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Updated: Aug 2, 2025

Robotic Cochlear Implantation for Direct Cochlear Access
Published on: June 16, 2022
Utility of Intraoperative Radiographs in Pediatric Cochlear Implant Surgery
Emily Savoca1,2, Brandon Smith1, Amber D Shaffer1
1UPMC Children's Hospital of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Insights
Intraoperative X-rays are crucial for confirming electrode placement during pediatric cochlear implantation (CI). The Slim Modiolar electrode showed a higher risk of malposition, highlighting the need for routine imaging.
Area of Science:
- Otolaryngology
- Neurosurgery
- Medical Imaging
Background:
- Pediatric cochlear implantation (CI) aims to restore hearing in children with severe to profound hearing loss.
- Accurate electrode placement is critical for optimal CI outcomes.
- Intraoperative assessment of electrode position is essential to prevent complications.
Purpose of the Study:
- To evaluate the diagnostic role of intraoperative radiographs in confirming electrode position after pediatric cochlear implantation (CI).
- To assess the association between specific electrode types and the risk of malposition.
- To determine the impact of intraoperative imaging on surgical management.
Main Methods:
- Retrospective chart review of pediatric CI cases over a 13-year period at a single tertiary care center.
- Analysis of 492 procedures in 326 patients, focusing on electrode position and surgical interventions.
- Comparison of electrode malposition rates and management changes between Cochlear's Slim Modiolar and Contour Advance (CA) electrodes.
Main Results:
- Seven cases (1.4%) required intraoperative electrode reinsertion due to malposition.
- Intraoperative X-rays identified malposition in 6 of the 7 cases.
- The Slim Modiolar electrode was associated with a significantly higher incidence of abnormal X-rays (4%) and malposition compared to the CA electrode (0.3%).
- Electrode fold-over was identified on X-ray in all 4 cases involving the Slim Modiolar electrode requiring reinsertion.
Conclusions:
- Intraoperative radiographs are effective in identifying electrode malposition during pediatric CI.
- The Slim Modiolar electrode presents a higher risk of malposition, particularly electrode fold-over, compared to the CA electrode.
- Routine use of intraoperative skull X-rays is recommended to confirm electrode position, especially with the Slim Modiolar electrode, to ensure optimal surgical outcomes.
Objective:
To evaluate the role of intraoperative radiographs to confirm electrode position following pediatric cochlear implantation (CI).
Study Design:
Retrospective chart review.
Setting:
Single tertiary care pediatric center.
Methods:
A retrospective chart review was conducted, including all pediatric patients undergoing CI at UPMC Children's Hospital of Pittsburgh over a 13-year period.
Results:
We identified 326 patients undergoing 492 procedures. Across the cohort, there were 7 cases that required intraoperative electrode reinsertion due to malposition or presumed malposition. For 6 of the 7 cases, intraoperative X-ray identified electrode malposition. Neural response telemetry (NRT) testing was also abnormal for 4 of these cases prior to reinsertion. Implantation of Cochlear's Slim Modiolar electrode was associated with an abnormal perioperative X-ray (odds ratio [OR]: 9.2, p = 0.03) and increased change in management (OR: 9.2, p = 0.03) compared to Cochlear's Contour Advance (CA). Incidence of abnormal X-rays was 1.24% overall, 4% in the Slim Modiolar group, and 0.3% in the CA group. The Slim Modiolar electrode accounted for 4 of 7 cases requiring reinsertion, and in all 4 of these cases, electrode fold-over was identified on the X-ray. NRT was normal in 1 of these 4 cases.
Conclusion:
The use of Cochlear's Slim Modiolar electrode was associated with a significantly increased risk of abnormal intraoperative X-ray compared to the CA electrode. Given the risk of fold-over with routine insertion and normal electrical testing using the Slim Modiolar electrode, we recommend routine use of intraoperative skull X-ray to confirm electrode position.

