近距离放射治疗
前列腺
前列腺近距离放射治疗
放射治疗计划
医学
模态(人机交互)
成像体模
磁共振成像
前列腺
放射科
超声波
前列腺癌
医学物理学
核医学
计算机科学
放射治疗
人工智能
癌症
内科学
作者
Christophe Reynier,Jocelyne Troccaz,P. Fourneret,André Dusserre,Cécile Gay-Jeune,Jean‐Luc Descotes,M. Bolla,Jean-Yves Giraud
摘要
Prostate brachytherapy involves implanting radioactive seeds for instance) permanently in the gland for the treatment of localized prostate cancers, e.g., cT1c‐T2a N0 M0 with good prognostic factors. Treatment planning and seed implanting are most often based on the intensive use of transrectal ultrasound (TRUS) imaging. This is not easy because prostate visualization is difficult in this imaging modality particularly as regards the apex of the gland and from an intra‐ and interobserver variability standpoint. Radioactive seeds are implanted inside open interventional MR machines in some centers. Since MRI was shown to be sensitive and specific for prostate imaging whilst open MR is prohibitive for most centers and makes surgical procedures very complex, this work suggests bringing the MR virtually in the operating room with MRI/TRUS data fusion. This involves providing the physician with bi‐modality images (TRUS plus MRI) intended to improve treatment planning from the data registration stage. The paper describes the method developed and implemented in the PROCUR system. Results are reported for a phantom and first series of patients. Phantom experiments helped characterize the accuracy of the process. Patient experiments have shown that using MRI data linked with TRUS data improves TRUS image segmentation especially regarding the apex and base of the prostate. This may significantly modify prostate volume definition and have an impact on treatment planning.
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