Saoji Aniket A, Staricha Kelly L, DeJong Melissa D, Dornhoffer James R, Neff Brian A, Driscoll Colin L W, Koka Kanthaiah, Lane John I, Carlson Matthew L
Department of Otolaryngology-Head and Neck Surgery, Mayo Clinic, Rochester, Minnesota.
Advanced Bionics, Valencia, California.
Otol Neurotol. 2025 Feb 1;46(2):e51-e55. doi: 10.1097/MAO.0000000000004390.
To analyze the use of electrical field imaging (EFI) in the detection of extracochlear electrodes in cochlear implants (CI).
Retrospective cohort study.
Tertiary academic medical center.
EFI patterns from 6 recipients with extracochlear electrodes were compared with 10 recipients with all intracochlear electrodes to identify differences in EFI patterns between these two groups. For the extracochlear group, EFI patterns were analyzed using two methods: visual inspection and calculation of the average impedance difference (AID) between specific EFI curves. These results were then compared with information from CT and plain film imaging, surgical notes, and audiology tests to confirm the placement of the electrodes in each recipient.
An average AID of 0.06 kΩ was calculated from the EFI patterns for recipients with complete electrode insertion, whereas an average AID of 0.15 kΩ was calculated from the EFI curves measured for the extracochlear electrodes. Visual analysis of the EFI impedance curves for extracochlear electrodes showed a distinct separation from those measured for intracochlear electrodes. Based on AID analysis and visual inspection the EFI, patterns were in close agreement with the number of extracochlear electrodes detected based on either imaging, intraoperative surgical note, or audiological findings.
EFI is a noninvasive, inexpensive, and time-efficient measurement that can be used to detect extracochlear electrodes and monitor electrode migration from the cochlea.
分析电场成像(EFI)在人工耳蜗(CI)中外耳蜗电极检测中的应用。
回顾性队列研究。
三级学术医疗中心。
将6名有外耳蜗电极的接受者的EFI模式与10名所有电极均植入耳蜗内的接受者的EFI模式进行比较,以确定这两组之间EFI模式的差异。对于外耳蜗电极组,使用两种方法分析EFI模式:目视检查和计算特定EFI曲线之间的平均阻抗差(AID)。然后将这些结果与CT和平片成像、手术记录及听力学测试信息进行比较,以确认每个接受者电极的位置。
电极完全植入的接受者的EFI模式计算得出的平均AID为0.06kΩ,而外耳蜗电极测量的EFI曲线计算得出的平均AID为0.15kΩ。对外耳蜗电极的EFI阻抗曲线进行目视分析,结果显示其与耳蜗内电极测量的曲线明显不同。基于AID分析和目视检查,EFI模式与基于成像、术中手术记录或听力学检查结果检测到的外耳蜗电极数量高度一致。
EFI是一种无创、廉价且高效的测量方法,可用于检测外耳蜗电极并监测电极从耳蜗的移位情况。