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Three-dimensional virtual model of the human temporal bone: a stand-alone, downloadable teaching tool.

机译:人体颞骨的三维虚拟模型:一种独立的可下载教学工具。

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OBJECTIVE: To develop a three-dimensional virtual model of a human temporal bone based on serial histologic sections. BACKGROUND: The three-dimensional anatomy of the human temporal bone is complex, and learning it is a challenge for students in basic science and in clinical medicine. METHODS: Every fifth histologic section from a normal 14-year-old male was digitized and imported into a general purpose three-dimensional rendering and analysis software package called Amira (version 3.1). The sections were aligned, and anatomic structures of interest were segmented. RESULTS: The three-dimensional model is a surface rendering of these structures of interest, which currently includes the bone and air spaces of the temporal bone; the perilymph and endolymph spaces; the sensory epithelia of the cochlear and vestibular labyrinths; the ossicles and tympanic membrane; the middle ear muscles; the carotid artery; and the cochlear, vestibular, and facial nerves. For each structure, the surface transparency can beindividually controlled, thereby revealing the three-dimensional relations between surface landmarks and underlying structures. The three-dimensional surface model can also be "sliced open" at any section and the appropriate raw histologic image superimposed on the cleavage plane. The image stack can also be resectioned in any arbitrary plane. CONCLUSION: This model is a powerful teaching tool for learning the complex anatomy of the human temporal bone and for relating the two-dimensional morphology seen in a histologic section to the three-dimensional anatomy. The model can be downloaded from the Eaton-Peabody Laboratory web site, packaged within a cross-platform freeware three-dimensional viewer, which allows full rotation and transparency control.
机译:目的:建立基于连续组织学切片的人类颞骨三维虚拟模型。背景:人类颞骨的三维解剖结构很复杂,学习它对基础科学和临床医学的学生来说是一个挑战。方法:将一名正常的14岁男性的每五个组织学切片数字化,并导入到称为Amira(版本3.1)的通用三维渲染和分析软件包中。切片被对齐,感兴趣的解剖结构被分割。结果:三维模型是这些感兴趣结构的表面渲染,当前包括骨骼和颞骨的空隙。外淋巴和内淋巴间隙;耳蜗和前庭迷宫的感觉上皮;小骨和鼓膜;中耳肌肉;颈动脉;以及耳蜗,前庭和面部神经。对于每个结构,可以单独控制表面透明度,从而揭示表面标志和底层结构之间的三维关系。三维表面模型还可以在任何部分“切开”,并将适当的原始组织学图像叠加在劈开面上。图像堆栈也可以在任意平面中切除。结论:该模型是学习人体颞骨的复杂解剖结构并将组织学切片中的二维形态学与三维解剖结构联系起来的强大教学工具。该模型可以从Eaton-Peabody Laboratory网站下载,打包在一个跨平台免费软件三维查看器中,该查看器可以进行完整的旋转和透明度控制。

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