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医科达Fraxion™系统不适用于犬类适形放射治疗技术中的上颌固定。

The Elekta Fraxion™ system is not suitable for maxillary fixation in canine conformal radiation therapy techniques.

作者信息

Yu Sonya, Morrow Deanna, Moutrie Vaughan, Lurie David

机构信息

Oncology Department, Animal Referral Hospital, Homebush West, New South Wales, Australia.

Waratah Private Hospital, Hurstville, New South Wales, Australia.

出版信息

Vet Radiol Ultrasound. 2019 Mar;60(2):233-240. doi: 10.1111/vru.12710. Epub 2019 Jan 18.

Abstract

In this prospective, exploratory study, we evaluated the positioning accuracy in a group of 15 dogs undergoing fractionated stereotactic radiotherapy for tumors affecting the head, using a modified human maxillary fixation device (Elekta Fraxion™ system). Positioning was assessed using on-board volumetric imaging, with a six-degrees-of-freedom image registration technique. Prior to treatment delivery, CBCT images were obtained and patient alignment was corrected, in both translational and rotational planes, using a six-degrees-of-freedom robotic patient positioning system (HexaPOD Evo RT System). The maximum angular inter-fraction motions observed were 6.1° (yaw), 10.9° (pitch), and 4.5° (roll). The mean systematic translational errors were 4.7, 2.6, and 2.3 mm, mean random translational errors were 3.0, 2.2, and 2.5 mm, and mean overall translational errors were 2.4, 0.7, and 2.3 mm in the cranial-caudal, lateral, and dorsal-ventral directions, respectively. The mean systematic rotational errors were 1.17°, 0.77°, and 1.43°, the mean rotational random errors were 1.65°, 1.46°, and 1.34° and the mean overall rotational errors were 0.56°, 0.22°, and 0.29° in the yaw, pitch, and roll directions, respectively. The mean error of the three-dimensional vector was 6.9 mm with a standard deviation of 3.8 mm. Ninety-five percent of the three-dimensional vectors were <14.8 mm. This study demonstrates that this maxillary fixation device relies on six-degrees-of-freedom registration and an ability to apply corrections using a six-degrees-of-freedom couch for accurate patient positioning and tumor targeting. Its use in conformal radiation therapy in dogs is not recommended.

摘要

在这项前瞻性探索性研究中,我们使用改良的人类上颌固定装置(医科达Fraxion™系统),对15只因头部肿瘤接受分次立体定向放射治疗的犬进行了定位准确性评估。使用机载容积成像和六自由度图像配准技术评估定位情况。在治疗前,获取CBCT图像,并使用六自由度机器人患者定位系统(HexaPOD Evo RT系统)在平移和旋转平面上对患者体位进行校正。观察到的最大分次间角向运动为6.1°(偏航)、10.9°(俯仰)和4.5°(滚动)。在头-尾、侧方和背-腹方向上,平均系统平移误差分别为4.7、2.6和2.3毫米,平均随机平移误差分别为3.0、2.2和2.5毫米,平均总平移误差分别为2.4、0.7和2.3毫米。在偏航、俯仰和滚动方向上,平均系统旋转误差分别为1.17°、0.77°和1.43°,平均旋转随机误差分别为1.65°、1.46°和1.34°,平均总旋转误差分别为0.56°、0.22°和0.29°。三维向量的平均误差为6.9毫米,标准差为3.8毫米。95%的三维向量<14.8毫米。本研究表明,这种上颌固定装置依靠六自由度配准以及使用六自由度治疗床进行校正的能力来实现准确的患者定位和肿瘤靶向。不建议在犬的适形放射治疗中使用该装置。

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