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Freeform fabrication of tissue-simulating phantom for potential use of surgical planning in conjoined twins separation surgery

机译:自由制作组织模拟体模以潜在地用于联合双胞胎分离手术中的手术计划

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摘要

Preoperative assessment of tissue anatomy and accurate surgical planning is crucial in conjoined twin separation surgery. We developed a new method that combines three-dimensional (3D) printing, assembling, and casting to produce anatomic models of high fidelity for surgical planning. The related anatomic features of the conjoined twins were captured by computed tomography (CT), classified as five organ groups, and reconstructed as five computer models. Among these organ groups, the skeleton was produced by fused deposition modeling (FDM) using acrylonitrile-butadiene-styrene. For the other four organ groups, shell molds were prepared by FDM and cast with silica gel to simulate soft tissues, with contrast enhancement pigments added to simulate different CT and visual contrasts. The produced models were assembled, positioned firmly within a 3D printed shell mold simulating the skin boundary, and cast with transparent silica gel. The produced phantom was subject to further CT scan in comparison with that of the patient data for fidelity evaluation. Further data analysis showed that the produced model reassembled the geometric features of the original CT data with an overall mean deviation of less than 2 mm, indicating the clinical potential to use this method for surgical planning in conjoined twin separation surgery.
机译:术前评估组织解剖结构和准确的手术计划对于联合双胎分离手术至关重要。我们开发了一种新方法,该方法结合了三维(3D)打印,组装和浇铸,可为手术计划生成高保真度的解剖模型。通过计算机断层扫描(CT)捕获双胞胎的相关解剖特征,分为五个器官组,并重建为五个计算机模型。在这些器官组中,骨架是使用丙烯腈-丁二烯-苯乙烯通过熔融沉积建模(FDM)制成的。对于其他四个器官组,通过FDM准备外壳模具,并用硅胶浇铸以模拟软组织,并添加对比增强颜料以模拟不同的CT和视觉对比。组装生产的模型,将其牢固地放置在模拟皮肤边界的3D打印外壳模具中,并用透明硅胶浇铸。与用于保真度评估的患者数据相比,对产生的体模进行了进一步的CT扫描。进一步的数据分析表明,所产生的模型重新组合了原始CT数据的几何特征,总体平均偏差小于2mm,表明在联合双胞胎分离手术中使用此方法进行手术计划的临床潜力。

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