Department of Mechanical Engineering, Vanderbilt University, Nashville, TN 37235, USA.
IEEE Trans Biomed Eng. 2012 Oct;59(10):2792-800. doi: 10.1109/TBME.2012.2210220. Epub 2012 Jul 25.
The current technique for cochlear implantation (CI) surgery requires a mastoidectomy to gain access to the cochlea for electrode array insertion. It has been shown that microstereotactic frames can enable an image-guided, minimally invasive approach to CI surgery called percutaneous cochlear implantation (PCI) that uses a single drill hole for electrode array insertion, avoiding a more invasive mastoidectomy. Current clinical methods for electrode array insertion are not compatible with PCI surgery because they require a mastoidectomy to access the cochlea; thus, we have developed a manually operated electrode array insertion tool that can be deployed through a PCI drill hole. The tool can be adjusted using a preoperative CT scan for accurate execution of the advance off-stylet (AOS) insertion technique and requires less skill to operate than is currently required to implant electrode arrays. We performed three cadaver insertion experiments using the AOS technique and determined that all insertions were successful using CT and microdissection.
目前的耳蜗植入术 (CI) 手术技术需要进行乳突切除术,以便将电极阵列插入耳蜗。已经证明,微立体定向框架可以实现一种图像引导的、微创的 CI 手术方法,称为经皮耳蜗植入术 (PCI),该方法使用单个钻孔插入电极阵列,避免了更具侵袭性的乳突切除术。目前用于电极阵列插入的临床方法与 PCI 手术不兼容,因为它们需要进行乳突切除术才能进入耳蜗;因此,我们开发了一种手动操作的电极阵列插入工具,可以通过 PCI 钻头部署。该工具可以通过术前 CT 扫描进行调整,以准确执行推进器脱离 (AOS) 插入技术,并且比目前植入电极阵列所需的操作技能要求更低。我们使用 AOS 技术进行了三次尸体插入实验,通过 CT 和显微解剖确定所有插入均成功。