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跨阻矩阵测量可靠地检测人工耳蜗植入中的电极尖端折叠。

Transimpedance Matrix Measurements Reliably Detect Electrode Tip Fold-over in Cochlear Implantation.

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery.

Department of Diagnostic and Interventional Radiology and Neuroradiology, University Medicine Essen, University of Duisburg-Essen.

出版信息

Otol Neurotol. 2021 Dec 1;42(10):e1494-e1502. doi: 10.1097/MAO.0000000000003334.

Abstract

OBJECTIVE

During cochlear implantation, electrophysiological tests are performed to document safe technical functioning of implant and electrodes. In rare cases, the apical part of the electrode folds over during insertion. The data from transimpedance matrix (TIM) measurements enable the generation of a heat map or TIM profile measuring the spatial distribution of voltage. The aim of this study was to determine the accuracy of heat-map TIM profiles and compare them with spread of excitation (SOE) measurements and intraoperative imaging for prediction of electrode malposition.

STUDY DESIGN

Non-randomized study.

SETTING

Tertiary referral center.

PATIENTS AND INTERVENTIONS

One hundred patients who underwent cochlear implantation with completed TIM measurements, SOE data and perioperative imaging met the inclusion criteria and were enrolled.

MAIN OUTCOME MEASURE

The electrophysiological data on the electrode array positioning was compared with temporal bone imaging.

RESULTS

In seven cases, TIM measurements showed irregular results. In two cases, irregular TIM profiles were registered, but SOE data and 3D x-ray of the temporal bone didn't display deviated electrode positioning. A 3D x-ray of the skull displayed electrode tip fold-over in four cases and electrode buckling in one case. Sensitivity of TIM measurements and SOE data was 100%, specificity of TIM measurements was 97.89%, and specificity of SOE data was 98.93%.

CONCLUSION

Out of 100 patients using TIM measurements for detection of electrode malpositioning, no false negative cases were detected. TIM measurements successfully detect electrode malposition in an intraoperative setting. Different heat map patterns may be observed depending on location and type of malposition.

摘要

目的

在进行耳蜗植入时,进行电生理测试以记录植入物和电极的安全技术功能。在极少数情况下,电极的顶端在插入过程中会折叠。跨导矩阵(TIM)测量的数据可生成热图或 TIM 曲线,测量电压的空间分布。本研究旨在确定热图 TIM 曲线的准确性,并将其与兴奋传播(SOE)测量和术中成像进行比较,以预测电极错位。

研究设计

非随机研究。

设置

三级转诊中心。

患者和干预措施

符合纳入标准并接受研究的 100 名接受耳蜗植入并完成 TIM 测量、SOE 数据和围手术期成像的患者。

主要观察指标

将电极阵列定位的电生理数据与颞骨成像进行比较。

结果

在 7 例中,TIM 测量结果显示不规则。在 2 例中,记录到不规则的 TIM 曲线,但 SOE 数据和颞骨的 3D X 光片未显示电极定位偏差。4 例颅骨 3D X 光片显示电极尖端折叠,1 例电极弯曲。TIM 测量和 SOE 数据的敏感性为 100%,TIM 测量的特异性为 97.89%,SOE 数据的特异性为 98.93%。

结论

在使用 TIM 测量检测电极错位的 100 名患者中,未发现假阴性病例。TIM 测量可在术中成功检测电极错位。根据错位的位置和类型,可能会观察到不同的热图模式。

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