Corbett Jean-François, Jezioranski John, Crook Juanita, Yeung Ivan
Department of Radiation Physics, Princess Margaret Hospital, Toronto, Ontario, Canada.
Med Phys. 2002 Jun;29(6):1003-6. doi: 10.1118/1.1477417.
Cumulative dose-volume histograms (DVH) are crucial in evaluating the quality of radioactive seed prostate implants. When calculating DVHs, the choice of voxel size is a compromise between computational speed (larger voxels) and accuracy (smaller voxels). We quantified the effect of voxel size on the accuracy of DVHs using an in-house computer program. The program was validated by comparison with a hand-calculated DVH for a single 0.4-U iodine-125 model 6711 seed. We used the program to find the voxel size required to obtain accurate DVHs of five iodine-125 prostate implant patients at our institution. One-millimeter cubes were sufficient to obtain DVHs that are accurate within 5% up to 200% of the prescription dose. For the five patient plans, we obtained good agreement with the VariSeed (version 6.7, Varian, USA) treatment planning software's DVH algorithm by using voxels with a sup-inf dimension equal to the spacing between successive transverse seed implant planes (5 mm). The volume that receives at least 200% of the target dose, V200, calculated by VariSeed was 30% to 43% larger than that calculated by our program with small voxels. The single-seed DVH calculated by VariSeed fell below the hand calculation by up to 50% at low doses (30 Gy), and above it by over 50% at high doses (>250 Gy).
累积剂量体积直方图(DVH)在评估放射性粒子前列腺植入的质量方面至关重要。在计算DVH时,体素大小的选择是计算速度(较大体素)和准确性(较小体素)之间的一种权衡。我们使用一个内部计算机程序量化了体素大小对DVH准确性的影响。通过与单个0.4-U碘-125型号6711粒子的手工计算DVH进行比较,对该程序进行了验证。我们使用该程序来确定在我们机构获得五例碘-125前列腺植入患者准确DVH所需的体素大小。1立方毫米的体素足以获得在处方剂量的200%以内误差在5%以内的DVH。对于这五例患者计划,通过使用上下维度等于连续横向粒子植入平面间距(5毫米)的体素,我们与VariSeed(版本6.7,美国瓦里安公司)治疗计划软件的DVH算法取得了良好的一致性。VariSeed计算的接受至少200%靶剂量的体积V200,比我们使用小体素的程序计算的结果大30%至43%。VariSeed计算的单粒子DVH在低剂量(30 Gy)时比手工计算结果低达50%,在高剂量(>250 Gy)时比手工计算结果高超过50%。