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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Registration of micro-computed tomography and histological images of the guinea pig cochlea to construct an ear model using an iterative closest point algorithm.
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Registration of micro-computed tomography and histological images of the guinea pig cochlea to construct an ear model using an iterative closest point algorithm.

机译:使用迭代最近点算法配准豚鼠耳蜗的微计算机断层扫描和组织学图像,以构建耳朵模型。

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摘要

We present a practical and systematic method to reconstruct accurate physical models of the guinea pig ear (n = 1). The method uses a semi-automatic technique to create three-dimensional (3-D) models of the guinea pig cochlea by registration of micro-computed tomography (CT) and histological images. An iterative closest point algorithm was employed to minimize the sum of square errors with respect to the closest histological model and corresponding micro-CT model. This allowed creation of an accurate geometric ear model including external ear canal, tympanic membrane, middle ear cavity, auditory ossicles, and the cochlea. The characteristic cross-sectional areas of scala tympani, scala vestibuli, and scala media were measured. The length, thickness, and apex width of the guinea pig's basilar membrane were compared to the data found in literature. Some shape parameters were also compared among different species. The results confirmed that the geometric model created by this method was accurate. This method provides an effective way to visualize the 3-D structure and the detailed information about ear geometry required for finite element and multibody dynamic analysis.
机译:我们提出了一种实用而系统的方法来重建豚鼠耳朵的精确物理模型(n = 1)。该方法使用半自动技术通过配准微计算机断层扫描(CT)和组织学图像来创建豚鼠耳蜗的三维(3-D)模型。对于最近的组织学模型和相应的微CT模型,采用迭代的最近点算法来最小化平方误差之和。这样就可以创建包括外耳道,鼓膜,中耳腔,听小骨和耳蜗在内的准确的几何耳模型。测量了斯卡拉鼓室,斯卡拉前庭骨和斯卡拉介质的特征截面积。将豚鼠基底膜的长度,厚度和顶点宽度与文献中的数据进行了比较。还比较了不同物种之间的一些形状参数。结果证实了该方法创建的几何模型是准确的。该方法为可视化3-D结构以及有关有限元和多体动力学分析所需的耳朵几何形状的详细信息提供了一种有效的方法。

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