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Imaging cochlear implantation with round window insertion in human temporal bones and cochlear morphological variation using high-resolution cone beam CT

机译:使用高分辨率锥形束CT对人颞骨中圆形窗口插入的人工耳蜗植入和人工耳蜗形态变化进行成像

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摘要

Conclusions: The present experimental set-up of high spatial resolution cone-beam computed tomography (CBCT) showed advantages of demonstrating the critical landmarks of the cochlea in identifying the position of intracochlear electrode contacts and has the potential for clinical application in cochlear implant (CI) surgery. Objective: To evaluate a newly developed CBCT system in defining CI electrode array in human temporal bone and cochlear morphological variation. Methods: Standard electrode, flexible tip electrode (Flex28), and an experimental electrode array with 36 contacts from MED-EL were implanted into the cochleae of six human temporal bones through an atraumatic round window membrane insertion. The cochleae were imaged with 900 frames using an experimental set-up based on a CBCT scanner installed with Superior SXR 130-15-0.5 X-ray tube in combination with filtration of copper and aluminum. Results: In all temporal bones, the landmarks of the cochlea, modiolus, osseous spiral lamina, round window niche, and stapes were demonstrated at an average level of 3.4-4.5. The contacts of electrode arrays were clearly shown to locate in the scala tympani. There was a linear correlation between the ‘A’ value and cochlea height, and between the A value and actual electrode insertion length for the first 360° insertion depth.
机译:结论:目前的高空间分辨率锥形束计算机断层扫描(CBCT)实验装置显示出了在识别耳蜗内电极接触位置时证明耳蜗的关键标志的优势,并具有临床应用潜力。 ) 手术。目的:评估一种新开发的CBCT系统,该系统用于定义人颞骨和耳蜗形态变化中的CI电极阵列。方法:通过无创圆形窗膜插入,将标准电极,柔性尖端电极(Flex28)以及具有MED-EL的36个触点的实验电极阵列植入到六个人类颞骨的耳蜗中。使用基于CBCT扫描仪的实验装置对耳蜗进行900帧成像,该扫描仪安装了Superior SXR 130-15-0.5 X射线管,并过滤了铜和铝。结果:在所有颞骨中,耳蜗,性腺,骨螺旋状椎板,圆形窗口小生境和骨的标志物平均水平为3.4-4.5。电极阵列的触点清楚地显示在鼓sc中。 “ A”值与耳蜗高度之间以及A值与第一个360°插入深度的实际电极插入长度之间存在线性关系。

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