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首页> 外文期刊>Medical Physics >A slit method to determine the focal spot size and shape of TomoTherapy system.
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A slit method to determine the focal spot size and shape of TomoTherapy system.

机译:确定狭缝大小和TomoTherapy系统形状的狭缝方法。

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PURPOSE: To obtain accurate x-ray source profile measurements using a slit-collimator, the slit-collimator should have a narrow width, large height, and be positioned near the source. However, these conditions may not always be met. In this paper, the authors provide a detailed analysis of the slit measurement geometry and the relationship between the slit parameters and the measured x-ray source profile. The slit model allows the use of a shorter and more easily available slit-collimator, while accurate source profile measurements can still be obtained. METHODS: Measurements were performed with a variety of slit widths and/or slit to source distances. The relationship derived between the slit parameters and the measured profile was used to determine the true focal spot profile through a least square fit of the profile data. The model was verified by comparing the predicted profiles at a variety of slit-collimator parameters with the measured results on the TomoTherapy Hi-Art system. RESULTS: Both the treatment beam and the imaging beam were measured. For treatment mode, it was found that a source consisting of one Gaussian with a 0.75 mm full-width-half-maximum (FWHM) and 72% peak amplitude and a second Gaussian with a 2.27 mm FWHM and 18% peak amplitude matched measurement profiles. The overall source profile has a FWHM of 0.93 mm, but with a higher amplitude in the tail region than a single Gaussian. For imaging mode, the source consists of one Gaussian with a 0.68 mm FWHM and 82% peak amplitude and a second Gaussian with a 1.83 mm FWHM and 18% peak amplitude. The overall source profile has a FWHM of 0.77 mm. CONCLUSIONS: Our study of the focal spot measurement using slit-collimators showed that accurate source profile measurements can be achieved through fitting of measurement results at different slit widths and source-to-slit distances (SSD). Quantitative measurements of the TomoTherapy linac focal spot showed that the source distribution could be better described with a model consisting of two Gaussian components rather than a single Gaussian model as assumed in previous studies.
机译:目的:为了使用狭缝准直仪获得准确的X射线源轮廓测量结果,狭缝准直仪应具有较窄的宽度,较大的高度,并且应放置在靠近源的位置。但是,这些条件可能并不总是得到满足。在本文中,作者对狭缝测量的几何形状以及狭缝参数与所测量的X射线源轮廓之间的关系进行了详细分析。狭缝模型允许使用更短,更容易获得的狭缝准直仪,同时仍可以获得准确的光源轮廓测量值。方法:使用各种狭缝宽度和/或狭缝到光源的距离进行测量。狭缝参数与测得的轮廓之间的关系用于通过轮廓数据的最小二乘拟合确定真实的焦点轮廓。通过将在各种狭缝准直器参数下的预测轮廓与在TomoTherapy Hi-Art系统上的测量结果进行比较来验证模型。结果:治疗光束和成像光束均被测量。对于治疗模式,发现由一个具有0.75 mm全宽半最大值(FWHM)和72%峰值幅度的高斯和另一个具有2.27 mm FWHM和18%峰值幅度的高斯相匹配的测量源。整个源轮廓的FWHM为0.93 mm,但在尾部区域的振幅比单个高斯的振幅高。对于成像模式,光源由一个具有0.68 mm FWHM和82%峰值幅度的高斯和另一个具有1.83 mm FWHM和18%峰值幅度的高斯组成。整个光源轮廓的FWHM为0.77 mm。结论:我们对使用狭缝准直器进行焦点测量的研究表明,通过拟合不同狭缝宽度和信源到狭缝距离(SSD)的测量结果,可以实现精确的源轮廓测量。对TomoTherapy直线加速器焦点的定量测量表明,使用由两个高斯分量组成的模型而不是先前研究中假设的单个高斯模型,可以更好地描述源分布。

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