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Fast, simple, and informative patient-specific dose verification method for intensity modulated total marrow irradiation with helical tomotherapy

机译:快速,简单且信息丰富的特定于患者的剂量验证方法,用于螺旋层析疗法进行强度调制的全骨髓照射

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Background Patient-specific dose verification for treatment planning in helical tomotherapy is routinely performed using a homogeneous virtual water cylindrical phantom of 30 cm diameter and 18 cm length (Cheese phantom). Because of this small length, treatment with total marrow irradiation (TMI) requires multiple deliveries of the dose verification procedures to cover a wide range of the target volumes, which significantly prolongs the dose verification process. We propose a fast, simple, and informative patient-specific dose verification method which reduce dose verification time for TMI with helical tomotherapy. Methods We constructed a two-step solid water slab phantom (length 110 cm, height 8 cm, and two-step width of 30 cm and 15 cm), termed the Whole Body Phantom (WB phantom). Three ionization chambers and three EDR-2 films can be inserted to cover extended field TMI treatment delivery. Three TMI treatment plans were conducted with a TomoTherapy HiArt Planning Station and verified using the WB phantom with ion chambers and films. Three regions simulating the head and neck, thorax, and pelvis were covered in a single treatment delivery. The results were compared to those with the cheese phantom supplied by Accuray, Inc. following three treatment deliveries to cover the body from head to pelvis. Results Use of the WB phantom provided point doses or dose distributions from head and neck to femur in a single treatment delivery of TMI. Patient-specific dose verification with the WB phantom was 62% faster than with the cheese phantom. The average pass rate in gamma analysis with the criteria of a 3-mm distance-to-agreement and 3% dose differences was 94%?±?2% for the three TMI treatment plans. The differences in pass rates between the WB and cheese phantoms at the upper thorax to abdomen regions were within 2%. The calculated dose agreed with the measured dose within 3% for all points in all five cases in both the WB and cheese phantoms. Conclusions Our dose verification method with the WB phantom provides simple and rapid quality assurance without limiting dose verification information in total marrow irradiation with helical tomotherapy.
机译:背景技术通常使用直径为30 cm,长度为18 cm的均质虚拟水圆柱体模(奶酪体模)对用于螺旋体层摄影术治疗计划的患者特定剂量进行验证。由于长度短,用全骨髓照射(TMI)进行治疗需要多次交付剂量验证程序以覆盖广泛的目标体积,这大大延长了剂量验证过程。我们提出了一种快速,简单且信息丰富的特定于患者的剂量验证方法,该方法可减少通过螺旋断层扫描进行TMI的剂量验证时间。方法我们构建了一个两步式固体水平板幻影(长110厘米,高8厘米,两步宽度分别为30厘米和15厘米),称为全身幻影(WB幻影)。可以插入三个电离室和三个EDR-2膜,以覆盖扩展的现场TMI处理输送。用TomoTherapy HiArt Planning Station进行了三个TMI治疗计划,并使用带离子室和胶片的WB幻像进行了验证。在一次治疗中覆盖了三个模拟头部,颈部,胸部和骨盆的区域。将结果与Accuray,Inc.提供的带有奶酪幻影的奶酪进行了比较,经过3次治疗覆盖了从头部到骨盆的整个身体。结果WB幻象的使用在TMI的单次治疗中提供了从头颈部到股骨的点剂量或剂量分布。 WB幻象的患者特定剂量验证比奶酪幻象快62%。对于三个TMI治疗计划,以3毫米协议距离和3%剂量差异为标准的伽马分析的平均通过率为94%?±?2%。 WB和奶酪体模在上胸至腹部的通过率差异在2%以内。在WB和奶酪模型中,所有五种情况下所有点的计算剂量均与3%以内的测得剂量一致。结论我们采用WB幻象的剂量验证方法可提供简单,快速的质量保证,而不会限制螺旋断层扫描在整个骨髓照射中的剂量验证信息。

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