Department of Otorhinolaryngology and Head and Neck Surgery, Radboud university medical center, Nijmegen, The Netherlands.
Donders Institute for Brain, Cognition and Behavior, Radboud University, Nijmegen, The Netherlands.
Otol Neurotol. 2021 Feb 1;42(2):e124-e129. doi: 10.1097/MAO.0000000000002875.
The aim of this study is to report on our preliminary experience with Transimpedance Matrix (TIM)-measurement for the detection of cochlear implant electrode tip foldovers compared with intraoperative imaging in patients implanted with the slim modiolar electrode (SME).
Proof of concept study.
Tertiary university referral center.
Twenty five ears (in 22 patients) implanted consecutively with the SME.
Following cochlear implantation, intraoperative TIM-measurement and fluoroscopy were performed. One week postoperatively, the electrode position was evaluated using Computed Tomography (CT)-imaging.
Electrode array tip foldover.
Electrode array tip foldover occurred in three of the 25 cochlear implantations performed (12%). In each case, the foldover was detected by both TIM and fluoroscopy, leading to reposition and correct intracochlear placement of the array.
TIM-measurement is a promising method for the intraoperative detection of an electrode array tip foldover. The TIM-tool with intuitive heatmap display is easy to use, fast, and readily available to clinics using TIM-software in the operating theatre.
本研究旨在报告我们在使用跨阻矩阵(TIM)测量技术检测与术中成像相比 slim 圆窗电极(SME)植入患者中的耳蜗植入电极尖端折叠的初步经验。
概念验证研究。
三级大学转诊中心。
连续接受 SME 植入的 25 只耳朵(22 例患者)。
在耳蜗植入后,进行术中 TIM 测量和透视检查。术后一周,使用计算机断层扫描(CT)成像评估电极位置。
电极阵列尖端折叠。
在 25 例耳蜗植入术中,有 3 例(12%)发生电极阵列尖端折叠。在每种情况下,TIM 和透视均检测到折叠,导致重新定位并正确将数组放置在耳蜗内。
TIM 测量是一种有前途的术中检测电极阵列尖端折叠的方法。具有直观热图显示的 TIM 工具易于使用,快速,并且易于在手术室中使用 TIM 软件的临床应用。