Campbell Graeme M, Sophocleous Antonia
Section Biomedical Imaging, Department of Radiology, University Hospital Schleswig-Holstein , Kiel, Germany.
Rheumatic Diseases Unit, MRC Institute of Genetics and Molecular Medicine, Centre for Genomic and Experimental Medicine, Western General Hospital, University of Edinburgh , Edinburgh, UK.
Bonekey Rep. 2014 Aug 20;3:564. doi: 10.1038/bonekey.2014.59. eCollection 2014.
Micro-computed tomography (micro-CT) is a high-resolution imaging modality that is capable of analysing bone structure with a voxel size on the order of 10 μm. With the development of in vivo micro-CT, where disease progression and treatment can be monitored in a living animal over a period of time, this modality has become a standard tool for preclinical assessment of bone architecture during disease progression and treatment. For meaningful comparison between micro-CT studies, it is essential that the same parameters for data acquisition and analysis methods be used. This protocol outlines the common procedures that are currently used for sample preparation, scanning, reconstruction and analysis in micro-CT studies. Scan and analysis methods for trabecular and cortical bone are covered for the femur, tibia, vertebra and the full neonate body of small rodents. The analysis procedures using the software provided by ScancoMedical and Bruker are discussed, and the routinely used bone architectural parameters are outlined. This protocol also provides a section dedicated to in vivo scanning and analysis, which covers the topics of anaesthesia, radiation dose and image registration. Because of the expanding research using micro-CT to study other skeletal sites, as well as soft tissues, we also provide a review of current techniques to examine the skull and mandible, adipose tissue, vasculature, tumour severity and cartilage. Lists of recommended further reading and literature references are included to provide the reader with more detail on the methods described.
微计算机断层扫描(micro-CT)是一种高分辨率成像方式,能够以约10μm的体素大小分析骨骼结构。随着活体微CT的发展,可以在一段时间内对活体动物的疾病进展和治疗进行监测,这种方式已成为疾病进展和治疗期间骨骼结构临床前评估的标准工具。为了在微CT研究之间进行有意义的比较,必须使用相同的数据采集参数和分析方法。本方案概述了目前在微CT研究中用于样本制备、扫描、重建和分析的常见程序。涵盖了小啮齿动物股骨、胫骨、椎骨和整个新生幼体的小梁骨和皮质骨的扫描及分析方法。讨论了使用ScancoMedical和Bruker提供的软件的分析程序,并概述了常用的骨结构参数。本方案还提供了一个专门用于活体扫描和分析的部分,涵盖麻醉、辐射剂量和图像配准等主题。由于使用微CT研究其他骨骼部位以及软组织的研究不断增加,我们还对检查颅骨和下颌骨、脂肪组织、脉管系统、肿瘤严重程度和软骨的当前技术进行了综述。包含推荐的进一步阅读和文献参考列表,为读者提供关于所述方法的更多详细信息。