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迈向无需透射测量的单光子发射计算机断层显像(SPECT)中的精确衰减校正。

Toward accurate attenuation correction in SPECT without transmission measurements.

作者信息

Welch A, Clack R, Natterer F, Gullberg G T

机构信息

Department of Radiology, University of Utah, Salt Lake City 84112, USA.

出版信息

IEEE Trans Med Imaging. 1997 Oct;16(5):532-41. doi: 10.1109/42.640743.

Abstract

The current trend in attenuation correction for single photon emission computed tomography (SPECT) is to measure and reconstruct the attenuation coefficient map using a transmission scan, performed either sequentially or simultaneously with the emission scan. This approach requires dedicated hardware and increases the cost (and in some cases the scanning time) required to produce a clinical SPECT image. Furthermore, if short focal-length fan-beam collimators are used for transmission imaging, the projection data may be truncated, leading to errors in the attenuation coefficient map. Our goal is to obtain information about the attenuation distribution from only the measured emission data by exploiting the fact that only certain attenuation distributions are consistent with a given emission dataset. Ultimately this consistency information will either be used directly to compensate for attenuation or combined with the incomplete information from fan-beam transmission measurements to produce a more accurate attenuation coefficient map. In this manuscript the consistency conditions (which relate the measured SPECT data to the sinogram of the attenuation distribution) are used to find the uniform elliptical attenuation object which is most consistent with the measured emission data. This object is then used for attenuation correction during the reconstruction of the emission data. The method is tested using both simulated and experimentally acquired data from uniformly and nonuniformly attenuating objects. The results show that, for uniform elliptical attenuators, the consistency conditions of the SPECT data can be used to produce an accurate estimate of the attenuation map without performing any transmission measurements. The results also show that, in certain circumstances, the consistency conditions can prove useful for attenuation compensation with nonuniform attenuators.

摘要

单光子发射计算机断层扫描(SPECT)衰减校正的当前趋势是使用透射扫描来测量和重建衰减系数图,透射扫描可与发射扫描顺序或同时进行。这种方法需要专用硬件,并增加了生成临床SPECT图像所需的成本(在某些情况下还会增加扫描时间)。此外,如果将短焦距扇形束准直器用于透射成像,投影数据可能会被截断,从而导致衰减系数图出现误差。我们的目标是仅通过利用仅某些衰减分布与给定发射数据集一致这一事实,从测量的发射数据中获取有关衰减分布的信息。最终,此一致性信息将直接用于补偿衰减,或与来自扇形束透射测量的不完整信息相结合,以生成更准确的衰减系数图。在本手稿中,一致性条件(将测量的SPECT数据与衰减分布的正弦图相关联)用于找到与测量的发射数据最一致的均匀椭圆形衰减物体。然后,在发射数据重建期间,将该物体用于衰减校正。使用来自均匀和非均匀衰减物体的模拟数据和实验获取的数据对该方法进行了测试。结果表明,对于均匀椭圆形衰减器,SPECT数据的一致性条件可用于在不进行任何透射测量的情况下准确估计衰减图。结果还表明,在某些情况下,一致性条件对于非均匀衰减器的衰减补偿可能是有用的。

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