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Patient-Specific Bone Implants using Subtractive Rapid Prototyping

机译:使用减法快速原型制作特定于患者的骨植入物

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This research involves the development of rapid manufacturing for patient-specific bone implants using a Subtractive Rapid Prototyping process. The geometry of segmental defects in bone, resulting from traumatic injury or cancerous tumor resection, can be reverse-engineered from medical images (such as CT scans), and then accurate defect fillers can be automatically generated in advanced synthetic or otherwise bioactive/biocompatible materials. This paper presents a general process planning methodology that begins with CT imaging and results in the automatic generation of process plans for a subtractive RP system. This work uniquely enables the rapid manufacturing of implant fillers with several key characteristics including; suitable bio-compatible materials and custom surface characteristics on specified patches of the filler geometry. This work utilizes a PLY input file, instead of the more common STL, since color texture information can be utilized for advanced process planning depending on whether the surface is fracture, periosteal or articular in origin. The future impact of this work is the ability to create accurate filler geometries that improve initial fixation strength and stability through accurate mating geometry, fixation planning and inter-surface roughness conditions.
机译:这项研究涉及使用减法快速原型制作工艺快速开发针对特定患者的骨植入物的方法。可以通过医学图像(例如CT扫描)对由创伤性损伤或癌性肿瘤切除术引起的骨节段性缺陷的几何形状进行逆向工程,然后可以在先进的合成材料或生物活性/生物相容性材料中自动生成准确的缺陷填充物。本文介绍了一种通用的工艺计划方法,该方法以CT成像开始,并自动生成减法RP系统的工艺计划。这项工作独特地实现了具有以下几个关键特性的植入物填充物的快速制造:合适的生物相容性材料和特定的填充几何形状补丁上的自定义表面特性。这项工作利用了PLY输入文件,而不是更常见的STL,因为可以根据表面是断裂,骨膜还是关节起源来将颜色纹理信息用于高级工艺计划。这项工作对未来的影响是能够创建准确的填充物几何形状,从而通过精确的配合几何形状,固定规划和表面间粗糙度条件来提高初始固定强度和稳定性。

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