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Clinical investigations of a 4D ML reconstruction strategy for PET-based treatment verification in ion beam therapy

机译:离子束治疗宠物基础治疗验证4D毫升重建策略的临床研究

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In ion beam therapy, Positron Emission Tomography (PET) imaging can be applied to provide a consistency check of the delivered treatment with respect to the treatment plan. Treatment verification relies on the comparison between a PET distribution measured during or after treatment delivery (“measured PET”) and a PET simulation calculated on the basis of the treatment plan (“expected PET”). The method is challenged by the poor image quality of the measured PET, which may result in a low sensitivity to detectable mismatches between planned and applied treatment. In this work we propose the application of a motion-aware 4D Maximum Likelihood (ML) reconstruction strategy for PET-based treatment verification in ion beam therapy. This approach is specifically tested on simulated clinical-like scenarios, as well as on a real clinical dataset. The measured PET and the expected PET are interpreted as two different motion states of a 4D PET dataset. The idea is to estimate the deformation field mapping the expected PET onto the measured PET as a measure of mismatches. An enhanced measured PET is therefore obtained by warping the expected PET according to the estimated motion field. Clinical-like scenarios were reproduced by means of Monte Carlo simulations corresponding to a hypo-fractionated carbon ion treatment of liver tumour. The measured PET was attributed to different simulations introducing positioning mismatches by means of rigid translations, to be compared to the reference expected PET simulation without mismatch. Real clinical dataset include PET data acquired shortly after treatment at a dedicated PET-CT scanner installed at HIT (Heidelberg Ion beam Therapy Center, Germany), in comparison to the corresponding expected PET coming from Monte Carlo simulations. The accuracy of mismatch estimation and the robustness to noise are shown.
机译:在离子束治疗中,可以应用正电子发射断层扫描(PET)成像,以提供相对于治疗计划的递送处理的一致性检查。治疗验证依赖于在治疗递送期间或之后测量的PET分布(“测量PET”)和基于治疗计划(“预期PET”)计算的PET模拟之间的比较。该方法受测量PET的差的图像质量差的挑战,这可能导致对计划和应用处理之间的可检测不匹配的敏感性低。在这项工作中,我们提出了在离子束治疗中基于宠物的治疗验证的运动感知4D最大可能性(ML)重建策略的应用。这种方法在模拟的临床状场景中具体测试,以及真正的临床数据集。测量的PET和预期的PET被解释为4D PET数据集的两个不同运动状态。该想法是估计将预期宠物映射到测量的PET上的变形场,作为不匹配的量度。因此,通过根据估计的运动场翘曲预期的PET获得增强的测量PET。通过对应于肝脏肿瘤的低分级碳离子处理的蒙特卡罗模拟来常用临床状情景。测量的PET归因于通过刚性翻译引入定位不匹配的不同模拟,与参考预期PET模拟进行比较而没有错配。真正的临床数据集包括在Purd(海德堡离子束治疗中心,德国)的专用PET-CT扫描仪处理后不久获得的PET数据,与来自Monte Carlo模拟的相应预期的宠物相比。显示了错配估计的准确性和对噪声的稳健性。

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