首页> 外文期刊>International journal of oral and maxillofacial surgery >Mechanical resistance of the periorbita and the orbital floor complex-are isolated orbital floor fractures only a soft tissue problem?
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Mechanical resistance of the periorbita and the orbital floor complex-are isolated orbital floor fractures only a soft tissue problem?

机译:眶周和眶底复合物的机械阻力-孤立的眶底骨折仅仅是软组织问题吗?

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The primary aims of orbital floor reconstruction are to prevent enophthalmos and herniation of the orbital contents in order to achieve correct globe position. Theoretically, the mechanical load of the orbital floor is approximately 0.0005 N/mm(2) (30 g orbital content onto 600 mm(2) of orbital floor area). Therefore, low mechanical stress from orbital floor reconstruction materials is expected. The periorbita and orbital floor complex (bony orbital floor with periorbita) of 12 human cadavers were investigated for their mechanical resistance to distortion and compared to different absorbable pliable reconstruction materials after modification with pores (Bio-Gide, Creos, and PDS). The human periorbita resistance (approximately 1.4 N/mm(2)) was comparable to that of the absorbable membranes (Creos, Bio-Gide), and the resistance of PDS (approximately 2.3 N/mm(2)) was comparable to that of the orbital floor complex. The periorbita has a higher stability than the bony orbital floor. Therefore, in isolated orbital floor fractures with a traumatized bony orbital floor and periorbita, reconstruction of the soft tissue as a periorbita equivalent with a resorbable membrane appears to be adequate to prevent enophthalmos and herniation of the orbital contents.
机译:眶底重建的主要目的是为了防止眼眶内容物的眼球突出和突出,以达到正确的地球位置。从理论上讲,轨道地板的机械负载约为0.0005 N / mm(2)(在600 mm(2)的轨道地板面积上有30 g的轨道内容物)。因此,期望来自轨道底板重建材料的低机械应力。研究了12位人体尸体的眶周和眶底复合体(具有眶周的骨性眶底)对变形的机械抵抗力,并与经过孔修饰的不同可吸收的柔韧性重建材料(Bio-Gide,Creos和PDS)进行了比较。人类的眶周阻力(约1.4 N / mm(2))与可吸收膜(Creos,Bio-Gide)相当,而PDS的阻力(约2.3 N / mm(2))与轨道层综合体。眶周比骨眶底具有更高的稳定性。因此,在孤立的眶底骨折伴有受伤的骨眶底和眶周骨折的情况下,将软组织重建为具有可吸收膜的眶周等同物似乎足以防止眼睑内和眼眶内容物的突出。

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