Lonski Peta, Kron Tomas
Department of Physical Sciences, Peter MacCallum Cancer Centre, Melbourne, VIC, Australia.
Sir Peter MacCallum Institute of Oncology, University of Melbourne, Melbourne, VIC, Australia.
Front Oncol. 2022 Oct 18;12:918178. doi: 10.3389/fonc.2022.918178. eCollection 2022.
The complexity of modern radiotherapy treatment pathways necessitate input from different professions to ensure treatment is delivered safely and as planned. dosimetry is one method of treatment verification providing the opportunity for both in-field verification or out-of-field measurements. It was the aim of this work to review the impact of an dosimetry programme with t.he view to justify resources and assist in developing a plan for equipment acquisition. Results of 310 (approximately 2 per 1000 treatment fractions) measurements were reviewed over a two-year time span. The dosimetry programme using thermoluminescence (TLD) chips was able to detect three significant treatment errors, amongst some 13 000 patients treated. These errors would likely to have been undetected through other quality assurance measures. Increasing demands in workload were found to be associated with commissioning of new equipment and techniques. A skilled operator with knowledge of TLD physics, treatment planning system (TPS) dose calculation algorithms and radiation transport proved to be essential for appropriate interpretation of TLD results particularly in complex radiation delivery scenarios. TLD continues to play a large role in patient safety and quality assurance at our institution.
现代放射治疗流程的复杂性需要不同专业人员的参与,以确保治疗能够安全且按计划进行。剂量测定是一种治疗验证方法,可用于场内验证或场外测量。这项工作的目的是评估剂量测定计划的影响,以便合理分配资源并协助制定设备购置计划。在两年的时间跨度内,对310次测量结果(每1000个治疗分次中约2次)进行了审查。使用热释光(TLD)芯片的剂量测定计划在约13000名接受治疗的患者中检测到了三个重大治疗错误。这些错误很可能通过其他质量保证措施无法检测到。发现工作量的增加与新设备和技术的启用有关。事实证明,一名熟悉TLD物理、治疗计划系统(TPS)剂量计算算法和辐射传输的熟练操作人员对于正确解读TLD结果至关重要,尤其是在复杂的放射治疗场景中。TLD在我们机构的患者安全和质量保证方面继续发挥着重要作用。