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Insertion of electrode array using percutaneous cochlear implantation technique: a cadaveric study

机译:使用经皮人工耳蜗植入技术插入电极阵列:尸体研究

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Cochlear implantation is a surgical procedure for treating patients with hearing loss in which an electrode array is inserted into the cochlea. The traditional surgical approach requires drilling away a large portion of the bone behind the ear to provide anatomical reference and access to the cochlea. A minimally-invasive technique, called percutaneous cochlear implantation (PCI), has been proposed that involves drilling a linear path from the lateral skull to the cochlea avoiding vital structures and inserting the implant using that drilled path. The steps required to achieve PCI safely include: placing three bone-implanted markers surrounding the ear, obtaining a CT scan, planning a surgical path to the cochlea avoiding vital anatomy, designing and constructing a microstereotactic frame that mounts on the markers and constrains the drill to the planned path, affixing the frame on the markers, using it to drill to the cochlea, and inserting the electrode through the drilled path. We present in this paper a cadaveric study demonstrating the PCI technique on three temporal bone cadaveric specimens for inserting electrode array into the cochlea. A custom fixture, called a Microtable, which is a type of microstereotactic frame that can be constructed in less than five minutes, was fabricated for each specimen and used to reach the cochlea. The insertion was successfully performed on all three specimens. Post-insertion CT scans confirm the correct placement of the electrodes inside the cochlea without any damage to the facial nerve.
机译:耳蜗植入是一种用于治疗听力损失患者的外科手术,其中将电极阵列插入了耳蜗。传统的手术方法需要在耳后钻掉大部分的骨头,以提供解剖学参考和进入耳蜗的通道。已经提出了一种微创技术,称为经皮人工耳蜗植入(PCI),该技术涉及从侧颅骨到耳蜗的一条线性路径钻孔,避免重要结构,并使用该钻孔路径插入植入物。安全地实现PCI所需的步骤包括:在耳朵周围放置三个骨植入标记物,进行CT扫描,规划通往耳蜗的手术路径,从而避免重要的解剖结构,设计和构建可安装在标记物上并约束钻头的微立体定向框架到计划的路径,将框架固定在标记器上,用它钻到耳蜗,然后将电极插入到钻出的路径中。我们在本文中进行了一项尸体研究,该研究在三个颞骨尸体标本上展示了将电极阵列插入耳蜗的PCI技术。为每个标本制作了一个定制的夹具,称为Microtable,这是一种可以在不到五分钟的时间内完成的微立体定向框架,可用于到达耳蜗。插入成功地完成了所有三个样本。插入后的CT扫描可确认电极正确放置在耳蜗内,而不会损伤面神经。

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