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Fluence field modulated CT on a clinical TomoTherapy Radiation Therapy Machine

机译:临床TomoTherapy放射治疗机上的Fluence场调制CT

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Purpose: The multi-leaf collimator (MLC) assembly present on TomoTherapy (Accuray, Madison WI) radiation therapy (RT) and mega voltage CT machines is well suited to perform fluence field modulated CT (FFMCT). In addition, there is a demand in the RT environment for FFMCT imaging techniques, specifically volume of interest (VOI) imaging. Methods: A clinical TomoTherapy machine was programmed to deliver 30% imaging dose outside predefined VOIs. Four different size ROIs were placed at varying distances from isocenter. Projections intersecting the VOI received "full dose" while those not intersecting the VOI received 30% of the dose (i.e. the incident fluence for non VOI projections was 30% of the incident fluence for projections intersecting the VOI). Additional scans without fluence field modulation were acquired at "full" and 30% dose. The noise (pixel standard deviation) was measured inside the VOI region and compared between the three scans. Results: The VOI-FFMCT technique produced an image noise 1.09, 1.05, 1.05, and 1.21 times higher than the "full dose" scan for ROI sizes of 10 cm, 13 cm, 10 cm, and 6 cm respectively within the VOI region. Conclusions: Noise levels can be almost unchanged within clinically relevant VOIs sizes for RT applications while the integral imaging dose to the patient can be decreased, and/or the image quality in RT can be dramatically increased with no change in dose relative to non-FFMCT RT imaging. The ability to shift dose away from regions unimportant for clinical evaluation in order to improve image quality or reduce imaging dose has been demonstrated. This paper demonstrates that FFMCT can be performed using the MLC on a clinical TomoTherapy machine for the first time.
机译:目的:TomoTherapy(Accuray,Madison WI)放射治疗(RT)和兆伏电压CT机上的多叶准直器(MLC)组件非常适合执行注量场调制CT(FFMCT)。另外,RT环境中需要FFMCT成像技术,特别是感兴趣体积(VOI)成像。方法:对临床TomoTherapy机器进行编程,以在预定义的VOI之外提供30%的成像剂量。将四个不同大小的ROI放置在距等中心点不同的距离处。与VOI相交的投影接收“全剂量”,而不与VOI相交的投影接收30%的剂量(即,非VOI投影的入射通量是与VOI相交的投影的通量的30%)。在“全量”和30%剂量下获得了没有通量场调制的其他扫描。在VOI区域内测量了噪声(像素标准偏差),并在三个扫描之间进行了比较。结果:VOI-FFMCT技术产生的图像噪声比“全剂量”扫描高出1.09、1.05、1.05和1.21倍,在VOI区域内的ROI大小分别为10 cm,13 cm,10 cm和6 cm。结论:在临床相关的VOI尺寸范围内,对于RT应用而言,噪声水平几乎不变,而对患者的整体成像剂量可以降低,和/或与非FFMCT相比剂量不变,RT的图像质量可以显着提高RT成像。已经证明了能够将剂量从对于临床评估而言不重要的区域移开以改善图像质量或减少成像剂量的能力。本文证明了可以在临床TomoTherapy机器上首次使用MLC进行FFMCT。

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