Price Ronald R, Allison Jerry, Massoth Richard J, Clarke Geoffrey D, Drost Dick J
Vanderbilt University Medical Center, Department of Radiology and Radiological Sciences, Nashville, Tennessee 37232-2675, USA.
Med Phys. 2002 Aug;29(8):1892-912. doi: 10.1118/1.1494990.
Functional MR imaging (fMRI) based upon the Blood Oxygen Level Dependent (BOLD) effect is currently an important new tool for understanding basic brain function and specifically allowing the correlation of physiological activity with anatomical location without the use of ionizing radiation. The clinical role of fMRI is still being defined and is the subject of much research activity. In this report we present the underlying physical, technical and mathematical principals of BOLD fMRI along with descriptions of typical applications. Our purpose in this report is to provide, in addition to basic principles, an insight into the aspects of BOLD imaging, which may be used by the medical physicist to assist in the implement of fMRI procedures in either a hospital or research environment.
基于血氧水平依赖(BOLD)效应的功能磁共振成像(fMRI)目前是理解大脑基本功能的重要新工具,特别是在不使用电离辐射的情况下,能够将生理活动与解剖位置关联起来。fMRI的临床作用仍在界定中,是众多研究活动的主题。在本报告中,我们介绍了BOLD fMRI的基本物理、技术和数学原理,并描述了典型应用。我们撰写本报告的目的,除了介绍基本原理外,还在于深入探讨BOLD成像的各个方面,医学物理学家可利用这些内容协助在医院或研究环境中实施fMRI程序。