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360-degree 3D transvaginal ultrasound system for high-dose-rate interstitial gynaecological brachytherapy needle guidance

机译:360度3D经阴道超声波超声波,用于高剂量率间质妇科近距离放射治疗针指导

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Treatment for gynaecological cancers often includes brachytherapy; in particular, in high-dose-rate (HDR) interstitial brachytherapy, hollow needles are inserted into the tumour and surrounding area through a template in order to deliver the radiation dose. Currently, there is no standard modality for visualizing needles intra-operatively, despite the need for precise needle placement in order to deliver the optimal dose and avoid nearby organs, including the bladder and rectum. While three-dimensional (3D) transrectal ultrasound (TRUS) imaging has been proposed for 3D intra-operative needle guidance, anterior needles tend to be obscured by shadowing created by the template's vaginal cylinder. We have developed a 360-degree 3D transvaginal ultrasound (TVUS) system that uses a conventional two-dimensional side-fire TRUS probe rotated inside a hollow vaginal cylinder made from a sonolucent plastic (TPX). The system was validated using grid and sphere phantoms in order to test the geometric accuracy of the distance and volumetric measurements in the reconstructed image. To test the potential for visualizing needles, an agar phantom mimicking the geometry of the female pelvis was used. Needles were inserted into the phantom and then imaged using the 3D TVUS system. The needle trajectories and tip positions in the 3D TVUS scan were compared to their expected values and the needle tracks visualized in magnetic resonance images. Based on this initial study, 360-degree 3D TVUS imaging through a sonolucent vaginal cylinder is a feasible technique for intra-operatively visualizing needles during HDR interstitial gynaecological brachytherapy.
机译:治疗妇科癌症通常包括近距离放射治疗;特别是在高剂量率(HDR)近距离治疗,空心针插入通过模板的肿瘤和周围区域,以提供所述辐射剂量。目前,对,针可视化手术中,尽管为了提供最佳的剂量,避免邻近器官,包括膀胱和直肠需要精确针的位置没有标准模式。而三维(3D)经直肠超声检查(TRUS)成像已经提出了3D术针引导,前针往往由模板的阴道气缸遮蔽创建被遮蔽。我们已经开发出了360度的3D阴道超声(TVUS)系统,采用传统的二维侧火TRUS探头从一个透声塑料(TPX)制成的中空阴道气缸内旋转。使用网格和球幻影为了测试距离和体积测量的几何精度的重构图像在系统中进行了验证。为了测试潜在用于可视化的针,使用的琼脂幻影模仿女性骨盆的几何形状。针被插入到所述体模并且然后使用3D TVUS系统成像。在3D扫描TVUS针轨迹和尖端位置进行了比较,他们的预期值,并在磁共振图像可视化的针迹。基于此初始研究中,360度的3D成像TVUS通过透声阴道气缸是HDR间质性妇科近距离放射治疗期间在手术中可视化的针一可行的技术。

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