Cochlear implant electrode array tip-foldover detection by electrode voltage telemetry.

IF 1.4 Q2 OTORHINOLARYNGOLOGY
Marc Leblans, Andrzej Zarowski, Andrzej Molisz, Joost van Dinther, Janne Dedeyne, Bob Lerut, Rudolf Kuhweide, Erwin Offeciers
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引用次数: 0

Abstract

Objectives: With the introduction of more flexible and thinner electrodes, such as Cochlear's Slim Modiolar Electrode, there is a higher risk of electrode insertion problems, in particular the tip foldover. Timely intraoperative detection of the problem would allow for direct intraoperative correction. This paper describes a non-radiological method for intraoperative tip foldover detection that is applicable in all surgical centers and can quickly deliver accurate results.

Methods: Postoperative radiographs of 118 CI-recipients implanted with Nucleus devices were retrospectively analyzed on the presence of a tip foldover. Electrode Voltage Telemetry (EVT), also called Electric Field Imaging, was performed by means of Cochlear's EVT software tool, which is now integrated into Custom Sound-EP as the Trans-Impedance-Matrix measurement option. Tip foldover detection was automated by using the linear Hough transform for extracting straight-line patterns in the Trans-Impedance Matrix's heatmap.

Results: The six cases of electrode tip foldover were accurately identified by the EVT measurements, including two cases with folding location very close to the electrode tip (contact 20).

Conclusion: Electrode Voltage Telemetry measures the Trans-Impedance Matrix, which can accurately detect tip foldovers of the cochlear implant electrodes within 1 min. This method can be reliably applied in all patients with normal cochlear anatomy and is able to intraoperatively detect foldovers localized even very close to the electrode tip. Application of the linear Hough transform allows for automatic detection of electrode tip foldovers that shows excellent agreement with visual evaluation of the radiological images and the transimpedance matrix's heatmap.

基于电极电压遥测技术的人工耳蜗电极阵列尖端折叠检测。
目的:随着更灵活和更薄的电极的引入,如耳蜗的超薄模摩尔电极,电极插入问题的风险更高,特别是尖端折叠。术中及时发现问题将允许直接术中纠正。本文介绍了一种适用于所有外科中心的术中尖端折叠检测的非放射学方法,可以快速准确地提供结果。方法:回顾性分析118例植入核装置的ci受者的术后x线片,分析其尖端折叠的存在。电极电压遥测(EVT),也称为电场成像,通过Cochlear的EVT软件工具进行,该工具现在作为跨阻抗矩阵测量选项集成到Custom Sound-EP中。利用线性霍夫变换提取反阻抗矩阵热图中的直线模式,实现了针尖折叠检测的自动化。结果:EVT测量准确识别了6例电极尖端折叠,其中2例折叠位置非常靠近电极尖端(接触点20)。结论:电极电压遥测法测量跨阻抗矩阵,可在1 min内准确检测人工耳蜗电极尖端折叠。该方法可以可靠地应用于所有耳蜗解剖结构正常的患者,并且可以在术中检测到定位在非常接近电极尖端的折叠。线性霍夫变换的应用允许自动检测电极尖端折叠,显示与放射图像的视觉评估和透阻抗矩阵的热图非常一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
COCHLEAR IMPLANTS INTERNATIONAL
COCHLEAR IMPLANTS INTERNATIONAL Medicine-Otorhinolaryngology
CiteScore
3.10
自引率
0.00%
发文量
29
期刊介绍: Cochlear Implants International was founded as an interdisciplinary, peer-reviewed journal in response to the growing number of publications in the field of cochlear implants. It was designed to meet a need to include scientific contributions from all the disciplines that are represented in cochlear implant teams: audiology, medicine and surgery, speech therapy and speech pathology, psychology, hearing therapy, radiology, pathology, engineering and acoustics, teaching, and communication. The aim was to found a truly interdisciplinary journal, representing the full breadth of the field of cochlear implantation.
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