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Adverse events in pediatric cochlear implant patients undergoing magnetic resonance imaging
Sara C Gallant1, Amy R Danehy2, Greg R Licameli1
1Boston Children's Hospital, Department of Otolaryngology and Communication Sciences, USA.
Insights
Magnetic resonance imaging (MRI) in pediatric cochlear implant (CI) patients can lead to adverse events, including pain and device issues, even with precautions. Safety requires tailored considerations for this unique population.
Area of Science:
- Medical Imaging
- Otolaryngology
- Pediatric Healthcare
Background:
- Pediatric cochlear implant (CI) patients require magnetic resonance imaging (MRI) for various medical evaluations.
- The safety and efficacy of MRI in this population, particularly concerning adverse events, require thorough investigation.
Purpose of the Study:
- To determine the prevalence and characteristics of adverse events during MRI in pediatric CI patients.
- To identify factors contributing to adverse events and assess MRI quality in this cohort.
Main Methods:
- Retrospective chart review of pediatric CI patients undergoing MRI from 2004-2019.
- Data collected included patient demographics, CI details, MRI parameters, precautions, anesthesia use, and adverse events.
- Literature review and comparison with previous studies.
Main Results:
- 22 MRIs were performed on 12 pediatric CI patients; 12 MRIs retained the internal magnet.
- Four MRIs resulted in morbidity: pain leading to abortion (2), magnet rotation (1), and magnet removal/replacement (1).
- Artifacts limited evaluation in 17/22 MRIs; anesthesia was required for 18/22.
Conclusions:
- Adverse events can occur in pediatric CI patients undergoing MRI despite precautions.
- Safety necessitates consideration of factors specific to pediatric hearing-impaired individuals.
- Clinicians must stay updated on best practices and manufacturer guidelines for CI MRI safety.
Objective:
To investigate the prevalence and nature of adverse events in magnetic resonance imaging (MRI) of pediatric cochlear implant (CI) patients.
Methods:
Retrospective chart review at a tertiary pediatric hospital. CI patients who underwent MRI from 2004 through 2019 were identified via our internal radiology database. Comorbidities, CI model, age at MRI, number of MRIs, type of MRIs, indication for MRIs, precautions taken for MRIs, quality of MRIs, anesthesia during MRIs, patient language abilities, and adverse events were recorded from the electronic medical record. The literature was reviewed, and our results were compared to those of previous similar series.
Results:
From 2004 to 2019, 12 pediatric patients (17 ears) with CIs underwent 22 MRIs. 12 MRIs were performed in CI patients with retained internal magnet. 4/22 MRIs resulted in morbidity; 2 patients experienced pain requiring MRI abortion, 1 experienced magnet rotation requiring surgical replacement, and 1 underwent operative removal of the magnet prior to the scan with surgical replacement thereafter. 19/22 MRIs were performed to evaluate the brain; 17/22 of the radiologic reports noted limitation of evaluation due to artifact. 18/22 MRIs required the administration of anesthesia. 9 of the 22 MRI events involved 2 patients whose CIs had been without internal magnet in anticipation of future MRI requirement.
Conclusions:
Adverse events affecting pediatric patients with CI can occur as a result of MRI, despite appropriate precautions. Safety requires consideration of factors unique to a pediatric hearing-impaired population. Clinicians must remain informed on best practices and manufacturer recommendations.
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