Hu Jianzhong, Li Ping, Yin Xianzhen, Wu Tianding, Cao Yong, Yang Zhiming, Jiang Liyuan, Hu Shiping, Lu Hongbin
Department of Spine Surgery, Xiangya Hospital, Central South University, Changsha 410008, People's Republic of China.
Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 200135, People's Republic of China.
J Synchrotron Radiat. 2017 Mar 1;24(Pt 2):482-489. doi: 10.1107/S1600577517000121. Epub 2017 Feb 1.
The spinal cord is the primary neurological link between the brain and other parts of the body, but unlike those of the brain, advances in spinal cord imaging have been challenged by the more complicated and inhomogeneous anatomy of the spine. Fortunately with the advancement of high technology, phase-contrast synchrotron radiation microtomography has become widespread in scientific research because of its ability to generate high-quality and high-resolution images. In this study, this method has been employed for nondestructive imaging of the internal microstructure of rat spinal cord. Furthermore, digital virtual slices based on phase-contrast synchrotron radiation were compared with conventional histological sections. The three-dimensional internal microstructure of the intramedullary arteries and nerve fibers was vividly detected within the same spinal cord specimen without the application of a stain or contrast agent or sectioning. With the aid of image post-processing, an optimization of vessel and nerve fiber images was obtained. The findings indicated that phase-contrast synchrotron radiation microtomography is unique in the field of three-dimensional imaging and sets novel standards for pathophysiological investigations in various neurovascular diseases.
脊髓是大脑与身体其他部位之间主要的神经连接,但与大脑成像不同的是,脊髓成像的进展受到脊柱更为复杂且不均匀的解剖结构的挑战。幸运的是,随着高科技的发展,相衬同步辐射显微断层成像因其能够生成高质量和高分辨率图像,已在科学研究中广泛应用。在本研究中,该方法已用于大鼠脊髓内部微观结构的无损成像。此外,将基于相衬同步辐射的数字虚拟切片与传统组织学切片进行了比较。在未使用染色剂、造影剂或切片的情况下,在同一脊髓标本中清晰地检测到了髓内动脉和神经纤维的三维内部微观结构。借助图像后处理,获得了血管和神经纤维图像的优化效果。研究结果表明,相衬同步辐射显微断层成像在三维成像领域具有独特性,并为各种神经血管疾病的病理生理研究设定了新的标准。