Experimental evaluation of susceptibility to fractures of the orbital floor in patients with unilateral complete cleft palate.

Tomohisa Nagasao, Junpei Miyamoto, Hua Jiang, Tamotsu Tamaki, Tsuyoshi Kaneko
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引用次数: 1

Abstract

We set out this study to verify a hypothesis that orbital floor fractures tend to affect wider areas in patients with unilateral complete cleft palate. Using a striking machine, the inferior orbital rims of eight normal skulls (intact skull group) and eight skulls with parts of the maxillas removed to simulate alveolar and palatal clefts (cleft skull group) were impacted. The fractured areas were compared. Models designed using a computer were produced to simulate the skulls of 12 normal people and 12 patients with left unilateral complete cleft palate, and were classified as the intact model group and the cleft model group, respectively. Computer simulation of applying external forces to the inferior orbital rim of each model was performed. Areas where stresses exceeded the bone-yielding threshold were compared. Actual fractured areas were significantly larger in the cleft skull group than in the intact skull group. Theoretical fracture areas were also significantly greater in the cleft model group than in the intact model group. We conclude that orbital floor fractures develop in wider areas in patients with unilateral complete cleft palates, because of the instability of the maxilla on the cleft side.

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单侧完全性腭裂患者眶底骨折易感性的实验评价。
我们进行这项研究是为了验证一个假设,即单侧完全性腭裂患者的眶底骨折倾向于影响更广泛的区域。采用撞击机对8个正常颅骨(完整颅骨组)和8个上颌部分切除模拟牙槽和腭裂颅骨(裂颅骨组)的下眶缘进行撞击。对比裂缝面积。用计算机模拟12例正常人和12例左侧单侧完全性腭裂患者的颅骨,制作模型,分为完整模型组和腭裂模型组。对每个模型的下眶缘施加外力的情况进行了计算机模拟。比较了应力超过骨屈服阈值的区域。颅骨裂组的实际骨折面积明显大于颅骨完整组。裂隙模型组的理论骨折面积也明显大于完整模型组。我们的结论是,单侧完全性腭裂患者眶底骨折的发生范围更广,因为腭裂侧的上颌骨不稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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