Transimpedance Matrix Can Be Used to Estimate Electrode Positions Intraoperatively and to Monitor Their Positional Changes Postoperatively in Cochlear Implant Patients

医学 人工耳蜗植入 电极 电极阵列 听力学 生物医学工程 核医学 外科 物理化学 化学
作者
Lichun Zhang,Florian Schmidt,Tobias Oberhoffner,Karsten Ehrt,Daniel Cantré,Wilma Großmann,Sebastian P. Schraven,Robert Mlynski
出处
期刊:Otology & Neurotology [Ovid Technologies (Wolters Kluwer)]
卷期号:45 (4): e289-e296
标识
DOI:10.1097/mao.0000000000004145
摘要

Accurate positioning of the electrode array during cochlear implant (CI) surgery is crucial for achieving optimal hearing outcomes. Traditionally, postoperative radiological imaging has been used to assess electrode position. Transimpedance matrix (TIM) measurements have also emerged as a promising method for assessing electrode position. This involves utilizing electric field imaging to create an electric distance matrix by analyzing voltage variations among adjacent electrodes. This study aimed to investigate the feasibility of using intraoperative TIM measurements to estimate electrode position and monitor postoperative changes.Retrospective cohort study.University Medical center, tertiary academic referral center.Patients undergoing CI (CI622) surgery between January 2019 and June 2022.CI electrode positions and maximal angular insertion depths (maxAID) were determined using X-ray imaging according to Stenvers' projection. The mean gradient phase (MGP) was extracted from the TIM, and a correlation between the MGP and maxAID was examined. A model was then built to estimate the maxAID using the MGP, and changes in electrode location over time were assessed using this model.Twenty-four patients were included in this study. A positive correlation between the maxAID and the MGP ( R = 0.7, p = 0.0001) was found. The established model was able to predict the maxAID with an accuracy of 27.7 ± 4.4°. Comparing intraoperative and postoperative TIM measurements, a decrease of 24.1° ± 10.7° in maxAID over time was observed.TIM measurements are useful for estimating the insertion depth of the electrode and monitoring changes in the electrode's position over time.
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