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首页> 外文期刊>The American journal of otology >Cochlear view: postoperative radiography for cochlear implantation.
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Cochlear view: postoperative radiography for cochlear implantation.

机译:人工耳蜗视图:用于人工耳蜗植入的术后X线摄影。

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摘要

OBJECTIVE: This study aimed to define a spatial position of the cochlea in the skull based on anatomical studies and to design an appropriate method of skull radiography for demonstration of the multichannel intracochlear electrode array and the structures of the inner ear, for use in evaluating the electrode position and its related pitch perception. BACKGROUND: The conventional skull radiograph (plain radiograph) can offer a complete and direct image of an intracochlear electrode array, if the x-ray is directed to the cochlea and parallel to the axis of the cochlea. METHODS: Measurement from computed tomography imaging and three-dimensional reconstruction were performed to define the spatial position of the cochlea in the skull. RESULTS: A radiographic projection, the cochlear view, was designed. A detailed radiographic method and radiologic interpretation of the cochlear view is described. An improved clinical method for measuring the longitudinal and angular position of the electrodes from the cochlear view is recommended. CONCLUSIONS: The application of the cochlear view has proved that it is beneficial postoperatively in documenting the results of cochlear implantation, and in evaluating the depth of insertion and position of individual electrodes. It serves as a valuable reference for managing frequency mapping, optimizing speech processing strategies, and further research purposes. The method can be widely used in cochlear implant clinics because of its simplicity, low radiation, speed, and minimal cost.
机译:目的:本研究旨在根据解剖学研究确定颅骨中耳蜗的空间位置,并设计一种合适的颅骨放射照相方法,以演示多通道耳蜗内电极阵列和内耳的结构,以用于评估耳蜗的结构。电极位置及其相关的音高感知。背景:如果X射线指向耳蜗并平行于耳蜗轴,则常规颅骨X光片(普通X光片)可以提供耳蜗内电极阵列的完整且直接的图像。方法:通过计算机断层扫描成像和三维重建进行测量,以确定耳蜗在颅骨中的空间位置。结果:设计了射线照相投影,即耳蜗视图。描述了耳蜗视图的详细射线照相方法和放射学解释。建议使用一种改进的临床方法从耳蜗角度测量电极的纵向和角向位置。结论:人工耳蜗的应用已证明在术后记录人工耳蜗植入的结果,评估单个电极的插入深度和位置方面是有益的。它为管理频率映射,优化语音处理策略以及进一步的研究目的提供了宝贵的参考。该方法简单,辐射低,速度快,成本低,可广泛用于人工耳蜗临床。

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