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Intensity-Modulated Fluence Patterns for Task-Specific Imaging in Cone-Beam CT

机译:锥束CT中用于特定任务成像的强度调制注量模式

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摘要

Cone-beam CT images of a patient with a pre-defined distribution of noise in the image and dose to the patient can be accomplished through the development of advanced compensation schemes. Such compensation schemes involve delivery of x-ray fluence patterns that vary in intensity both across a single projection image (u,v) and for different projection view angles (0) and provide the ability to perform intensity-modulated cone-beam CT. Implementation of an intensity-modulated cone-beam CT system for task-specific imaging has potential for tremendous reductions in patient dose and x-ray scatter reaching the detector. Pursuing this advanced imaging technique requires detailed characterization of the cone-beam CT platform. Determination of appropriately modulated fluence patterns relies on knowledge of numerous properties of the imaging system, including the constraints imposed by the modulator, the magnitude of x-ray scatter under different patient sizes and modulator positions, and properties of the detector. With an estimate of the patient anatomy and knowledge of the imaging system, an iterative process can be used to determine modulated fluence patterns corresponding to an image prescribed for the specific task and patient. Delivery of such modulated fluence patterns provide a CBCT image tailored to a specific patient and imaging task offering the optimum balance between image quality and patient dose. Specifically, arbitrary regions of interest requiring high image signal-to-noise ratio can be generated through knowledgeable spatio-angular intensity modulation, allowing image quality to degrade in other regions in order to minimize x-ray scatter and imaging dose.
机译:可以通过开发高级补偿方案来实现具有在图像中预先定义的噪声分布和患者剂量的患者的锥束CT图像。这样的补偿方案包括传递跨单个投影图像(u,v)和针对不同投影视角(0)强度都变化的X射线能量密度模式,并提供执行强度调制的锥束CT的能力。用于特定任务成像的强度调制锥束CT系统的实施具有极大降低患者剂量和到达探测器的X射线散射的潜力。追求这种先进的成像技术需要对锥形束CT平台进行详细的表征。确定适当调制的注量模式依赖于成像系统的众多属性的知识,包括调制器施加的约束,不同患者尺寸和调制器位置下的X射线散射量以及检测器的属性。利用对患者解剖结构的估计和成像系统的知识,可以使用迭代过程来确定与为特定任务和患者指定的图像相对应的调制注量模式。此类调制注量模式的交付可为特定患者量身定制CBCT图像,并提供成像任务,从而在图像质量和患者剂量之间实现最佳平衡。具体而言,可以通过知识广度的空间角度强度调制来生成需要高图像信噪比的任意感兴趣区域,从而使其他区域的图像质量下降,以最大程度地减少X射线散射和成像剂量。

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