Feasibility study of helical tomotherapy for total body or total marrow irradiationa)

断层治疗 全身照射 核医学 医学 热释光剂量计 成像体模 骨髓 剂量学 放射治疗 剂量计 放射科 外科 化疗 病理 环磷酰胺
作者
Susanta Hui,Jeff Kapatoes,J. Asaadi,D. Henderson,G. Olivera,R. Mañon,Bruce J. Gerbi,Thomas Rockwell Mackie,James S. Welsh
出处
期刊:Medical Physics [Wiley]
卷期号:32 (10): 3214-3224 被引量:202
标识
DOI:10.1118/1.2044428
摘要

Total body radiation (TBI) has been used for many years as a preconditioning agent before bone marrow transplantation. Many side effects still plague its use. We investigated the planning and delivery of total body irradiation (TBI) and selective total marrow irradiation (TMI) and a reduced radiation dose to sensitive structures using image‐guided helical tomotherapy. To assess the feasibility of using helical tomotherapy, ( A ) we studied variations in pitch, field width, and modulation factor on total body and total marrow helical tomotherapy treatments. We varied these parameters to provide a uniform dose along with a treatment times similar to conventional TBI . ( B ) We also investigated limited (head, chest, and pelvis) megavoltage CT (MVCT) scanning for the dimensional pretreatment setup verification rather than total body MVCT scanning to shorten the overall treatment time per treatment fraction. ( C ) We placed thermoluminescent detectors (TLDs) inside a Rando phantom to measure the dose at seven anatomical sites, including the lungs. A simulated TBI treatment showed homogeneous dose coverage to the whole body. Doses to the sensitive organs were reduced by 35%–70% of the target dose. TLD measurements on Rando showed an accurate dose delivery to the target and critical organs. In the TMI study, the dose was delivered conformally to the bone marrow only. The TBI and TMI treatment delivery time was reduced (by 50%) by increasing the field width from in the inferior–superior direction. A limited MVCT reduced the target localization time 60% compared to whole body MVCT. MVCT image‐guided helical tomotherapy offers a novel method to deliver a precise, homogeneous radiation dose to the whole body target while reducing the dose significantly to all critical organs. A judicious selection of pitch, modulation factor, and field size is required to produce a homogeneous dose distribution along with an acceptable treatment time. In addition, conformal radiation to the bone marrow appears feasible in an external radiation treatment using image‐guided helical tomotherapy.
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