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A novel greedy heuristic‐based approach to intraoperative planning for permanent prostate brachytherapy

机译:一种基于贪婪启发式的新颖方法,用于永久性前列腺近距离放射治疗的术中计划

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This paper presents a greedy heuristic-based double iteration and rectification (DIR) approach to intraoperative planning for permanent prostate brachytherapy. The DIR approach adopts a greedy seed selection (GSS) procedure to obtain a preliminary plan. In this process, the potential seeds are evaluated according to their ability to irradiate target while spare organs at risk (OARs), and their impact on dosimetric homogeneity within target volume. A flexible termination condition is developed for the GSS procedure, which guarantees sufficient dose within target volume while avoids overdosing the OARs. The preliminary treatment plan generated by the GSS procedure is further refined by the double iteration (DI) and rectification procedure. The DI procedure removes the needles containing only one seed (single seed) and implements the GSS procedure again to get a temporary plan. The DI procedure terminates until the needles number of the temporary plan does not decrease. This process is guided by constantly removing undesired part rather than imposing extra constrains. Following the DI procedure, the rectification procedure attempts to replace the remaining single seeds with the acceptable ones within the existing needles. The change of dosimetric distribution (DD) after the replacement is evaluated to determine whether to accept or to withdraw the replacement. Experimental results demonstrate that the treatment plans obtained by the DIR approach caters to all clinical considerations. Compared with currently available methods, DIR approach is faster, more reliable, and more suitable for intraoperative treatment planning in the operation room.PACS number: 87
机译:本文提出了一种基于贪婪启发式的双重迭代和纠正(DIR)方法进行永久性前列腺近距离放射治疗的术中计划。 DIR方法采用贪婪种子选择(GSS)程序以获得初步计划。在此过程中,根据潜在种子在处于危险状态的备用器官(OAR)时辐照靶标的能力以及它们对靶标量内剂量均匀性的影响进行评估。为GSS程序开发了一种灵活的终止条件,该条件可确保目标体积内有足够的剂量,同时避免过量使用OAR。由GSS程序生成的初步处理计划通过双迭代(DI)和纠正程序进一步完善。 DI程序将只包含一个种子(单个种子)的针移开,然后再次执行GSS程序以获得临时计划。 DI程序终止,直到临时计划的针数不减少为止。该过程的指导原则是不断去除不想要的部分,而不是施加额外的约束。在执行DI程序之后,纠正程序将尝试用现有针头中可接受的种子替换剩余的单个种子。评估替换后的剂量分布变化(DD),以确定是否接受或撤回替换。实验结果表明,通过DIR方法获得的治疗计划可满足所有临床考虑。与目前可用的方法相比,DIR方法更快,更可靠,并且更适合在手术室中进行术中治疗计划.PACS数:87

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