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单光子发射断层扫描(SPET)中线性图的获取:实施与益处

Acquisition of linograms in SPET: implementation and benefits.

作者信息

Walrand Stephan, van Dulmen Aad, van Rossem Henk, Pauwels Stanislas

机构信息

Centre of Nuclear Medicine, Catholic University of Louvain, 54.30 Av Hippocrate, 1200 Brussels, Belgium.

出版信息

Eur J Nucl Med Mol Imaging. 2002 Sep;29(9):1188-97. doi: 10.1007/s00259-002-0862-x. Epub 2002 Jun 18.

Abstract

Compared with other tomographic modalities, single-photon emission tomography (SPET), the most widely used tomographic modality in nuclear medicine, suffers from poor quality image since the collimator stops 99.99% of the emitted gamma rays reaching the detector. This paper describes a new SPET acquisition modality using a very short focal length (12.5 cm) fan-beam collimator and a very short transverse field of view detector (25 cm). The detector moves along at least two linear orthogonal orbits in such a way that the focal line travels through the source target. This linear orbit acquisition (LOrA) generates linograms forming a complete set of tomographic data, i.e. sufficient to exactly reconstruct the activity map using a modified filtered back-projection algorithm. In contrast to the classical fan-beam tomography, truncation is not a problem, even when the source transverse size is much larger than the detector transverse size. When the collimator hole length/diameter ratio is adapted to obtain a spatial resolution similar to that of classical SPET, LOrA SPET offers an improvement in sensitivity by a factor of about 2.5 for a 20-cm source size. This improvement is achieved with a detector that is half as large, and thus half as expensive. As with classical fan-beam SPET, the sensitivity increases further if the target size decreases. When fitting the collimator to obtain a similar sensitivity to that of classical SPET, a significant improvement in spatial resolution is obtained.

摘要

与其他断层扫描方式相比,单光子发射断层扫描(SPET)是核医学中使用最广泛的断层扫描方式,但由于准直器会阻挡99.99%发射出的伽马射线到达探测器,其图像质量较差。本文描述了一种新的SPET采集方式,该方式使用极短焦距(12.5厘米)的扇形束准直器和极短视野横向探测器(25厘米)。探测器沿至少两条线性正交轨道移动,使焦线穿过源目标。这种线性轨道采集(LOrA)生成线性图,形成一整套断层扫描数据,即足以使用改进的滤波反投影算法精确重建活度图。与传统扇形束断层扫描不同,即使源横向尺寸远大于探测器横向尺寸,截断也不是问题。当调整准直器孔的长度/直径比以获得与传统SPET相似的空间分辨率时,对于20厘米的源尺寸,LOrA SPET的灵敏度提高约2.5倍。这种提高是通过尺寸减半且成本也减半的探测器实现的。与传统扇形束SPET一样,如果目标尺寸减小,灵敏度会进一步提高。当调整准直器以获得与传统SPET相似的灵敏度时,空间分辨率会有显著提高。

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