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Spatial Analysis of Electrode Proximity to Lateral Wall and Its Impact on ECAP Amplitudes: An OTOPLAN-Based Study
Mariam Aljehani1,2, Moayyad Malas1,2, Shahad Alsanosi2
1Department of Otolaryngology-Head and Neck Surgery, College of Medicine, King Saud University.
Background:
Precise electrode positioning is essential for optimizing cochlear implant outcomes. However, the impact of electrode-to-lateral wall distance on neural responsiveness remains unclear.
Objective:
To investigate whether electrode proximity to the lateral wall influences electrically evoked compound action potential (ECAP) amplitudes.
Methods:
A retrospective cohort of 44 implanted ears with lateral wall electrodes was analyzed. High-resolution computed tomography scans were processed using OTOPLAN to measure electrode-to-lateral wall distances. Postoperative ECAPs were recorded, and correlations between distance and ECAP amplitudes were assessed at overall, channel-specific, and regional levels.
Results:
Electrode-to-lateral wall distances ranged from 1.91 to 3.61 mm, and ECAP amplitudes from 9.93 to 16.98 μV. A significant positive correlation was found across all electrode-ear pairs ( r =+0.58, P <0.001), indicating higher amplitudes with greater distances. Channel-level analysis showed a stronger association ( r =+0.76, P =0.004), while regional analysis identified the middle cochlear region as the primary contributor ( r =+0.34, 95% CI: 0.08-0.55).
Conclusion:
Greater electrode-to-lateral wall distances are associated with higher ECAP amplitudes, particularly in the middle cochlear region. These findings suggest that greater electrode-to-modiolar proximity, as achieved with perimodiolar arrays or cochlear morphology that positions electrodes further from the lateral wall, may enhance neural responsiveness. Electrode-to-lateral wall distance may serve as a clinically actionable spatial metric for anticipating ECAP responses and optimizing stimulation strategies in cochlear implant programming.
