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Design and Development of MR-Compatible SPECT Systems for Simultaneous SPECT-MR Imaging of Small Animals

机译:MR兼容SPECT系统的设计与开发小型动物同时SPECT-MR成像

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We describe a continuing design and development of MR-compatible SPECT systems for simultaneous SPECT-MR imaging of small animals. A first generation prototype SPECT system was designed and constructed to fit inside a MRI system with a gradient bore inner diameter of 12 cm. It consists of 3 angularly offset rings of 8 detectors (1"xl", 16x16 pixels MR-compatible solid-state CZT). A matching 24-pinhole collimator sleeve, made of a tungsten-compound, provides projections from a common FOV of –25 mm. A birdcage RF coil for MRI data acquisition surrounds the collimator. The SPECT system was tested inside a clinical 3T MRI system. Minimal interference was observed on the simultaneously acquired SPECT and MR images. We developed a sparse-view image reconstruction method based on accurate modeling of the point response function (PRF) of each of the 24 pinholes to provide artifact-free SPECT images. The stationary SPECT system provides relatively low resolution of 3-5 mm but high geometric efficiency of 0.51.2% for fast dynamic acquisition, demonstrated in a SPECT renal kinetics study using Tc-99m DTPA. Based on these results, a second generation prototype MR-compatible SPECT system with an outer diameter of 20 cm that fits inside a mid-sized preclinical MRI system is being developed. It consists of 5 rings of 19 CZT detectors. The larger ring diameter allows the use of optimized multi-pinhole collimator designs, such as high system resolution up to –1 mm, high geometric efficiency, or lower system resolution without collimator rotation. The anticipated performance of the new system is supported by simulation data.
机译:我们描述了MR兼容SPECT系统的持续设计和开发,用于同时SPECT-MR成像的小动物。设计并构造了第一代原型SPECT系统,以适合在MRI系统内,梯度孔内径为12cm。它由3个探测器的3个角度偏移环组成(1“XL”,16x16像素MR兼容固态CZT)。由钨 - 化合物制成的匹配的24针孔准直器套管提供来自-25mm的共同FOV的突起。用于MRI数据采集的鸟笼RF线圈围绕准直器。在临床3T MRI系统内测试SPECT系统。在同时获取的SPECT和MR图像上观察到最小的干扰。我们开发了一种基于24针孔中的每一个的点响应函数(PRF)的精确建模的稀疏视图图像重建方法,以提供无伪图像的SPECT图像。静止的SPECT系统提供3-5 mm的相对较低的分辨率,但高几何效率为快速动态采集0.51.2%,在使用TC-99M DTPA的SPECT肾动力学研究中展示。基于这些结果,正在开发出具有20cm的外径20cm的第二代原型MR兼容的SPECT系统正在开发出在中尺寸的临床前系统内部。它由5个CZT探测器的5个环组成。较大的环直径允许使用优化的多针孔准直器设计,例如高达-1 mm,高几何效率,或更低的系统分辨率而没有准直器旋转的高系统分辨率。通过模拟数据支持预期的新系统性能。

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