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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >RTGAN: ORGAN CONTOURS IN RADIATION THERAPY WITH GENERATIVE ADVERSARIAL NETWORK
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RTGAN: ORGAN CONTOURS IN RADIATION THERAPY WITH GENERATIVE ADVERSARIAL NETWORK

机译:RTIMP:具有生成对抗网络的放射治疗中的器官轮廓

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摘要

Generally, radiation oncology applies evaluation and prediction in medical imaging and diagnosis, specifically for contouring organs, which results in the production of the clinical target volume (CTV) that corresponds to disease risk and organ exclusion. Medical physicists contour organs and combine computed tomography (Cl') scans to digital imaging and communications in medicine (DiCOM) radiation therapy (RT) to assist physicians for diagnosing tumors and calculating the dosages in treatments including radiation and chemotherapy. Thus, to generate RT images with high accuracy, this paper proposes a new Generator Adversarial Network (GAN) for RT images called radiation therapy GAN (RTGAN). We combine multiple loss functions with synthetic similarity DICOM-RT images and compare the results with Pinnacle, a radiation oncology treatment planning system. Further, we evaluate the method to get a score of 0.984 in structured similarity (SSIM) and 31.26 in peak signal-to-noise ratio (PSNR) and find that it costs 0.058 s to finish contouring one CT image. The proposed method is applied and tested in the department of radiation oncology at the Chung Shan Medical University Hospital, and the results are similar to the ground truth images. Thus, it not. only effectively reduces the false-positive rate but also makes a breakthrough in medicine.
机译:通常,放射肿瘤学适用于医学成像和诊​​断中的评估和预测,特别是用于轮廓的器官,这导致临床目标体积(CTV)对应于疾病风险和器官排斥。医学物理学家轮廓器官并将计算机断层扫描(CL')扫描到医学(DICOM)放射治疗(RT)中的数字成像和通信,以帮助医生诊断肿瘤并计算治疗中的剂量,包括辐射和化疗。因此,为了产生高精度的RT图像,本文提出了一种新的发电机对抗网络(GaN),用于RT图像,称为放射治疗GaN(RTIMA)。我们将多个损耗功能与合成相似性DICOM-RT图像相结合,并将结果与​​Pinnacle进行比较,是辐射肿瘤治疗计划系统。此外,我们评估了在结构相似性(SSIM)和31.26中以峰值信噪比(PSNR)获得0.984的分数,并发现它需要0.058秒,完成一个CT图像。拟议的方法在钟山医科大学医院辐射肿瘤科,结果与地面真理图像类似。因此,它不是。只能有效降低假阳性率,而且在医学中取得了突破。

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