• Spinal cord · Aug 2015

    3D angioarchitecture changes after spinal cord injury in rats using synchrotron radiation phase-contrast tomography.

    • J Hu, Y Cao, T Wu, D Li, and H Lu.
    • Department of Spine Surgery, Xiangya Hospital, Central South University, Changsha, China.
    • Spinal Cord. 2015 Aug 1; 53 (8): 585-90.

    Study DesignA basic experiment study.ObjectivesAn understanding of the three-dimensional (3D) angioarchitecture changes that occur after SCI will improve our knowledge of the pathogenesis of SCI and aid in the development of valuable therapeutic strategies to improve its poor outcomes. Our aim was to visualize the normal and traumatized spinal angioarchitecture in 3D using a high-resolution synchrotron radiation phase-contrast tomography (SR-PCT) and evaluate its diagnostic capability.SettingSCI Center of Xiangya Hospital of Central South University in China.MethodsSR-PCT was used as novel high-resolution imaging tool to detect 3D morphological alterations in spinal cord microvasculature after injury.ResultsIn a rat model, the morphology of the microvasculature on 2D digital slices was matched with histological findings in both the normal and injured spinal cord. 3D angioarchitecture changes after SCI were successfully obtained via SR-PCT without the use of a contrast agent. Quantitative analysis on 3D images of the injured spinal cord revealed a significant decrease in the number and volume of vascular networks. This was especially relevant to vessels with a diameter <50 μm.ConclusionThe 3D local blood supply to the spinal cord was severely disrupted after the acute violent injury. Our results indicate that the use of SR-PCT may improve our understanding of the pathogenesis of SCI and provide a new approach to the morphological investigation of neurovascular diseases in preclinical research.

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