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一种用于区分折叠模式的电容式人工耳蜗电极阵列传感系统。

A Capacitive Cochlear Implant Electrode Array Sensing System to Discriminate Fold-Over Pattern.

机构信息

Brunel University London, United Kingdom.

Queen Elizabeth Hospital Birmingham, University Hospitals Birmingham, United Kingdom.

出版信息

J Speech Lang Hear Res. 2021 Sep 14;64(9):3685-3696. doi: 10.1044/2021_JSLHR-21-00067. Epub 2021 Aug 18.

Abstract

Purpose During insertion of the cochlear implant electrode array, the tip of the array may fold back on itself and can cause serious complications to patients. This article presents a sensing system for cochlear implantation in a cochlear model. The electrode array fold-over behaviors can be detected by analyzing capacitive information from the array tip. Method Depending on the angle of the array tip against the cochlear inner wall when it enters the cochlear model, different insertion patterns of the electrode array could occur, including smooth insertion, buckling, and fold-over. The insertion force simulating the haptic feedback for surgeons and bipolar capacitance signals during the insertion progress were collected and compared. The Pearson correlation coefficient (PCC) was applied to the collected capacitive signals to discriminate the fold-over pattern. Results Forty-six electrode array insertions were conducted and the deviation of the measured insertion force varies between a range of 20% and 30%. The capacitance values from electrode pair (1, 2) were recorded for analyzing. A threshold for the PCC is set to be 0.94 that can successfully discriminate the fold over insertions from the other two types of insertions, with a success rate of 97.83%. Conclusions Capacitive measurement is an effective method for the detection of faulty insertions and the maximization of the outcome of cochlear implantation. The proposed capacitive sensing system can be used in other tissue implants in vessels, spinal cord, or heart.

摘要

目的 在植入耳蜗植入电极阵列时,阵列的尖端可能会折叠回自身,这可能会给患者带来严重的并发症。本文提出了一种用于耳蜗模型中耳蜗植入的传感系统。可以通过分析来自阵列尖端的电容信息来检测电极阵列的折叠行为。

方法 根据电极阵列尖端进入耳蜗模型时与耳蜗内壁的角度,可能会出现不同的电极阵列插入模式,包括平滑插入、弯曲和折叠。收集并比较了模拟外科医生触觉反馈的插入力和插入过程中的双极电容信号。应用皮尔逊相关系数(PCC)对采集到的电容信号进行分类,以区分折叠模式。

结果 进行了 46 次电极阵列插入,测量的插入力偏差在 20%到 30%之间。记录了电极对(1,2)的电容值以进行分析。将 PCC 的阈值设置为 0.94,可成功将折叠插入与另外两种插入类型区分开来,成功率为 97.83%。

结论 电容测量是检测故障插入和最大化耳蜗植入效果的有效方法。所提出的电容传感系统可用于血管、脊髓或心脏中的其他组织植入物。

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