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通过电诱发复合动作电位(eCAP)获得的兴奋传递函数的临床应用。

Clinical Applications for Spread of Excitation Functions Obtained Via Electrically Evoked Compound Action Potentials (eCAP).

机构信息

Department of Hearing and Speech Sciences, Vanderbilt University Medical Center, Nashville, Tennessee.

Department of Otolaryngology-Head and Neck Surgery, Medical University of South Carolina, Charleston, South Carolina.

出版信息

Otol Neurotol. 2024 Aug 1;45(7):790-797. doi: 10.1097/MAO.0000000000004242. Epub 2024 Jun 26.

Abstract

OBJECTIVES

To assess the clinical utility of spread of excitation (SOE) functions obtained via electrically evoked compound action potentials (eCAP) to 1) identify electrode array tip fold-over, 2) predict electrode placement factors confirmed via postoperative computed tomography (CT) imaging, and 3) predict postoperative speech recognition through the first year post-activation in a large clinical sample.

STUDY DESIGN

Retrospective case review.

SETTING

Cochlear implant (CI) program at a tertiary medical center.

PATIENTS

Two hundred seventy-two ears (238 patients) with Cochlear Ltd. CIs (mean age = 46 yr, range = 9 mo-93 yr, 50% female) implanted between August 2014 and December 2022 were included.

MAIN OUTCOME MEASURES

eCAP SOE widths (mm) (probe electrodes 5, 11, and 17), incidence of electrode tip fold-over, CT imaging data (electrode-to-modiolus distance, angular insertion depth, scalar location), and speech recognition outcomes (consonant-nucleus-consonant [CNC], AzBio quiet, and +5 dB SNR) through the first year after CI activation.

RESULTS

  1. eCAP SOE demonstrated a sensitivity of 85.7% for identifying tip fold-over instances that were confirmed by CT imaging. In the current dataset, the tip fold-over incidence rate was 3.1% (7 patients), with all instances involving a precurved electrode array. 2) There was a significant positive relationship between eCAP SOE and mean electrode-to-modiolus distance for precurved arrays, and a significant positive relationship between eCAP SOE and angular insertion depth for straight arrays. No relationships between eCAP SOE and scalar location or cochlea diameter were found in this sample. 3) There were no significant relationships between eCAP SOE and speech recognition outcomes for any measure or time point, except for a weak negative correlation between average eCAP SOE widths and CNC word scores at 6 months post-activation for precurved arrays.

CONCLUSIONS

In the absence of intraoperative CT or fluoroscopic imaging, eCAP SOE is a reasonable alternative method for identifying electrode array tip fold-over and should be routinely measured intraoperatively, especially for precurved electrode arrays with a sheath.

摘要

目的

评估通过电诱发复合动作电位(eCAP)获得的兴奋传播(SOE)功能的临床效用,以 1)识别电极尖端折叠,2)预测术后计算机断层扫描(CT)成像确认的电极放置因素,以及 3)通过激活后第一年的术后言语识别来预测 272 只耳朵(238 名患者)的术后言语识别,这些患者均植入了 Cochlear Ltd. 的 CI(平均年龄=46 岁,范围为 9 个月-93 岁,50%为女性),时间为 2014 年 8 月至 2022 年 12 月。

研究设计

回顾性病例研究。

设置

三级医疗中心的 Cochlear 植入(CI)计划。

主要观察指标

eCAP SOE 宽度(mm)(探针电极 5、11 和 17)、电极尖端折叠的发生率、CT 成像数据(电极-蜗轴距离、角插入深度、标度位置)和术后第一年的言语识别结果(辅音-核-辅音 [CNC]、AzBio 安静和+5 dB SNR)。

结果

1)eCAP SOE 对经 CT 成像确认的尖端折叠实例的识别灵敏度为 85.7%。在当前数据集,尖端折叠发生率为 3.1%(7 名患者),所有实例均涉及预弯曲的电极阵列。2)对于预弯曲的数组,eCAP SOE 与平均电极-蜗轴距离呈显著正相关,而对于直数组,eCAP SOE 与角插入深度呈显著正相关。在该样本中,未发现 eCAP SOE 与标度位置或耳蜗直径之间存在关系。3)eCAP SOE 与任何测量或时间点的言语识别结果均无显著关系,除了预弯曲数组在激活后 6 个月时 eCAP SOE 平均宽度与 CNC 单词得分之间存在微弱的负相关外。

结论

在没有术中 CT 或荧光透视成像的情况下,eCAP SOE 是识别电极阵列尖端折叠的合理替代方法,应在术中常规测量,特别是对于带有护套的预弯曲电极阵列。

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