

机译:硬质配方蓖麻油聚氨酯和壳聚糖填充的马骨间隙的机械评估

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Often fractures of long bones in horses are comminuted and form bone gaps, which represent a major challenge for the fixation of these fractures by loss of contact between the fragments. Bone grafts help in treating this kind of fracture and synthetic materials have been gaining ground because of the limitations of autologous and heterologous grafts. In this study were performed compressive non destructive test in 10 bones with complete cross-bone gap in mid-diaphyseal of the third metacarpal bone of horses. Using a mechanism of "crossing" the 10 bones were used in the three groups (control, castor oil poliuretane and chitosan) according to the filling material. After the test with maximum load of 1000N bone had a gap filled by another material and the test was repeated. Deformations caused on the whole bone, plate and bone tissue near and distant of gap were evaluated, using strain gauges adhered to the surface at these locations. There was a reduction in bone deformation from 14% (control) to 3,5% and 4,8% by filling the gap with Chitosan and castor oil respectively, and a reduction of strain on the plate of 96% and 85% by filling gap with chitosan and castor respectively. An increase in intensity and direction of deformations occurred in bone near to gap after its filling; however, there was no difference in bone deformations occurring far the gap.
机译:通常,马的长骨骨折会被粉碎并形成骨间隙,这对碎片断裂之间的接触丧失是固定这些骨折的主要挑战。骨移植物有助于治疗这类骨折,由于自体和异种移植物的局限性,合成材料已逐渐普及。在本研究中,对马的第三掌骨的中干phy端的10个具有完全跨骨间隙的骨骼进行了压缩无损测试。使用“交叉”机制,根据填充材料将10根骨头用于三组(对照组,蓖麻油poliuretane和壳聚糖)。在最大负载为1000N的测试之后,骨头中的缝隙被另一种材料填充,然后重复测试。使用附着在这些位置表面的应变仪评估了在间隙附近和远处的整个骨骼,板和骨骼组织上引起的变形。通过分别用壳聚糖和蓖麻油填充间隙,骨变形从14%(对照)降低到3.5%和4.8%,并且通过填充,钢板上的应变降低了96%和85%与壳聚糖和蓖麻的缺口。填充后的间隙附近的骨头中强度和变形方向增加;但是,在间隙附近发生的骨变形没有差异。

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