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T medical rapid prototyping in custom implant design for craniofacial reconstruction

机译:用于定制颅面重建的定制植入物设计中的T医疗快速原型制作

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摘要

Trauma, cranial tumors, infected craniotomy bone flaps and external neurosurgical decompression are the main causes for large cranial defects. The success of the reconstructive craniofacial surgery depends on good preoperative evaluation of the deformity, formation of the surgical planning, preparation of precise-fitting implants, and accurate execution of the operation. Recently, reversing engineering and rapid prototyping technologies have been applied to produce physical models in various medical applications. In this article, the applications of 3-dimensional medical image reconstruction and rapid prototyping techniques were used for implant design and production of implant for patient with large cranial defect reconstruction. The medical images were manipulated and surgical planning was performed in virtual environment by moving the image objects. The customized implant was prefabricated based on the 3-dimensional image created to cover the cranial defect. A skull model is also produced for real touch evaluation, surgical planning and rehearsal of surgical procedures. The results show that both of 3-dimensional medical image model and physical skull model were helpful for planning of craniofacial surgery and design of customized implant. The surgery result was satisfactory without complication. Particular advantage was the unlimited trials in surgical simulation for using imaging model, and the close-to-reality surgical rehearsal for using physical model.
机译:创伤,颅骨肿瘤,已感染的颅骨切开术皮瓣和外部神经外科减压是造成大颅骨缺损的主要原因。颅面重建手术的成功与否取决于对畸形的良好术前评估,手术计划的形成,准备精确配合的植入物以及手术的准确执行。最近,逆向工程和快速原型技术已被用于在各种医疗应用中产生物理模型。在本文中,将3D医学图像重建和快速原型技术的应用用于大颅骨缺损重建患者的植入物设计和植入物的生产。通过移动图像对象来操纵医学图像并在虚拟环境中执行手术计划。根据覆盖颅骨缺损的三维图像预制定制的植入物。还产生了一个头骨模型,用于真实的触摸评估,手术计划和手术程序的演练。结果表明,三维医学图像模型和物理颅骨模型均有助于颅面外科手术的计划和定制植入物的设计。手术结果满意,无并发症。特殊的优势是使用成像模型进行的外科手术模拟的无限制试验,以及使用物理模型进行的接近真实的手术演练。

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