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计算机辅助设计与快速成型技术在上颌含放射性粒子装置中的临床应用

[Clinical application of computer-aided design and rapid prototyping technique for radioactive seeds contained maxillary device].

作者信息

Tong Dai, Huang Ming-wei, Zhang Jian-guo, Feng Hai-lan, Li Yan-sheng

机构信息

Department of Prosthodontics, Peking University School and Hospital of Stomatology, Beijing 100081, China.

出版信息

Beijing Da Xue Xue Bao Yi Xue Ban. 2010 Feb 18;42(1):63-6.

Abstract

OBJECTIVE

To test a new method to manufacture a maxillary applicator containing radioactive seeds for brachytherapy of malignant neoplasms based on computer aided design (CAD) and rapid prototyping (RP).

METHODS

Six patients with maxillary malignancy which had eroded the inferior wall of orbit and skull base were included in this study. After excision of the tumors, head CT data of these patients were transmitted into the computer. Three-dimensional digital image of the patient's defected region was then obtained with special software processing based on Mimics 8.11 and Geomagic 7.0 and the resin cast of the defected region was manufactured by rapid prototyping. The elastic obturator was then made on this resin cast which can duplicate the undercut tissue of the defected region. After the obturator was completed, the radiotherapy plan was made. (125)I radioactive seeds were implanted into the tissues, and they were also implanted into the target area of the obturator which was used as a maxillary applicator at the same time. The number of radioactive seeds was then counted and the stability of radioactive seeds was determined by CT examination. All these 6 patients were followed-up for 12 months.

RESULTS

All the obturators had good retention and stability and fitted the designed target tissue very well. (125)I radioactive seeds in the form of the obturator applicator were stable. For all patients, the total number of radioactive seeds used was 189. Among them, 105 seeds, 55.6% of the total, were contained in obturator applicators. After the obturator applicators were used, the amount of radioactive seeds irradiating the target regions was significantly increased when compared with that of before. After follow-up of 12 months, there was no recurrence nor severe complications.

CONCLUSION

(125)I radioactive seeds contained maxillary applicator made by computer aided design and rapid prototyping can effectively improve the brachytherapy of (125)I when it is used for the post-operation radiotherapy of maxillary malignant tumors.

摘要

目的

测试一种基于计算机辅助设计(CAD)和快速成型(RP)制造用于恶性肿瘤近距离放射治疗的含放射性粒子上颌施源器的新方法。

方法

本研究纳入6例上颌恶性肿瘤侵犯眶下壁和颅底的患者。肿瘤切除后,将这些患者的头部CT数据传输至计算机。然后基于Mimics 8.11和Geomagic 7.0软件处理获得患者缺损区域的三维数字图像,并通过快速成型制造缺损区域的树脂模型。接着在该树脂模型上制作能复制缺损区域倒凹组织的弹性阻塞器。阻塞器完成后,制定放射治疗计划。将¹²⁵I放射性粒子植入组织,同时也植入用作上颌施源器的阻塞器的靶区。然后计数放射性粒子数量,并通过CT检查确定放射性粒子的稳定性。对这6例患者均进行了12个月的随访。

结果

所有阻塞器均具有良好的固位和稳定性,与设计的靶组织贴合良好。以阻塞器施源器形式存在的¹²⁵I放射性粒子稳定。所有患者使用的放射性粒子总数为189枚。其中,105枚,占总数的55.6%,包含在阻塞器施源器中。使用阻塞器施源器后,与之前相比,照射靶区的放射性粒子量显著增加。随访12个月后,无复发及严重并发症发生。

结论

通过计算机辅助设计和快速成型制造的含¹²⁵I放射性粒子的上颌施源器用于上颌恶性肿瘤术后放射治疗时,可有效提高¹²⁵I近距离放射治疗的效果。

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