Modified interfacet technique using shaped autologous occipital bone mass for basilar invagination

Clin Neurol Neurosurg. 2023 Sep:232:107848. doi: 10.1016/j.clineuro.2023.107848. Epub 2023 Jun 22.

Abstract

Purpose: In economically undeveloped areas, surgery for basilar invagination (BI) is still a serious economic burden for people. This study introduces a modified interfacet technique for the treatment of BI using shaped autologous occipital bone mass to reduce BI and to save economical expenditure.

Methods: The data of 6 patients with BI who underwent modified interfacet technique using shaped autologous occipital bone mass in our hospital from April 2020 to February 2021 were retrospectively analyzed. During the operation, osteotomy at the external occipital protuberance was performed using ultrasonic osteotome, followed by interfacet release and implantation of shaped autologous occipital bone mass to complete vertical reduction. The atlantodental interval (ADI), Chamberlain's line violation (CLV), clivo-axial angle (CXA) and cervico-medullary angle (CMA) were compared before and after surgery. Additionally, we observed implant stability during the follow-up period to assess the long-term success of the modified interfacet technique.

Results: The surgical procedure was successful in all six patients, with no reported incidents of vascular injury, spinal cord injury, or dural tear. Following the operation, improvements were observed in the ADI, CLV, CXA, and CMA. Throughout the follow-up period, the implants remained stable, demonstrating no complications such as bone resorption of the autologous occipital bone mass, implant fracture, or displacement.

Conclusion: The utilization of shaped autologous occipital bone mass in atlantoaxial interfacet bone grafting has demonstrated effectiveness and feasibility. This technique offers simplicity, ease of preparation, and cost-effectiveness, making it a viable option for treating BI.

Keywords: Atlantoaxial dislocation; Basilar invagination; Bone graft; Interfacet fusion; Interfacet technique.

MeSH terms

  • Atlanto-Axial Joint* / surgery
  • Humans
  • Joint Dislocations* / surgery
  • Occipital Bone / diagnostic imaging
  • Occipital Bone / surgery
  • Platybasia* / surgery
  • Retrospective Studies
  • Spinal Fusion* / methods