Background: Pediatric orbital floor fractures differ from adult injuries due to bone elasticity and a higher incidence of trapdoor-type defects with extraocular muscle entrapment, often presenting with limited external signs but carrying a high risk of functional impairment. Early recognition and prompt surgical release are essential to prevent irreversible neuromuscular damage and persistent binocular vision disturbances. Case Presentation: A 13-year-old patient sustained an orbital floor blow-out fracture with inferior rectus muscle incarceration following blunt trauma. The child presented with vertical diplopia, ocular motility restriction, and infraorbital hypoesthesia. Computed tomography demonstrated a posteriorly located linear orbital floor defect with soft-tissue entrapment, supporting the indication for urgent surgical intervention to avoid ischemic injury. Management and Outcome: Through a transconjunctival retroseptal approach, the entrapped muscle was promptly released, and orbital floor continuity was restored using an autologous bone graft harvested from the anterior maxillary wall with piezosurgery. This technique allowed controlled and precise bone harvesting while preserving adjacent anatomical and developing dental structures. Postoperative recovery was uneventful, with complete resolution of diplopia and full restoration of binocular ocular motility during follow-up. Conclusion: Early surgical intervention plays a pivotal role in achieving functional recovery in pediatric orbital floor fractures with muscle entrapment. Autologous reconstruction supported by piezosurgical bone harvesting represents a safe and effective approach in growing patients, providing reliable functional and anatomical outcomes. This case reinforces the clinical relevance of timely intervention and highlights practical considerations in pediatric orbital trauma management.
Gąsiorowski et al. (Wed,) studied this question.