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Reconstructive Operation of Severe Orbital Hypertelorism With Computer-Assisted Precise Virtual Plan.

Long Ouyang1, Binghang Li, Shixing Xu

  • 1Plastic Surgery Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

The Journal of Craniofacial Surgery
|October 11, 2022
PubMed
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Computer-assisted technology improves orbital hypertelorism correction accuracy and outcomes. This method enhances surgical precision, reduces risks, and shortens operative time for better results in craniofacial surgery.

Area of Science:

  • Craniofacial Surgery
  • Medical Technology
  • 3D Imaging

Background:

  • Orbital hypertelorism correction traditionally lacks precision, heavily relying on surgeon experience.
  • Computer-assisted technology is increasingly integrated into craniofacial surgical procedures.

Purpose of the Study:

  • To evaluate the clinical outcomes of computer-assisted technology in orbital hypertelorism correction.
  • To discuss the advantages and effectiveness of this technology in surgical treatment.

Main Methods:

  • Four patients with orbital hypertelorism underwent combined intracranial and extracranial box osteotomy.
  • Preoperative CT scans and 3D digital technology were used for virtual surgical planning and intraoperative guidance.
  • 3D cutting schemes were designed and implemented to enhance periorbital osteotomy accuracy.

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Main Results:

  • Successful surgical correction was achieved in all four patients.
  • The average medial orbital wall distance decreased significantly from 43.6 mm to 23.4 mm.
  • Computer-assisted box osteotomy demonstrated reduced operative time and improved corrective outcomes.

Conclusions:

  • Computer-assisted technology offers enhanced precision and effectiveness for orbital hypertelorism correction.
  • This approach minimizes surgical risks and improves patient outcomes in craniofacial reconstruction.
  • The integration of 3D digital technology represents a significant advancement in treating orbital hypertelorism.