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无束缚小动物单光子发射计算机断层扫描中的运动跟踪技术。

Motion-tracking technique in unrestrained small-animal single-photon emission computed tomography.

机构信息

Detector and Imaging Group, Physics Division, Thomas Jefferson National Accelerator Facility, 12000 Jefferson Ave., Newport News, VA 23606, USA.

出版信息

Rev Neurosci. 2011;22(6):657-63. doi: 10.1515/RNS.2011.049. Epub 2011 Nov 18.

Abstract

Medical researchers have used structural and functional imaging techniques to study various neurological phenomena. Humans are typically conscious for both structural and functional neuroimaging studies. The use of functional neuro-imaging techniques in mouse-based animal models is typically accomplished with restrained or anesthetized mice. A system was developed to perform functional imaging with single-photon emission computed tomography of awake mice to avoid the confounding influences of anesthesia or physical restraint. This review article provides an overview of the technique and how it is presently being used. The system is designed for brain imaging and uses infrared reflectors to track the head position as a function of time. The detected photons are acquired in list mode and are time-stamped. The position of the rotating gamma camera is also recorded as a function of time. These three sets of data are integrated together in an iterative image reconstruction program that performs motion compensation. The successful performance of the system is demonstrated in moving phantom and awake animal studies. The system and methodology has the potential of being a powerful tool in behavioral neuroimaging studies involving awake, unrestrained mice.

摘要

医学研究人员已经使用结构和功能成像技术来研究各种神经现象。人类通常在进行结构和功能神经影像学研究时是有意识的。在基于小鼠的动物模型中使用功能神经成像技术通常需要对束缚或麻醉的小鼠进行操作。为了避免麻醉或物理束缚的干扰,开发了一种系统来对清醒小鼠进行单光子发射计算机断层扫描的功能成像。本文综述了该技术及其目前的应用。该系统是为脑成像设计的,使用红外反射器来跟踪头部位置随时间的变化。检测到的光子以列表模式获取,并标记时间。旋转伽马相机的位置也随时间记录。这三组数据在一个迭代图像重建程序中集成在一起,该程序执行运动补偿。在移动的幻影和清醒的动物研究中,该系统的性能得到了验证。该系统和方法有可能成为涉及清醒、不受约束的小鼠的行为神经影像学研究的有力工具。

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