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Development of a novel tumor phantom model for head and neck squamous cell carcinoma and its applications

机译:头颈部鳞状细胞癌新型肿瘤模型的建立及其应用

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Tumor phantoms (TP) have been described for the purposes of training surgical residents and further understanding tissue characteristics in malignancy. To date, there has not been a tumor phantom described for the purposes of research and training in oncologic surgery of the head and neck focusing on the larynx and pharynx. With the goal of providing radiographic, visual, and physical mimicry of head and neck squamous cell carcinoma (HNSCC), a phantom was developed as a proposed training and research tool for trans-oral surgical procedures such as transoral laser microsurgery (TLM) and transoral robotic surgery (TORS). TP's were constructed with an agar-gelatin chicken stock base to approximate reported physical properties, then glutaraldehyde and Omnipaque-350 were used as a fixative and to enhance CT-visualization respectively. Further, to ensure heterogeneity in radiographic imaging, other materials like olive oil and condensed milk were explored. These ingredients were combined with the use of a novel, 3D printed, syringe adaptor designed to allow for the direct injection of the liquid tumor into model tissue. TP's fixed quickly in vivo upon implantation and were imaged using CT and segmented. This injection-based model was piloted in bovine tissue and verified in porcine tissue with excess Omnipaque-350 for volumetric reliability then optimized utilizing 6 well plates. Following radiographic optimization, the viscoelastic properties of TP's were measured through uniaxial compression. We observed a Young's modulus similar to published literature values and consistent reproducibility. Most notably, our proposed TP can be used by multiple specialties by altering the color and concentration of agar in the base solution to approximate physical properties.
机译:为了训练外科住院医师和进一步了解恶性肿瘤的组织特性,已经描述了肿瘤体模(TP)。迄今为止,还没有为研究和训练以头颈部和咽部为重点的头颈部肿瘤外科手术而描述的肿瘤模型。为了提供射线照相,视觉和物理模拟的头颈部鳞状细胞癌(HNSCC),开发了一种幻影,作为经口外科手术方法(如经口激光显微外科手术(TLM)和经口外科手术)的拟议培训和研究工具。机器人手术(TORS)。 TP用琼脂明胶鸡汤料基础构建,以近似报道的物理特性,然后戊二醛和Omnipaque-350分别用作固定剂和增强CT可视化效果。此外,为确保放射成像中的异质性,还探索了其他材料,例如橄榄油和炼乳。将这些成分与新颖的3D打印注射器适配器结合使用,该适配器设计成可将液体肿瘤直接注射到模型组织中。 TP在植入后迅速在体内固定,并使用CT成像并分割。这种基于注射的模型在牛组织中进行了试验,并在猪组织中用过量的Omnipaque-350进行了验证,以确保体积可靠性,然后利用6孔板对其进行优化。在射线照相优化之后,通过单轴压缩来测量TP的粘弹性质。我们观察到的杨氏模量类似于已发表的文献值和一致的可重复性。最值得注意的是,我们提出的TP可以通过改变基本溶液中琼脂的颜色和浓度以近似物理性质而被多个专业使用。

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