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首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >Commissioning of a micro multi-leaf collimator and planning system for stereotactic radiosurgery.
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Commissioning of a micro multi-leaf collimator and planning system for stereotactic radiosurgery.

机译:微型多叶准直仪和立体定向放射外科计划系统的调试。

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PURPOSE: A computer controlled micro multi-leaf collimator, m3 mMLC, has been commissioned for conformal, fixed-field radiosurgery applications. Measurements were made to characterise the basic dosimetric properties of the m3, such as leaf transmission, leakage and beam penumbra. In addition, the geometric and dosimetric accuracy of the m3 was verified when used in conjunction with a BrainSCAN v3.5 stereotactic planning system. MATERIALS AND METHODS: The m3 was detachably mounted to a Varian Clinac 2100C accelerator delivering 6 MV X-rays. Leaf transmission, leakage, penumbra and multiple, conformal fixed field dose distributions were measured using calibrated film in solid water. Beam data were collected using a diamond detector in a scanning water tank and planned dose distributions were verified using LiF TLDs and film. A small, shaped phantom was also constructed to confirm field shaping accuracy using portal images. RESULTS: Mean transmission through the closed multi-leaves was 1.9 +/- 0.1% and leakage between leaves was 2.8 +/- 0.15%. Between opposing leaves abutting along the central beam-axis transmission was approximately 15 +/- 3%, but was reduced to a mean of 4.5 +/- 0.6% by moving the abutmen position 4.5 cm off-axis. Beam penumbrae were effectively constant as a function of increasing square field size and asymmetric fields and was seen to vary non-linearly when shaped to diagonal, straight edges. TMR, OAR and relative output beam data measurements of circular m3 fields were comparable to conventional, circular stereotactic collimators. Multiple, conformal field dose distributions were calculated with good spatial and dosimetric accuracy, with the planned 90% isodose curves agreeing with measurements to within 1-2 mm and to +/- 3% at isocentre. Portal films agreed with planned beams eye-view field shaping to within 1 mm. CONCLUSIONS: The m3 micro multi-leaf collimator is a stable, high precision field-shaping device suitable for small-field, radiosurgery applications. Dose distributions can be accurately calculated by a planning system using only a few beam data parameters.
机译:目的:已对一种计算机控制的微型多叶准直仪m3 mMLC进行了调试,以用于保形的固定场放射外科应用。进行了测量以表征m3的基本剂量特性,例如叶片透射,泄漏和束流半影。此外,与BrainSCAN v3.5立体定向计划系统结合使用时,可以验证m3的几何和剂量学准确性。材料与方法:将m3可拆卸地安装到传递6 MV X射线的Varian Clinac 2100C加速器上。使用固体水中的校准膜测量叶片的透射率,泄漏率,半影和多重,共形的固定场剂量分布。使用金刚石探测器在扫描水箱中收集光束数据,并使用LiF TLD和胶片验证计划的剂量分布。还构造了一个小形状的体模,以确认使用门户图像的场成形精度。结果:通过闭合多叶的平均透过率为1.9 +/- 0.1%,叶片之间的泄漏为2.8 +/- 0.15%。沿中心光束轴传输方向邻接的相对叶片之间的距离约为15 +/- 3%,但是通过将支座位置偏离轴心4.5 cm可以将其平均降低到4.5 +/- 0.6%。光束半影有效地是恒定的,这取决于方形场大小和不对称场的增加,并且在定形为对角,直边时,光束半影呈非线性变化。圆形m3场的TMR,OAR和相对输出光束数据测量结果与常规的圆形立体定向准直仪相当。计算出的多个共形场剂量分布具有良好的空间和剂量学准确性,计划的90%等剂量曲线与1-2 mm范围内的测量值一致,等心点处为+/- 3%的测量值。门膜与计划的光束眼视场整形在1毫米以内。结论:m3微型多叶准直仪是一种稳定的高精度场整形设备,适用于小场,放射外科应用。计划系统仅使用几个射束数据参数即可准确计算剂量分布。

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