Marcu S M, Wu Q J, Pillai K, Weinhous M S
The Cleveland Clinic, Radiation and Oncology/T28, Ohio 44195, USA.
Med Phys. 2000 Sep;27(9):2146-9. doi: 10.1118/1.1287051.
This work provides a method for an independent check of Gamma Knife GammaPlan radiosurgery calculations, named the spherical approximation method or SAM. Based on skull dimension measurements, the treated volume of the head is modeled as a sphere of radius R. With this approximation, an analytical solution for fast ray tracing of the path length, for each of the 201 beamlets, of the Gamma Knife helmet collimator was possible. The dose rate at the focus of a single shot is the sum of the contributions of all active beamlets adjusted for both the collimator factor and attenuation. For an arbitrary point, the dose rate is derived at the beamlet level from the focus values adjusted for the new path length attenuation and the appropriate collimators' off-axis profiles. The sum over all beamlets' contributions gives the dose rate at that particular point. At the single shot level, SAM independent check results agree with the GammaPlan for patient calculations to better than +/-6% and, as expected, in spherical phantoms the agreements improve to better than +/-1.0%. For an arbitrary point, multi-shot procedure, the agreement is better than +/-3% and +/-1.5, respectively.
这项工作提供了一种对伽玛刀伽玛计划放射外科手术计算进行独立检查的方法,称为球面近似法或SAM。基于颅骨尺寸测量,将头部的治疗体积建模为半径为R的球体。通过这种近似,对于伽玛刀头盔准直器的201个小射束中的每一个,都可以得到路径长度快速射线追踪的解析解。单次照射焦点处的剂量率是所有有源小射束贡献之和,并根据准直器因子和衰减进行调整。对于任意点,剂量率是在小射束级别从针对新路径长度衰减和适当准直器离轴轮廓调整后的焦点值得出的。所有小射束贡献的总和给出该特定点的剂量率。在单次照射水平,SAM独立检查结果与伽玛计划针对患者计算的结果相符,误差优于±6%,并且正如预期的那样,在球形体模中,相符度提高到优于±1.0%。对于任意点的多次照射程序,相符度分别优于±3%和±1.5%。