Lee Donghoon, Marcinek David
Department of Radiology, University of Washington, USA.
J Vis Exp. 2009 Oct 20(32):1592. doi: 10.3791/1592.
Small animal Magnetic Resonance (MR) research has emerged as an important element of modern biomedical research due to its non-invasive nature and the richness of biological information it provides. MR does not require any ionizing radiation and can noninvasively provide higher resolution and better signal-to-noise ratio in comparison to other tomographic or spectroscopic modalities. In this protocol, we will focus on small animal MR imaging and MR spectroscopy (MRI/MRS) to noninvasively acquire relaxation weighted (1)H images of mouse and to obtain (31)P spectra of mouse muscle. This work does not attempt to cover every aspect of small animal MRI/MRS but rather introduces basic procedures of mouse MRI/MRS experiments. The main goal of this work is to inform researchers of the basic procedures for in vivo MR experiments on small animals. The goal is to provide a better understanding of basic experimental procedures to allow researchers new to the MR field to better plan for non-MR components of their studies so that both MR and non-MR procedures are seamlessly integrated.
由于其非侵入性以及所提供的丰富生物信息,小动物磁共振(MR)研究已成为现代生物医学研究的一个重要组成部分。与其他断层扫描或光谱学方法相比,磁共振不需要任何电离辐射,并且能够以非侵入方式提供更高的分辨率和更好的信噪比。在本方案中,我们将专注于小动物磁共振成像和磁共振波谱(MRI/MRS),以非侵入方式获取小鼠的弛豫加权(1)H图像,并获得小鼠肌肉的(31)P波谱。这项工作并非试图涵盖小动物MRI/MRS的方方面面,而是介绍小鼠MRI/MRS实验的基本程序。这项工作的主要目标是让研究人员了解小动物体内磁共振实验的基本程序。目的是让研究人员更好地理解基本实验程序,以便刚接触磁共振领域的研究人员能够更好地规划其研究中的非磁共振部分,从而使磁共振和非磁共振程序能够无缝整合。