首页> 外文会议>Physics of Medical Imaging pt.1; Progress in Biomedical Optics and Imaging; vol.8 no.29; Proceedings of SPIE-The International Society for Optical Engineering; vol.6510 pt.1 >Multi-Mode C-Arm Fluoroscopy, Tomosynthesis, and Cone-Beam CT for Image-Guided Interventions: From Proof of Principle to Patient Protocols
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Multi-Mode C-Arm Fluoroscopy, Tomosynthesis, and Cone-Beam CT for Image-Guided Interventions: From Proof of Principle to Patient Protocols

机译:多模C臂透视,断层合成和锥束CT用于图像引导的干预:从原理证明到患者方案

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High-performance intraoperative imaging is essential to an ever-expanding scope of therapeutic procedures ranging from tumor surgery to interventional radiology. The need for precise visualization of bony and soft-tissue structures with minimal obstruction to the therapy setup presents challenges and opportunities in the development of novel imaging technologies specifically for image-guided procedures. Over the past ~5 years, a mobile C-arm has been modified in collaboration with Siemens Medical Solutions for 3D imaging. Based upon a Siemens PowerMobil, the device includes: a flat-panel detector (Varian PaxScan 4030GB); a motorized orbit; a system for geometric calibration; integration with real-time tracking and navigation (NDI Polaris); and a computer control system for multi-mode fluoroscopy, tomosynthesis, and cone-beam CT. Investigation of 3D imaging performance (noise-equivalent quanta), image quality (human observer studies), and image artifacts (scatter, truncation, and cone-beam artifacts) has driven the development of imaging techniques appropriate to a host of image-guided interventions. Multi-mode functionality presents a valuable spectrum of acquisition techniques: ⅰ.) fluoroscopy for real-time 2D guidance; ⅱ.) limited-angle tomosynthesis for fast 3D imaging (e.g., ~10 sec acquisition of coronal slices containing the surgical target); and ⅲ.) fully 3D cone-beam CT (e.g., ~30-60 sec acquisition providing bony and soft-tissue visualization across the field of view). Phantom and cadaver studies clearly indicate the potential for improved surgical performance - up to a factor of 2 increase in challenging surgical target excisions. The C-arm system is currently being deployed in patient protocols ranging from brachytherapy to chest, breast, spine, and head and neck surgery.
机译:高效的术中成像对于从肿瘤外科手术到介入放射学的不断扩大的治疗程序必不可少。对骨和软组织结构的精确可视化以及对治疗设置的最小阻碍的需求为开发专门针对图像引导程序的新型成像技术提出了挑战和机遇。在过去约5年中,与西门子医疗解决方案公司合作对移动C型臂进行了改进,以进行3D成像。该设备基于Siemens PowerMobil,包括:平板检测器(Varian PaxScan 4030GB);机动轨道几何校准系统;与实时跟踪和导航集成(NDI Polaris);以及用于多模式荧光检查,断层合成和锥束CT的计算机控制系统。对3D成像性能(等效噪声量化),图像质量(人类观察者研究)和图像伪影(散布,截断和锥束伪影)的研究推动了适用于多种图像指导干预措施的成像技术的发展。 。多模式功能提供了一系列有价值的采集技术:)。荧光透视技术,用于实时2D制导; limited。)有限角度断层合成以进行快速3D成像(例如,获取包含手术目标的冠状切片的〜10秒); ⅲ。)全3D锥形束CT(例如,约30-60秒的采​​集时间,可在整个视场内显示骨和软组织的图像)。幻影和尸体研究清楚地表明了改善手术性能的潜力-极富挑战性的手术目标切除术增加了2倍。目前,C臂系统已部署在从近距离放射治疗到胸部,胸部,脊柱以及头颈部手术的患者协议中。

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