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High-Performance Intraoperative Cone-Beam CT on a Mobile C-Arm:An Integrated System for Guidance of Head and Neck Surgery

机译:移动C形臂高性能术中锥形梁CT:用于头部和颈部手术的引导的集成系统

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A system for intraoperative cone-beam CT (CBCT) surgical guidance is under development and translation to trials in head and neck surgery. The system provides 3D image updates on demand with sub-millimeter spatial resolution and soft-tissue visibility at low radiation dose, thus overcoming conventional limitations associated with preoperative imaging alone. A prototype mobile C-arm provides the imaging platform, which has been integrated with several novel subsystems for streamlined implementation in the OR, including: real-time tracking of surgical instruments and endoscopy (with automatic registration of image and world reference frames); fast 3D deformable image registration (a newly developed multi-scale Demons algorithm); 3D planning and definition of target and normal structures; and registration / visualization of intraoperative CBCT with the surgical plan, preoperative images, and endoscopic video. Quantitative evaluation of surgical performance demonstrates a significant advantage in achieving complete tumor excision in challenging sinus and skull base ablation tasks. The ability to visualize the surgical plan in the context of intraoperative image data delineating residual tumor and neighboring critical structures presents a significant advantage to surgical performance and evaluation of the surgical product. The system has been translated to a prospective trial involving 12 patients undergoing head and neck surgery – the first implementation of the research prototype in the clinical setting. The trial demonstrates the value of high-performance intraoperative 3D imaging and provides a valuable basis for human factors analysis and workflow studies that will greatly augment streamlined implementation of such systems in complex OR environments.
机译:术中锥形梁CT(CBCT)手术指导的系统正在开发和翻译,与头部和颈部手术中的试验。该系统提供3D图像更新,随着亚毫米空间分辨率和低辐射剂量的软组织可视性,因此克服了与术前成像相关的常规限制。原型移动C-ARM提供了成像平台,该平台已与几个新颖的子系统集成,用于在包括:外科仪器和内窥镜检查的实时跟踪(包括图像和世界参考框架的自动注册);快速3D可变形图像配准(一种新开发的多尺度恶魔算法);目标和正常结构的3D规划和定义;与手术计划,术前图像和内窥镜视频的术中CBCT的登记/可视化。手术性能的定量评估证明了在挑战窦和颅底烧蚀任务中实现完全肿瘤切除的显着优势。在朝内图像数据描绘残留肿瘤和相邻关键结构的背景下可视化外科手术计划的能力对手术性能和对手术产物的评估具有显着的优势。该系统已被转化为涉及12名接受头部和颈部手术的患者的前瞻性试验 - 在临床环境中首次实施研究原型。该试验表明了高性能术中3D成像的价值,为人类因素分析和工作流程研究提供了有价值的基础,这将大大增加在复杂或环境中的这种系统的实施。

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