首页> 外文会议>IEEE International Symposium on Biomedical Imaging >FIXED GANTRY TOMOSYNTHESIS SYSTEM FOR RADIATION THERAPY IMAGE GUIDANCE BASED ON A MULTIPLE SOURCE X-RAY TUBE WITH CARBON NANOTUBE CATHODES
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FIXED GANTRY TOMOSYNTHESIS SYSTEM FOR RADIATION THERAPY IMAGE GUIDANCE BASED ON A MULTIPLE SOURCE X-RAY TUBE WITH CARBON NANOTUBE CATHODES

机译:基于多源X射线管的碳纳米管阴极的多源X射线管的固定龙门床造影系统引导

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We present the design and simulation of a multiple source x-ray tube based on carbon nanotube cold cathode technology. The primary intended application is tomosynthesis-based 3D image guidance during external beam radiation therapy. The tube, which is attached to the gantry of a medical linear accelerator (linac) immediately below the multileaf collimator, operates within the voltage range of 80-160 kVp and contains a total of 52 sources that are arranged in a rectilinear array. This configuration allows for the acquisition of tomographic projections from multiple angles without any need to rotate the linac gantry. The x-ray images are captured by a standard amorphous silicon flat panel portal imaging device. The field-of-view (FOV) of the system corresponds to that part of the volume that is sampled by rays from all sources. The present tube and detector configuration provides an 8 cm×8 cm FOV in the plane of the linac isocenter when the 40.96 cm×40.96 cm imaging detector is placed 40 cm from the isocenter. Since this tomosynthesis application utilizes the extremities of the detector to record image detail relating to structures near the isocenter, simultaneous treatment and imaging is possible for most clinical cases, where the treated target is a small region close to the linac isocenter. The tomosynthesis images are reconstructed using the simultaneous iterative reconstruction technique (SART), which is accelerated using a graphics processing unit (GPU). We present details of the system design as well as simulated performance of the imaging system based on reprojections of patient CT images.
机译:我们介绍了基于碳纳米管冷阴极技术的多源X射线管的设计和仿真。主要预期应用是外部光束放射治疗期间基于Tomosynesis的3D图像引导。附着在多叶电压器下方的医用线性加速器(LINAC)的机架上的管操作在80-160 kVp的电压范围内,并且总共包含在直线阵列中排列的52个源。该配置允许从多个角度获取断层投影,而无需旋转LINAC龙门架。 X射线图像由标准的非晶硅平板门户成像装置捕获。系统的视野(FOV)对应于来自所有来源的光线采样的卷的部分。当40.96cm×40.96cm成像检测器从等中心放置40厘米时,当前管和检测器配置在LinaC Isocenter的平面中提供8cm×8cm foV。由于该断层合成应用利用检测器的四肢来记录与Isocenter附近的结构相关的图像细节,同时治疗和成像对于大多数临床病例可以进行,其中处理的靶是靠近LinaC Isocenter的小区域。使用同时迭代重建技术(SART)重建Tomosynthesis图像,其使用图形处理单元(GPU)加速。我们介绍了系统设计的细节以及基于患者CT图像的重新注入的成像系统的模拟性能。

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