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3D-Printed Whole Prostate Models with Tumor Hotspots Using Dual-Extruder Printer

机译:使用双挤出机打印机以肿瘤热点进行3D打印的整个前列腺模型

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3D printing has emerged as a popular technology in various biomedical applications. Physical models of anatomical structures concretize the digital representations and can be used for teaching and analysis. In this study we combine 3D histology with 3D printing, creating realistic physical models of tissues with hotspots of interest. As an example we use mouse prostates containing tumors. Surface meshes are created from binary masks of HE-stained serial sections of mouse prostates and manually annotated tumor areas. Sections are interpolated to expand sparse image stacks for smoother results. Fiji, Meshlab and Tinkercad are used for mesh creation and processing. Objects are printed with Prusa-based dual-extruder printer enabling different colors for tumors and the surrounding prostate tissue. Our 3D-printed mouse prostates appear realistic and tumors located at the edges of the organ are clearly visible. When transparent filament is used, the tumor hotspots are visible even when they are inside the prostate.
机译:3D打印已成为各种生物医学应用程序中的流行技术。解剖结构的物理模型具体化了数字表示形式,可用于教学和分析。在这项研究中,我们将3D组织学与3D打印相结合,创建了具有关注热点的逼真的组织物理模型。例如,我们使用包含肿瘤的小鼠前列腺。表面网格是通过HE染色的小鼠前列腺连续切片和人工注释的肿瘤区域的二进制掩码创建的。插值各部分以扩展稀疏图像堆栈以获得更平滑的结果。斐济,Meshlab和Tinkercad用于创建和处理网格。使用基于Prusa的双挤出机打印机打印对象,从而为肿瘤和周围的前列腺组织提供不同的颜色。我们的3D打印鼠标前列腺看起来很逼真,位于器官边缘的肿瘤清晰可见。使用透明细丝时,即使在前列腺内部,也可以看到肿瘤热点。

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