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首页> 外文期刊>Medical Physics >Inverse-geometry volumetric CT system with multiple detector arrays for wide field-of-view imaging.
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Inverse-geometry volumetric CT system with multiple detector arrays for wide field-of-view imaging.

机译:具有多个探测器阵列的反几何体CT系统,用于宽视场成像。

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Current volumetric computed tomography (CT) methods require seconds to acquire a thick volume (>8 cm) with high resolution. Inverse-geometry CT (IGCT) is a new system geometry under investigation that is anticipated to be able to image a thick volume in a single gantry rotation with isotropic resolution and no cone-beam artifacts. IGCT employs a large array of source spots opposite a smaller detector array. The in-plane field of view (FOV) is primarily determined by the size of the source array, in much the same way that the FOV is determined by the size of the detector array in a conventional CT system. Thus, the size of the source array can be a limitation on the achievable FOV. We propose adding additional detector arrays, spaced apart laterally, to increase the in-plane FOV while still using a modestly sized source array. We determine optimal detector placement to maximize the FOV while obtaining relatively uniform sampling. We also demonstrate low wasted radiation of the proposed system through design and simulation of a pre-patient collimator. Reconstructions from simulated projection data show no artifacts when combining the data from the detector arrays. Finally, to demonstrate feasibility of the concept, an anthropomorphic thorax phantom containing a porcine heart was scanned on a prototype table-top system. The reconstructed axial images demonstrate a 45 cm in-plane FOV using a 23 cm source array.
机译:当前的体积计算机断层扫描(CT)方法需要几秒钟的时间才能获得高分辨率的厚体积(> 8 cm)。逆几何CT(IGCT)是一种正在研究中的新系统几何,有望以单一的龙门旋转以各向同性的分辨率对厚体积进行成像,并且没有锥束伪影。 IGCT采用与较小检测器阵列相对的大量源点阵列。平面内视场(FOV)主要由源阵列的大小确定,与FOV由常规CT系统中的探测器阵列的大小确定的方式几乎相同。因此,源阵列的大小可能会限制可实现的FOV。我们建议增加横向间隔的其他检测器阵列,以增加平面内视场,同时仍使用尺寸适中的源阵列。我们确定最佳的探测器位置,以在获得相对均匀的采样的同时最大化FOV。我们还通过对患者准直仪进行设计和仿真,证明了所提议系统的低浪费辐射。当组合来自探测器阵列的数据时,根据模拟投影数据进行的重建不会显示任何伪影。最后,为了证明该概念的可行性,在原型台式系统上扫描了包含猪心脏的拟人化胸腔体模。重建的轴向图像显示使用23 cm源阵列的45 cm平面内FOV。

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