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Treatment planning and 3D dose verification of whole brain radiation therapy with hippocampal avoidance in rats

机译:大鼠海马避免全脑放射治疗的治疗计划和3D剂量核查

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Despite increasing use of stereotactic radiosurgery, whole brain radiotherapy (WBRT) continues to have a therapeutic role in a selected subset of patients. Selectively avoiding the hippocampus during such treatment (HA-WBRT) emerged as a strategy to reduce the cognitive morbidity associated with WBRT and gave rise to a recently published the phase II trial (RTOG 0933) and now multiple ongoing clinical trials. While conceptually hippocampal avoidance is supported by pre-clinical evidence showing that the hippocampus plays a vital role in memory, there is minimal pre-clinic data showing that selectively avoiding the hippocampus will reduce radiation-induced cognitive decline. Largely the lack of pre-clinical evidence can be attributed to the technical hurdles associated with delivering precise conformal treatment the rat brain. In this work we develop a novel conformal HA-WBRT technique for Wistar rats, utilizing a 225kVp micro-irradiator with precise 3D-printed radiation blocks designed to spare hippocampus while delivering whole brain dose. The technique was verified on rodent-morphic Presage 3D dosimeters created from micro-CT scans of Wistar rats with Duke Large Field-of-View Optical Scanner (DLOS) at 1mm isotropic voxel resolution. A 4-field box with parallel opposed AP-PA and two lateral opposed fields was explored with conformal hippocampal sparing aided by 3D-printed radiation blocks. The measured DVH aligned reasonably well with that calculated from SmART Plan Monte Carlo simulations with simulated blocks for 4-field HA-WBRT with both demonstrating hippocampal sparing of 20% volume receiving less than 30% the prescription dose.
机译:尽管越来越多地使用了立体定向放射牢房,但全脑放射治疗(WBRT)仍然在患者的选定子集中继续具有治疗作用。在这种治疗期间选择性地避开海马(HA-WBRT)作为降低与WBRT相关的认知性发病率的策略,并产生最近发表的II期试验(RTOG 0933),现在是多次持续的临床试验。虽然概念性海马避免由临床前证据支持,显示海马在记忆中发挥着重要作用,但有最小的前诊所数据显示,选择性地避免海马将降低辐射引起的认知下降。在很大程度上,缺乏临床前证据可以归因于与提供大鼠大脑提供精确保形治疗的技术障碍。在这项工作中,我们开发了一种用于Wistar大鼠的新型保形HA-WBRT技术,利用225kVP微辐射器,精确的3D印刷辐射块设计成备用海马,同时提供全脑剂量。在啮齿动物的大鼠大鼠的微型CT大鼠的微型CT扫描中验证了该技术,以1mm各向同性体素分辨率,从Wistar大鼠的微型CT大鼠的微型扫描大鼠扫描产生。通过3D印刷辐射块辅助的共形海马备件,探索了具有平行相对的AP-PA和两个侧向对立领域的4场盒。测量的DVH合理地对齐,与智能计划蒙特卡罗模拟计算,具有用于4场HA-WBRT的模拟块,其两者都展示了20%体积的海马保留,接受处方剂量小于30%。

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