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小动物成像平面和针孔光谱伽马相机成像综述。

A review of small animal imaging planar and pinhole spect Gamma camera imaging.

作者信息

Peremans Kathelijne, Cornelissen Bart, Van Den Bossche Bieke, Audenaert Kurt, Van de Wiele Christophe

机构信息

Department of Medical Imaging, Faculty of Veterinary Medicine, Ghent University, Salisburylaan 133, B-9820 Merelbeke, Belgium.

出版信息

Vet Radiol Ultrasound. 2005 Mar-Apr;46(2):162-70. doi: 10.1111/j.1740-8261.2005.00031.x.

Abstract

Scintigraphy (positron emission tomography (PET) or single photon emission computed tomography (SPECT) techniques) allows qualitative and quantitative measurement of physiologic processes as well as alterations secondary to various disease states. With the use of specific radioligands, molecular pathways and pharmaco-kinetic processes can be investigated. Radioligand delivery can be (semi)quantified in the region of interest in cross-sectional and longitudinal examinations, which can be performed under the same conditions or after physiologic or pharmacologic interventions. Most preclinical pharmacokinetic studies on physiological and experimentally altered physiological processes are performed in laboratory animals using high-resolution imaging systems. Single photon emission imaging has the disadvantage of decreased spatial and temporal resolution compared with PET. The advantage of SPECT is that equipment is generally more accessible and commonly used radionuclides have a longer physical half-life allowing for investigations over a longer time interval. This review will focus on single photon emission scintigraphy. An overview of contemporary techniques to measure biodistribution and kinetics of radiopharmaceuticals in small animal in vivo is presented. Theoretical as well as practical aspects of planar gamma camera and SPECT pinhole (PH) imaging are discussed. Current research is focusing on refining PH SPECT methodology, so specific regarding technical aspects and applications of PH SPECT will be reviewed.

摘要

闪烁扫描术(正电子发射断层扫描(PET)或单光子发射计算机断层扫描(SPECT)技术)可对生理过程以及各种疾病状态继发的改变进行定性和定量测量。通过使用特定的放射性配体,可以研究分子途径和药代动力学过程。在横断面和纵向检查中,可以在感兴趣区域对放射性配体递送进行(半)定量,这些检查可以在相同条件下或在生理或药理干预后进行。大多数关于生理和实验性改变的生理过程的临床前药代动力学研究是在实验室动物中使用高分辨率成像系统进行的。与PET相比,单光子发射成像具有空间和时间分辨率降低的缺点。SPECT的优点是设备通常更容易获得,并且常用的放射性核素具有更长的物理半衰期,从而允许在更长的时间间隔内进行研究。本综述将重点关注单光子发射闪烁扫描术。本文介绍了测量放射性药物在小动物体内生物分布和动力学的当代技术概述。讨论了平面γ相机和SPECT针孔(PH)成像的理论和实践方面。当前的研究集中在改进PH SPECT方法,因此将对PH SPECT的技术方面和应用进行具体综述。

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