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High-sensitivity Single-Photon Emission Computed Tomography (SPECT): Safer, faster, and more accurate SPECT

机译:高灵敏度单光子发射计算机断层扫描(SPECT):更安全,更快,更准确的SPECT

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摘要

A method and apparatus are described for high-sensitivity Single-Photon Emission Computed Tomography (SPECT). The apparatus includes a two-dimensional (2D) gamma detector array that, unlike a conventional SPECT machine, moves to different positions in a three-dimensional (3D) volume space near an emission source and records a data vector g which is a measure of gamma emission field. In particular, the 3D volume space in which emission data g is measured extends substantially along a radial direction r pointing away from the emission source, and unlike a conventional SPECT machine, each photon detector element in the 2D gamma detector array is provided with a very large collimator aperture. Data g is related to the 3D spatial density distribution f of the emission source, noise vector n, and a system matrix H of the SPECT apparatus through the linear system of equations g = Hf+n. This equation is solved for f by a method that reduces the effect of noise.
机译:描述了一种用于高灵敏度单光子发射计算机断层摄影(SPECT)的方法和设备。该设备包括一个二维(2D)伽马探测器阵列,与传统的SPECT机器不同,该阵列可移动到排放源附近的三维(3D)体积空间中的不同位置,并记录数据向量g,该数据向量g伽马发射场。特别地,在其中测量发射数据g的3D体积空间基本上沿着背向发射源的径向方向r延伸,并且与传统的SPECT机器不同,2D伽马探测器阵列中的每个光子探测器元件都设有一个准直器孔径大。数据g通过方程式g = Hf + n的线性系统与发射源的3D空间密度分布f,噪声矢量n和SPECT设备的系统矩阵H有关。通过减少噪声影响的方法对f求解此方程。

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