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Performance Evaluation of a Differential Phase-contrast Cone-beam (DPC-CBCT) System for Soft Tissue Imaging

机译:软组织成像差分相衬锥形束(DPC-CBCT)系统的性能评估

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Differential phase-contrast (DPC) technique is promising as the next breakthrough in the field of X-ray CT imaging. Utilizing the long ignored X-ray phase information, Differential phase-contrast (DPC) technique has the potential of providing us with projection images with higher contrast in a CT scan without increasing the X-ray dose. While traditional absorption-based X-ray imaging is not very efficient at differentiating soft tissues, differential phase-contrast (DPC) is promising as a new method to boast the quality of the CT reconstruction images in term of contrast noise ratio (CNR) in soft tissue imaging. In order to validate and investigate the use of DPC technique in cone-beam CT imaging scheme, a new bench-top micro-focus DPC-based cone-beam computed tomography DPC-CBCT system has been designed and constructed in our lab for soft tissue imaging. The DPC-CBCT system consists of a micro-focus X-ray tube (focal spot 8 urn), a high-resolution detector, a rotating phantom holder and two gratings, i.e. a phase grating and an analysis. The detector system has a phosphor screen, an optical fiber coupling unit and a CMOS chip with an effective pixel pitch of 22.5 microns. The optical elements are aligned to minimize unexpected moire patterns, and system parameters, including tube voltage (or equivalently X-ray spectrum), distances between gratings, source-to-object distance and object-to-detector distance are chosen as practicable to be applied in a rotating system. The system is tested with two simple phantoms for performance evaluation. 3-D volumetric phase-coefficients are reconstructed. The performance of the system is compared with conventional absorption-based CT in term of contrast noise ratio (CNR) under the condition of equal X-ray dose level.
机译:差分相衬(DPC)技术有望成为X射线CT成像领域的下一个突破。利用长期以来被忽略的X射线相位信息,差分相位对比(DPC)技术有可能在不增加X射线剂量的情况下为我们提供CT扫描中具有更高对比度的投影图像。虽然传统的基于吸收的X射线成像在区分软组织方面不是很有效,但微分相衬(DPC)有望作为一种新的方法来夸耀CT重建图像在对比度方面的对比度(CNR)的质量。软组织成像。为了验证和研究DPC技术在锥束CT成像方案中的应用,在我们的实验室中针对软组织设计并构建了一种新的基于台式微焦点DPC的锥束计算机断层摄影DPC-CBCT系统成像。 DPC-CBCT系统由一个微焦点X射线管(焦点8),一个高分辨率检测器,一个旋转的幻像支架和两个光栅(即相位光栅和分析仪)组成。该探测器系统具有一个荧光屏,一个光纤耦合单元和一个有效像素间距为22.5微米的CMOS芯片。对准光学元件以最大程度地减少意外的莫尔条纹,并在可行的情况下选择系统参数,包括管电压(或等效的X射线光谱),光栅之间的距离,源到对象的距离以及对象到检测器的距离。应用于旋转系统。该系统使用两个简单的幻像进行了测试,以进行性能评估。重建3-D体积相位系数。在相等的X射线剂量水平下,系统的性能在对比度噪声比(CNR)方面与常规的基于吸收的CT进行了比较。

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