Development of a PTV margin for preclinical irradiation of orthotopic pancreatic tumors derived from a well-known recipe for humans.

IF 2.4 4区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Zeitschrift fur Medizinische Physik Pub Date : 2023-05-22 DOI:10.1016/j.zemedi.2023.03.005
Severin Kampfer, Sophie Dobiasch, Stephanie E Combs, Jan J Wilkens
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Abstract

In human radiotherapy a safety margin (PTV margin) is essential for successful irradiation and is usually part of clinical treatment planning. In preclinical radiotherapy research with small animals, most uncertainties and inaccuracies are present as well, but according to the literature a margin is used only scarcely. In addition, there is only little experience about the appropriate size of the margin, which should carefully be investigated and considered, since sparing of organs at risk or normal tissue is affected. Here we estimate the needed margin for preclinical irradiation by adapting a well-known human margin recipe from van Herck et al. to the dimensions and requirements of the specimen on a small animal radiation research platform (SARRP). We adjusted the factors of the described formula to the specific challenges in an orthotopic pancreatic tumor mouse model to establish an appropriate margin concept. The SARRP was used with its image-guidance irradiation possibility for arc irradiation with a field size of 10 × 10 mm2 for 5 fractions. Our goal was to irradiate the clinical target volume (CTV) of at least 90% of our mice with at least 95% of the prescribed dose. By carefully analyzing all relevant factors we gain a CTV to planning target volume (PTV) margin of 1.5 mm for our preclinical setup. The stated safety margin is strongly dependent on the exact setting of the experiment and has to be adjusted for other experimental settings. The few stated values in literature correspond well to our result. Even if using margins in the preclinical setting might be an additional challenge, we think it is crucial to use them to produce reliable results and improve the efficacy of radiotherapy.

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开发一种PTV切缘,用于临床前放射治疗原位胰腺肿瘤,源自一种众所周知的人类处方。
在人体放射治疗中,安全裕度(PTV裕度)对于放射治疗的成功至关重要,通常是临床治疗计划的一部分。在小动物的临床前放疗研究中,大多数不确定性和不准确性也存在,但根据文献,边际仅很少使用。此外,关于切缘的适当大小只有很少的经验,应该仔细调查和考虑,因为保留有危险的器官或正常组织受到影响。在这里,我们通过将van Herck等人的著名人类边缘配方改编为小动物辐射研究平台(SARRP)上标本的尺寸和要求来估计临床前辐射所需的边缘。我们根据原位胰腺肿瘤小鼠模型的具体挑战调整了所述公式的因素,以建立适当的切缘概念。SARRP具有图像引导照射的可能性,对5个分数进行视场尺寸为10 × 10 mm2的弧照射。我们的目标是用至少95%的规定剂量照射至少90%的小鼠的临床靶体积(CTV)。通过仔细分析所有相关因素,我们获得了临床前设置的CTV到计划目标体积(PTV)的1.5 mm的裕度。所述的安全裕度在很大程度上取决于实验的确切设置,并且必须根据其他实验设置进行调整。文献中所陈述的几个值与我们的结果很吻合。即使在临床前使用切缘可能是一个额外的挑战,我们认为使用它们来产生可靠的结果和提高放射治疗的疗效是至关重要的。
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来源期刊
CiteScore
3.70
自引率
10.00%
发文量
69
审稿时长
65 days
期刊介绍: Zeitschrift fur Medizinische Physik (Journal of Medical Physics) is an official organ of the German and Austrian Society of Medical Physic and the Swiss Society of Radiobiology and Medical Physics.The Journal is a platform for basic research and practical applications of physical procedures in medical diagnostics and therapy. The articles are reviewed following international standards of peer reviewing. Focuses of the articles are: -Biophysical methods in radiation therapy and nuclear medicine -Dosimetry and radiation protection -Radiological diagnostics and quality assurance -Modern imaging techniques, such as computed tomography, magnetic resonance imaging, positron emission tomography -Ultrasonography diagnostics, application of laser and UV rays -Electronic processing of biosignals -Artificial intelligence and machine learning in medical physics In the Journal, the latest scientific insights find their expression in the form of original articles, reviews, technical communications, and information for the clinical practice.
期刊最新文献
Editorial Board Contents Development and clinical implementation of a digital system for risk assessments for radiation therapy End-to-end testing for stereotactic radiotherapy including the development of a Multi-Modality phantom Note on uncertainty in Monte Carlo dose calculations and its relation to microdosimetry
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