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Creating customized oral stents for head and neck radiotherapy using 3D scanning and printing

机译:使用3D扫描和打印为头颈放射疗法创建定制的口腔支架

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摘要

To evaluate and establish a digital workflow for the custom designing and 3D printing of mouth opening tongue-depressing (MOTD) stents for patients receiving radiotherapy for head and neck cancer. We retrospectively identified 3 patients who received radiation therapy (RT) for primary head and neck cancers with MOTD stents. We compared two methods for obtaining the digital impressions of patients’ teeth. The first method involved segmentation from computed tomography (CT) scans, as previously established by our group, and the second method used 3D scanning of the patients’ articulated stone models that were made during the conventional stent fabrication process. Three independent observers repeated the process to obtain digital impressions which provided data to design customized MOTD stents. For each method, we evaluated the time efficiency, dice similarity coefficient (DSC) for reproducibility, and the 3D printed stents’ accuracy. For the 3D scanning method, we evaluated the registration process using manual and automatic approaches. For all patients, the 3D scanning method demonstrated a significant advantage over the CT scanning method in terms of time efficiency with over 60% reduction in time consumed (p??0.0001) and reproducibility with significantly higher DSC (p??0.001). The printed stents were tested over the articulated dental stone models, and the trueness of fit and accuracy of dental anatomy was found to be significantly better for MOTD stents made using the 3D scanning method. The automated registration showed higher accuracy with errors ?0.001?mm compared to manual registration. We developed an efficient workflow for custom designing and 3D-printing MOTD radiation stents. This workflow represents a considerable improvement over the CT-derived segmentation method. The application of this rapid and efficient digital workflow into radiation oncology practices can expand the use of these toxicity sparing devices to practices that do not currently have the support to make them.
机译:评估并建立数字化工作流程,以便为接受头颈癌放疗的患者定制设计和3D打印张口压舌(MOTD)支架。我们回顾性鉴定了3例接受MOTD支架治疗的原发性头颈癌放疗(RT)的患者。我们比较了两种获得患者牙齿数字印象的方法。第一种方法是按照我们小组先前建立的方法,通过计算机断层扫描(CT)进行分割,第二种方法是对患者在传统支架制造过程中制作的关节结石模型进行3D扫描。三名独立的观察者重复了这一过程以获得数字化印模,从而为设计定制的MOTD支架提供数据。对于每种方法,我们都评估了时间效率,骰子相似性系数(DSC)的可重复性以及3D打印支架的准确性。对于3D扫描方法,我们使用手动和自动方法评估了注册过程。对于所有患者,在时间效率方面,3D扫描方法均比CT扫描方法具有显着优势,所消耗的时间减少了60%以上(p 0.0001),并且DSC的再现性明显更高(p 0.001) 。在铰接式牙石模型上测试了印刷的支架,发现使用3D扫描方法制成的MOTD支架的贴合性和牙齿解剖结构的准确性明显更好。与手动配准相比,自动配准显示出更高的准确性,且误差<0.001mm。我们为定制设计和3D打印MOTD辐射支架开发了高效的工作流程。此工作流程表示对源自CT的分割方法的重大改进。这种快速有效的数字工作流程在放射肿瘤学实践中的应用可以将这些节省毒性的设备的使用范围扩大到当前尚无支持的做法。

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