Department of Computer & Science Engineering, Graduate School, Soonchunhyang University, 22, Soonchunhyang-ro, Asan City, Chungnam, 31538, Republic of Korea.
Department of Physical Therapy, College of Health and Life Science, Korea National University of Transportation, 61, Daehak-ro, Yonggang-ri, Jeungpyeong-eup, Jeungpyeong-gun, Chungcheongbuk-do, 27909, Republic of Korea.
Sci Rep. 2020 Mar 12;10(1):4555. doi: 10.1038/s41598-020-61599-7.
Damage to lower limb muscles requires accurate analysis of the muscular condition via objective microscopic diagnosis. However, microscopic tissue analysis may cause deformation of the tissue structure due to injury induced by external factors during tissue sectioning. To substantiate these muscle injuries, we used synchrotron X-ray imaging technology to project extremely small objects, provide three-dimensional microstructural analysis as extracted samples. In this study, we used mice as experimental animals to create soleus muscle models with various nerve injuries. We morphologically analyzed and quantified the damaged Section and Crush muscles, respectively, via three-dimensional visualization using synchrotron radiation X-ray imaging to diagnose muscle injury. Results of this study can also be used as basic data in the medical imaging field.
下肢肌肉损伤需要通过客观的微观诊断来准确分析肌肉状况。然而,在进行组织切片时,由于外部因素引起的损伤,微观组织分析可能会导致组织结构变形。为了证实这些肌肉损伤,我们使用同步加速器 X 射线成像技术来对极小的物体进行投影,为提取的样本提供三维微观结构分析。在这项研究中,我们使用小鼠作为实验动物,创建具有各种神经损伤的比目鱼肌模型。我们通过使用同步加速器辐射 X 射线成像进行三维可视化,对损伤的节段和压碎肌肉进行形态学分析和定量,以诊断肌肉损伤。本研究的结果也可以作为医学成像领域的基础数据。