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Evaluating Different Shapes of Cranial Fixation Mini-plates Using Finite Element Method

机译:使用有限元法评估不同形状的颅固定迷你板

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Medical grade 3D printing offers the possibility to manufacture patient-specific implants to treat cranial defects. The performance of the implant assembly depends on many factors, such as material, thickness, size and manufacturing accuracy. A significant factor in the stability and success of the assembly is the fixation method. Cranial implants are usually fixed to the skull by means of mini-plates. Biome-chanical assessment of fixing the implant to the skull might be helpful not only for mini-plate design but might be beneficial also for the surgeons. In this study, four different mini-plate designs were analyzed and compared based on the stress-strain analysis of one cranial implant fixed at three locations by mini-plates. Computational simulations were done using Finite Element Method.
机译:医疗等级3D印刷提供了制造患者特异性植入物以治疗颅缺陷的可能性。植入物组件的性能取决于许多因素,例如材料,厚度,尺寸和制造精度。组装稳定性和成功的重要因素是固定方法。颅植入物通常通过迷你板固定在头骨上。将植入物固定到头骨上的生物血液组合评估可能不仅适用于微型板设计,而且可能对外科医生有益。在这项研究中,分析了四种不同的微型板设计,并基于通过微型板固定在三个位置的一个颅植入的应力 - 应变分析。使用有限元方法完成计算模拟。

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