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May 7, 2026Journal of Craniofacial Surgery0 citations

Algorithm-Based Reconstruction for Pediatric Mandibular Desmoid Tumors: Two Decades From a Single Institution

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MGMeryem GulerCKCaroline KrehAMArtur Manasyan

Key Points

  • To analyze the algorithm-based reconstruction approach in pediatric mandibular desmoid tumors and its impact on surgical outcomes.
  • Retrospective review of biopsy-proven pediatric desmoid tumors treated at a tertiary children's hospital from 2004-2024.
  • Mapping of cases to an institutional algorithm-based reconstructive pathway with a mandibular resection index.
  • Assessment of pathway assignments, transitions, and cumulative operative burden.
  • Eight mandibular cases were included with varying initial pathway assignments.
  • Patients requiring pathway escalation showed increased hospitalization and operative time compared to initial assignments.
  • Findings highlight the importance of recognizing failure modes to improve reconstruction timing and reduce surgical burden.

Abstract

Pediatric mandibular desmoid tumors are rare, locally aggressive lesions that can create composite defects in a growing craniofacial skeleton. We retrospectively reviewed biopsy-proven pediatric desmoid tumors involving the mandible region treated at a tertiary children's hospital (2004-2024) and mapped each case to an institutional, algorithm-based reconstructive pathway (A-D) incorporating a mandibular resection index (RI; threshold 32%) and 2 modifiers (modifier 1: systemic therapy/radiotherapy; modifier 2: staged bony reconstruction for inadequate bone stock). We summarized pathway assignments, transitions over time, and cumulative operative burden. Eight mandibular cases were included in the algorithm analysis. Initial pathway assignments were A (n=4), B (n=3), C (n=1), and D (n=0). Modifier 1 was applied in 2/8 (25%) and modifier 2 in 4/8 (50%). During follow-up, 4/8 patients escalated to a higher pathway (A→B→C, B→C, B→D, C→D). Among 7 operative patients, median age at index reconstructive surgery was 5.1 years (range: 0.9-11.9), with mean cumulative hospitalization of 25.1±21.8 days and mean cumulative operative time of 18.4±12.7 hours. Patients requiring pathway escalation had higher cumulative burden (hospitalization 34.0±21.8 days; operative time 26.5±10.6 hours; median 5 operations). Algorithm-based pathway assignment captures the longitudinal reconstructive reality of pediatric mandibular desmoid tumors. Early recognition of predictable failure modes (infection, hardware compromise, and inadequate bone stock) may help teams select definitive reconstruction earlier in select patients and reduce cumulative surgical burden.

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Cite This Study

Guler et al. (2026) studied this question.

synapsesocial.com/papers/69fbefd5164b5133a91a3eafhttps://doi.org/10.1097/scs.0000000000012808
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