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Three-Dimensional Printed Modeling of Diffuse Low-Grade Gliomas and Associated White Matter Tract Anatomy

机译:弥漫性低度胶质瘤和相关的白色物质解剖学的三维打印建模

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摘要

>BACKGROUND: Diffuse low-grade gliomas (DLGGs) represent several pathological entities that infiltrate and invade cortical and subcortical structures in the brain. >OBJECTIVE: To describe methods for rapid prototyping of DLGGs and surgically relevant anatomy. >METHODS: Using high-definition imaging data and rapid prototyping technologies, we were able to generate 3 patient DLGGs to scale and represent the associated white matter tracts in 3 dimensions using advanced diffusion tensor imaging techniques. >RESULTS: This report represents a novel application of 3-dimensional (3-D) printing in neurosurgery and a means to model individualized tumors in 3-D space with respect to subcortical white matter tract anatomy. Faculty and resident evaluations of this technology were favorable at our institution. >CONCLUSION: Developing an understanding of the anatomic relationships existing within individuals is fundamental to successful neurosurgical therapy. Imaging-based rapid prototyping may improve on our ability to plan for and treat complex neuro-oncologic pathology.
机译:>背景:弥漫性低度神经胶质瘤(DLGG)代表几种病理实体,它们渗透并侵袭大脑的皮质和皮质下结构。 >目标:描述DLGG的快速原型制作方法和与手术相关的解剖结构。 >方法:使用高清成像​​数据和快速原型技术,我们能够使用先进的扩散张量成像技术在3个维度上生成3个患者DLGG进行缩放和表示相关的白质束。 >结果:该报告代表了3维(3-D)印刷在神经外科中的一种新颖应用,以及一种针对3D空间中的皮质皮层下白质组织解剖模型对个体化肿瘤进行建模的方法。教师和居民对该技术的评价在我们的机构中​​是有利的。 >结论:对个体内部存在的解剖关系的理解是成功进行神经外科治疗的基础。基于成像的快速原型设计可以改善我们计划和治疗复杂的神经肿瘤病理学的能力。

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