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采用多平面重建技术测量小型猪的内耳结构。

Inner ear structure of miniature pigs measured by multi-planar reconstruction techniques.

作者信息

Zhong Ling-Ling, Zhang Yan, Liang Xiao-Jie, Hou Kun, Han Jia-Wei, Wang Fang-Yuan, Hao Qing-Qing, Jiang Qing-Qing, Yu Ning, Guo Wei-Wei, Yang Shi-Ming

机构信息

Department of Otolayngology, Head & Neck Surgery, Institute of Otolaryngology of PLA, Chinese PLA General HospitalBeijing 100853, P. R. China.

Department of Otolayngology, Head & Neck Surgery, The Tianjin Children's HospitalTianjin 300074, P. R. China.

出版信息

Am J Transl Res. 2018 Mar 15;10(3):709-717. eCollection 2018.

Abstract

To study the structures of the scala vestibuli and tympani of miniature pigs in order to evaluate the feasibility of using miniature pigs as the animal model for cochlear implant. The temporal bones of three miniature pigs with normal hearing were scanned by micro-CT. With the aid of the Mimics software, we reconstructed the 3D structure of inner ear basing on the serial images of the miniature pig, and obtained dimensions of the scala vestibuli and tympani with multi-planar reconstruction (MPR) technique. The constructed slicing images displayed the fine structures of the cochlea. The results of our study showed that the cross-sectional areas of the scala tympani were greatest at 2.67 ± 0.90 mm when the circumferential length from the starting point of basal turn of the cochlea reached to 1.16 mm. The scala vestibuli has a largest width and height at the starting point of basal turn. The width and the height were 2.65 ± 0.45 mm and 2.43 ± 0.2 mm respectively. The largest width and height of the scala tympani were 2.17 ± 0.30 mm and 1.83 ± 0.42 mm. The result of our study suggests that the cochlea of miniature pigs is highly consistent with human's. Miniature pigs may be used as a new model for cochlear implant. MPR technique may be used as a new approach to obtain further information of patient's cochlea in surgeons which is helpful to select suitable cochlear implant devices and surgery approach.

摘要

研究小型猪前庭阶和鼓阶的结构,以评估将小型猪作为人工耳蜗植入动物模型的可行性。对3只听力正常的小型猪的颞骨进行显微CT扫描。借助Mimics软件,基于小型猪的系列图像重建内耳的三维结构,并采用多平面重建(MPR)技术获得前庭阶和鼓阶的尺寸。构建的切片图像显示了耳蜗的精细结构。研究结果表明,当耳蜗基底转起点的圆周长度达到1.16 mm时,鼓阶的横截面积最大,为2.67±0.90 mm。前庭阶在基底转起点处具有最大宽度和高度,宽度和高度分别为2.65±0.45 mm和2.43±0.2 mm。鼓阶的最大宽度和高度分别为2.17±0.30 mm和1.83±0.42 mm。研究结果表明,小型猪的耳蜗与人类的高度一致。小型猪可作为人工耳蜗植入的新模型。MPR技术可作为一种新方法,为外科医生提供患者耳蜗的更多信息,有助于选择合适的人工耳蜗植入装置和手术方法。

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本文引用的文献

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[Establishment of a mathematical model for calculating cochlear length].[建立计算耳蜗长度的数学模型]
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