Department of Radiology, Beijing Friendship Hospital, Capital Medical University, Beijing, China.
Department of Radiology, Beijing Tongren Hospital, Capital Medical University, Beijing, China.
Microsc Res Tech. 2019 Jul;82(7):953-960. doi: 10.1002/jemt.23121. Epub 2019 Jan 12.
A thorough understanding of inner ear anatomy is important for investigators. However, investigation of the mouse inner ear is difficult due to the limitations of imaging techniques. X-ray phase contrast tomography increases contrast 100-1,000 times compared with conventional X-ray imaging. This study aimed to investigate inner ear anatomy in a fresh post-mortem mouse using X-ray phase contrast tomography and to provide a comprehensive atlas of microstructures with less tissue deformation. All experiments were performed in accordance with our institution's guidelines on the care and use of laboratory animals. A fresh mouse cadaver was scanned immediately after sacrifice using an inline phase contrast tomography system. Slice images were reconstructed using a filtered back-projection (FBP) algorithm. Standardized axial and coronal planes were adjusted with a multi-planar reconstruction method. Some three-dimensional (3D) objects were reconstructed by surface rendering. The characteristic features of microstructures, including otoconia masses of the saccular and utricular maculae, superior and inferior macula cribrosae, single canal, modiolus, and osseous spiral lamina, were described in detail. Spatial positions and relationships of the vestibular structures were exhibited in 3D views. This study investigated mouse inner ear anatomy and provided a standardized presentation of microstructures. In particular, otoconia masses were visualized in their natural status without contrast for the first time. The comprehensive anatomy atlas presented in this study provides an excellent reference for morphology studies of the inner ear.
深入了解内耳解剖结构对于研究人员来说非常重要。然而,由于成像技术的限制,研究小鼠内耳具有一定的难度。与传统 X 射线成像相比,X 射线相衬断层摄影术可将对比度提高 100-1000 倍。本研究旨在使用 X 射线相衬断层摄影术对内耳解剖结构进行研究,并提供一种具有较少组织变形的微观结构综合图谱。所有实验均按照本机构关于实验室动物护理和使用的指导方针进行。在牺牲后立即使用线内相衬断层摄影系统对新鲜的小鼠尸体进行扫描。使用滤波反投影(FBP)算法重建切片图像。使用多平面重建方法调整标准化的轴向和冠状面。通过表面渲染重建一些三维(3D)物体。详细描述了包括囊斑和椭圆斑的耳石质量、上和下筛斑、单一的内淋巴管、蜗轴和骨螺旋板在内的微观结构的特征。在 3D 视图中展示了前庭结构的空间位置和关系。本研究调查了小鼠内耳解剖结构,并提供了微观结构的标准化呈现。特别是,首次以其自然状态可视化耳石质量,而无需对比。本研究中呈现的综合解剖图谱为内耳形态学研究提供了极好的参考。