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首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Physical properties of new collimator cone system for stereotactic radiation therapy developed in samsung medical center.
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Physical properties of new collimator cone system for stereotactic radiation therapy developed in samsung medical center.

机译:在三星医疗中心开发的用于立体定向放射治疗的新型准直器锥系统的物理特性。

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摘要

PURPOSE: A new collimator cone system has been developed at the Samsung Medical Center that overcomes some of the limitations of present commercially supplied collimator cones. The physical properties of the newly developed cone system are described in this report. METHODS AND MATERIALS: The new cones have relatively larger aperture sizes (3.0-7.0 cm in diameter) and are 16 cm in length. Each new cone is fabricated with cerrobend alloy melted and poured into a stainless steel housing that is permanently fixed to a mounting plate. The mounting plate of the new cone is designed to insert into the wedge mount slot of the gantry head. The mechanical accuracy of the central axis of the cone pointing to the isocenter was tested using film, a steel ball positioned at the isocenter by the mechanical isocenter device. For the evaluation of beam flatness and penumbra, off-axis ratios at 5 cm depth were measured by film dosimetry using polystyrene phantom. RESULTS: The average error of the mechanical isocenter was 0.27 mm (+/- 0.16 mm). The beam flatness was excellent in the central region of the beam, and the average penumbra width was 3.35 mm (+/- 0.25 mm). The new cone design has more clearance between the patient's head and the gantry, and can more easily be removed from the gantry head because it slides in and out of the wedge slot. This facilitates changing cone sizes during one treatment session, and makes the process of double exposure port films easier. CONCLUSIONS: A new collimator cone system for stereotactic radiation therapy has been developed. The mechanical accuracy and physical properties are satisfactory for clinical use, and the new design permits a wider range of clinical applications for stereotactic radiation therapy.
机译:目的:三星医疗中心开发了一种新的准直仪锥系统,该系统克服了目前市售的准直仪锥的一些局限性。本报告介绍了新开发的锥体系统的物理特性。方法和材料:新的锥体的孔径相对较大(直径为3.0-7.0厘米),长度为16厘米。每个新锥体都是用熔化的塞罗伯合金制造的,并倒入永久固定在安装板上的不锈钢外壳中。新圆锥的安装板设计为插入龙门架的楔形安装槽中。使用薄膜(通过机械等中心装置定位在等中心处的钢球)测试了指向等中心的圆锥体中心轴的机械精度。为了评估光束的平坦度和半影,通过使用聚苯乙烯幻影的薄膜剂量法测量5 cm深度处的离轴比。结果:机械等角点的平均误差为0.27 mm(+/- 0.16 mm)。光束的平坦度在光束的中心区域极好,平均半影宽度为3.35毫米(+/- 0.25毫米)。新的锥体设计在患者头部和龙门架之间具有更大的间隙,并且由于它可以滑入和滑出楔形槽,因此可以更容易地从龙门架上卸下。这有助于在一个治疗阶段改变锥体的尺寸,并使两次曝光的端口胶卷的处理更加容易。结论:已经开发了用于立体定向放射治疗的新的准直器锥系统。机械精度和物理性能对于临床使用是令人满意的,并且新设计允许用于立体定向放射疗法的更广泛的临床应用。

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