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A novel rapid prototyping and finite element method-based development of the patient-specific temporomandibular joint implant

机译:基于新型快速原型和有限元方法的患者特定颞下颌关节植入物开发

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Objective: The objective of this study was to fabricate a successful implant for temporomandibular joint (TMJ) disorder patients who could not be treated through conventional surgeries.rnMethods: A custom-made implant was fabricated using rapid prototyping (RP) for the TMJ surgery. The stability of the metallic implant was validated using a finite element analysis.rnResults: The results of finite elements were stable and the design of the TMJ implant was suitable as per the patient's need. The customised implant was made using a fused deposition modelling method of RP and a vertical machining centre. The implant has provided normal jaw function for over 2 years since surgery.rnConclusions: The approach utilised will be helpful in providing successful treatment to the deformed mandible and the mandible joints. This method allows to customise and to accurately fabricatie the implant. Advantages of this approach are that the physical model of the implant was tested for stability before the implantation, the surgeon can plan and rehearse the surgery in advance, it is a less invasive and less time-consuming surgical procedure.
机译:目的:本研究的目的是为无法通过常规手术治疗的颞下颌关节(TMJ)障碍患者制作成功的植入物。方法:采用快速原型(RP)为TMJ手术制作定制的植入物。结果:有限元结果稳定,TMJ植入物的设计适合患者的需要,从而对金属植入物的稳定性进行了验证。使用RP的融合沉积建模方法和垂直加工中心制作定制的植入物。自手术以来,植入物已提供正常的颌骨功能超过2年。rn结论:采用的方法将有助于成功治疗下颌骨变形和下颌骨关节。该方法允许定制并精确地制造植入物。这种方法的优点是,在植入前先测试了植入物的物理模型的稳定性,外科医生可以提前计划和排练手术,这是一种侵入性较小且耗时较少的手术程序。

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