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Published on: December 15, 2023
Development of Air Cell System Following Canal Wall Up Mastoidectomy for Pediatric Cholesteatoma
Yusuke Yamada1,2, Akira Ganaha2,3, Nao Nojiri1,2
1Department of Otolaryngology, International University of Health and Welfare, Tochigi 324-8501, Japan.
Insights
Newly developed air cells were observed in children after canal wall up (CWU) tympanomastoidectomy for cholesteatoma. This suggests that CWU surgery may promote temporal bone pneumatization, particularly in younger patients with congenital cholesteatoma.
Area of Science:
- Otolaryngology
- Pediatric Surgery
- Radiology
Background:
- Temporal bone pneumatization is influenced by the middle ear environment.
- Otitis media in early childhood can suppress air cell development.
- The potential for air cell formation after mastoidectomy during pneumatization is not well understood.
Purpose of the Study:
- To evaluate temporal bone pneumatization following canal wall up (CWU) tympanomastoidectomy in pediatric patients with middle ear cholesteatoma.
- To compare pneumatization between congenital cholesteatoma (CC) and acquired cholesteatoma (AC) groups.
Main Methods:
- Retrospective analysis of 63 pediatric patients (29 CC, 34 AC) using pre- and postoperative CT scans.
- Assessment of air cell presence in five defined temporal bone areas: periantral (anterior, posterior, medial), peritubal, and petrous apex.
- Comparison of the number of air cell areas before and after CWU tympanomastoidectomy.
Main Results:
- Significant differences in postoperative air cell presence were found in both CC and AC groups.
- The congenital cholesteatoma group demonstrated notably better postoperative pneumatization compared to the acquired cholesteatoma group.
- A negative correlation was observed between age at surgery and air cell development in the CC group (r = -0.584, p < 0.001).
- The petrous apex area showed the lowest rate of postoperative pneumatization in both groups.
Conclusions:
- Newly formed air cells were identified in the temporal bone after CWU mastoidectomy for pediatric cholesteatoma.
- CWU tympanomastoidectomy may be a justifiable procedure, especially for younger children and those with congenital cholesteatoma, as it can lead to the development of air cell systems post-surgery.
Abstract:
Background: The development of temporal bone pneumatization is related to the postnatal middle ear environment, where the development of air cells is suppressed with otitis media in early childhood. However, whether air cell formation restarts when mastoidectomy is performed during temporal bone pneumatization remains unclear. Herein, we evaluated temporal bone pneumatization after canal wall up (CWU) tympanomastoidectomy for middle ear cholesteatoma in children. Methods: In total, 63 patients, including 29 patients with congenital cholesteatoma (CC) and 34 patients with acquired cholesteatoma (AC), were assessed using a set of pre- and postoperative computed tomography images. The air cells of the temporal bone were divided into five areas: periantral (anterior), periantral (posterior), periantral (medial), peritubal, and petrous apex. The number of areas with air cells before and after surgery was compared to evaluate temporal bone pneumatization after surgery. Results: A total of 63 patients, comprising 29 with CC and 34 with AC (pars flaccida; 23, pars tensa; 7, unclassified; 4), were evaluated. The median age of patients (18 males and 11 females) with CC was 5.0 (range, 2-15 years), while that of the AC group (23 males and 11 females) was 8 (range, 2-15 years). A significant difference in air cell presence was identified in the CC and AC groups after surgery (Mann-Whitney U, p < 0.001 and p = 0.003, respectively). Between the two groups, considerably better postoperative pneumatization was observed in the CC group. A correlation between age at surgery and gain of postoperative air cell area development was identified in the CC group (Spearman's rank-order correlation coefficient, r = -0.584, p < 0.001). In comparison with the postoperative pneumatization rate of each classified area, the petrous apex area was the lowest in the CC and AC groups. Conclusions: Newly developed air cells were identified in the temporal bones after CWU mastoidectomy for pediatric cholesteatoma. These findings may justify CWU tympanomastoidectomy, at least for younger children and CC patients, who may subsequently develop air cell systems after surgery.
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