The management of imaging dose during image‐guided radiotherapy: Report of the AAPM Task Group 75
Управление дозой визуализации при лучевой терапии под контролем изображений: отчет рабочей группы 75 AAPM
2007-09-26
SCID: 54.1/6n7s326p
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ALARAimage-guidance techniquesimage-guided radiotherapyimaging dose managementoptimization of imaging dose vs therapeutic dose
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Abstract (AI)
Radiographic image guidance has emerged as the new paradigm for patient positioning, target localization, and external beam alignment in radiotherapy. Although widely varied in modality and method, all radiographic guidance techniques have one thing in common--they can give a significant radiation dose to the patient. As with all medical uses of ionizing radiation, the general view is that this exposure should be carefully managed. The philosophy for dose management adopted by the diagnostic imaging community is summarized by the acronym ALARA, i.e., as low as reasonably achievable. But unlike the general situation with diagnostic imaging and image-guided surgery, image-guided radiotherapy (IGRT) adds the imaging dose to an already high level of therapeutic radiation. There is furthermore an interplay between increased imaging and improved therapeutic dose conformity that suggests the possibility of optimizing rather than simply minimizing the imaging dose. For this reason, the management of imaging dose during radiotherapy is a different problem than its management during routine diagnostic or image-guided surgical procedures. The imaging dose received as part of a radiotherapy treatment has long been regarded as negligible and thus has been quantified in a fairly loose manner. On the other hand, radiation oncologists examine the therapy dose distribution in minute detail. The introduction of more intensive imaging procedures for IGRT now obligates the clinician to evaluate therapeutic and imaging doses in a more balanced manner. This task group is charged with addressing the issue of radiation dose delivered via image guidance techniques during radiotherapy. The group has developed this charge into three objectives: (1) Compile an overview of image-guidance techniques and their associated radiation dose levels, to provide the clinician using a particular set of image guidance techniques with enough data to estimate the total diagnostic dose for a specific treatment scenario, (2) identify ways to reduce the total imaging dose without sacrificing essential imaging information, and (3) recommend optimization strategies to trade off imaging dose with improvements in therapeutic dose delivery. The end goal is to enable the design of image guidance regimens that are as effective and efficient as possible.
Key Findings
1
Historically imaging dose during radiotherapy was treated as negligible and quantified loosely, necessitating more rigorous, balanced evaluation alongside therapeutic dose distributions.
2
Image-guided radiotherapy (IGRT) modalities can deliver significant additional radiation dose to patients, distinct from diagnostic imaging contexts.
3
Managing imaging dose in IGRT requires different considerations than in diagnostic imaging because imaging dose is added to high therapeutic radiation and can interact with therapeutic dose conformity.
4
The Task Group's objectives: (1) catalog image-guidance techniques and dose levels to enable total dose estimation, (2) identify methods to reduce imaging dose without losing essential information, and (3) recommend optimization strategies to trade imaging dose against therapeutic improvements.
5
There is potential to optimize imaging dose rather than simply minimize it, trading increased imaging for improved therapeutic dose delivery and conformity.
Research Object
Imaging dose delivered by image-guidance techniques during radiotherapy (image-guided radiotherapy, IGRT)
Research Subject
Management and optimization of imaging dose: overview of image-guidance modalities and doses, strategies to reduce imaging dose without losing essential information, and trade-offs between imaging dose and improvements in therapeutic dose delivery
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2007-09-26
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