Hur Beong Ik, Jin Seong Jin, Kim Gyeong Rip, Kwak Jong Hyeok, Kim Young Ha, Lee Sang Weon, Sung Soon Ki
Department of Neurosurgery, Pusan National University Hospital, Busan, Korea.
Gamma-knife Center, Haeundae Paik Hospital, Inje University, Busan, Korea.
J Korean Neurosurg Soc. 2021 Jan;64(1):13-22. doi: 10.3340/jkns.2020.0186. Epub 2021 Jan 1.
High precision and accuracy are expected in gamma knife radiosurgery treatment. Because of the requirement of clinically applying complex radiation and dose gradients together with a rapid radiation decline, a dedicated quality assurance program is required to maintain the radiation dosimetry and geometric accuracy and to reduce all associated risk factors. This study investigates the validity of Leksell Gamma plan (LGP)10.1.1 system of 5th generation Gamma Knife Perfexion as modified variable ellipsoid modeling technique (VEMT) method.
To verify LGP10.1.1 system, we compare the treatment plan program system of the Gamma Knife Perfexion, that is, the LGP, with the calculated value of the proposed modified VEMT program. To verify a modified VEMT method, we compare the distributions of the dose of Gamma Knife Perfexion measured by Gafchromic EBT3 and EBT-XD films. For verification, the center of an 80 mm radius solid water phantom is placed in the center of all sectors positioned at 16 mm, 4 mm and 8 mm; that is, the dose distribution is similar to the method used in the x, y, and z directions by the VEMT. The dose distribution in the axial direction is compared and analyzed based on Full-Width-of-Half-Maximum (FWHM) evaluation.
The dose profile distribution was evaluated by FWHM, and it showed an average difference of 0.104 mm for the LGP value and 0.130 mm for the EBT-XD film.
The modified VEMT yielded consistent results in the two processes. The use of the modified VEMT as a verification tool can enable the system to stably test and operate the Gamma Knife Perfexion treatment planning system.
伽玛刀放射外科治疗期望具备高精度和高准确性。由于临床应用中需要复杂的辐射和剂量梯度,同时辐射剂量快速下降,因此需要一个专门的质量保证程序来维持辐射剂量测定和几何精度,并降低所有相关风险因素。本研究调查了第五代伽玛刀Perfexion的Leksell伽玛计划(LGP)10.1.1系统作为改进的可变椭球体建模技术(VEMT)方法的有效性。
为验证LGP10.1.1系统,我们将伽玛刀Perfexion的治疗计划程序系统(即LGP)与所提出的改进VEMT程序的计算值进行比较。为验证改进的VEMT方法,我们比较了由Gafchromic EBT3和EBT-XD薄膜测量的伽玛刀Perfexion的剂量分布。为进行验证,将半径80 mm的固体水模体的中心置于所有位于16 mm、4 mm和8 mm处的扇形区中心;即剂量分布类似于VEMT在x、y和z方向上使用的方法。基于半高宽(FWHM)评估对轴向剂量分布进行比较和分析。
通过FWHM评估剂量分布曲线,结果显示LGP值的平均差异为0.104 mm,EBT-XD薄膜的平均差异为0.130 mm。
改进的VEMT在两个过程中产生了一致的结果。将改进的VEMT用作验证工具可使系统稳定地测试和操作伽玛刀Perfexion治疗计划系统。