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A mold design for creating low-cost, patient specific models with complex anatomy

机译:模具设计,用于创造低成本,具有复杂解剖学的特定模型

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Physical models of patient anatomy have been used increasingly as 3D printing technologies have become mainstream. Such models can be used for both the validation of new minimally invasive surgical techniques, as well as surgical rehearsal and training. However, current workflows for creating flexible models with complex anatomy rely on the use of expensive 3D printing techniques. We present a mold design with which we create patient-specific physical models using low-cost techniques and materials. This generic mold makes it possible to create physical models with multiple components and complex internal structures including tumours, vasculature and other anatomic components with accuracy. To demonstrate this, we have created kidney models derived from the CT of excised porcine kidneys, including vasculature and an artificial tumor. We created the models in two parts, first using a rigid positive model to create a negative mold, and then creating a silicone model with the 3D printed vasculature inside, and removing it to leave wall-less vessels. The vasculature models include at least six separate bifurcations with minimum lumen diameters of approximately lmm. The mean Euclidean offset distance between the model and original vessels was 0.42 mm, with a standard deviation of 0.50 mm. Both generic and patient specific models can be built with this workflow.
机译:患者解剖学的物理模型已被越来越多地使用,因为3D印刷技术已成为主流。这些模型可用于新的微创手术技术的验证,以及手术排练和培训。但是,具有复杂解剖结构的灵活模型的当前工作流程依赖于使用昂贵的3D打印技术。我们提出了一种模具设计,我们使用低成本技术和材料创建患者特定的物理模型。这种通用模具使得可以使用多个组件和复杂的内部结构来创建物理模型,包括肿瘤,脉管系统和其他具有精度的解剖组件。为了证明这一点,我们创造了来自切除的猪肾脏的CT的肾模型,包括脉管系统和人工肿瘤。我们在两部分中创建了模型,首先使用刚性正模具来创建负模具,然后在内部使用3D印刷脉管系统创建硅胶模型,并将其留下留下墙面的血管。脉管系统的型号包括至少六个单独的分叉分叉,最小腔直径约为1mm。模型和原始容器之间的平均欧几里德偏移距离为0.42毫米,标准偏差为0.50毫米。通用和患者特定模型都可以使用此工作流程构建。

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