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Updated: Jan 2, 2026

Augmented Reality Navigation-Guided Core Decompression for Osteonecrosis of Femoral Head
Published on: April 12, 2022
Nontraumatic avascular necrosis of the femoral head : Arthroscopic and navigation-supported core decompression
Jan Theopold1, Sarah Armonies2, Philipp Pieroh2
1Department of Orthopedic, Trauma and Plastic Surgery, Division of Arthroscopy, Joint Surgery and Sport Injuries, University of Leipzig, Liebigstraße 20, 04103, Leipzig, Germany. jan.theopold@medizin.uni-leipzig.de.
Insights
This study introduces fluoro-free navigated arthroscopic core decompression for femoral head pathologies, enabling simultaneous treatment and reduced radiation exposure for improved patient outcomes.
Area of Science:
- Orthopedic Surgery
- Hip Arthroscopy
- Femoral Head Pathologies
Background:
- Core decompression is a treatment for femoral head pathologies.
- Conventional methods may involve significant radiation exposure.
- Addressing concurrent pathologies during decompression can be challenging.
Purpose of the Study:
- To evaluate the efficacy of fluoro-free navigated arthroscopic core decompression for femoral head pathologies.
- To assess the ability to treat concurrent hip joint pathologies during the same procedure.
- To determine the impact on intraoperative radiation exposure.
Main Methods:
- Arthroscopically navigated core decompression using an optoelectronic system with fluoro-free software.
- Hip joint arthroscopy performed first, followed by navigated core decompression.
- Multiple drillings (3-5 times) guided to the target area.
Main Results:
- Seven patients (ARCO stages II-III) underwent the procedure.
- All patients experienced preoperative load-dependent pain.
- Synovitis was identified and treated in all cases; 4 patients had labral lesions addressed.
Conclusions:
- Fluoro-free navigation allows precise drilling for core decompression.
- Simultaneous treatment of additional pathologies is feasible.
- Reduced intraoperative radiation exposure for patients and staff.
- Arthroscopically assisted core decompression offers advantages over conventional surgery despite increased preparation time.
Objective:
The aim is to address core decompression and pathologies of the femoral head, treating them during the same procedure. Furthermore, radiation exposure will be reduced.
Indications:
Femoral head necrosis ARCO (Association Research Circulation Osseous) stages I-III.
Contraindications:
Progressive femoral head necrosis as ARCO stages IIIC-IV.
Surgical Technique:
Arthroscopically navigated core decompression of the femoral head using an established optoelectronic system with fluoro-free software module. First, hip joint arthroscopy was performed and further pathologies were treated. Second, core decompression was navigated by a navigation pointer and drill sleeve to reach the correct target point. After visualization, the procedure is repeated 3-5 times.
Postoperative Management:
Limited weight bearing of the operated leg (20 kg) for 10-14 days. Active or passive continuous motion machine for 4 weeks. Adjuvant postoperative indomethacin therapy for 10 days to reduce pain and bone marrow edema.
Results:
From May 2018 to January 2019, 7 patients (male = 4; 40 ± 9 years) underwent arthroscopically navigated core decompression with 2 (29%) and 5 (71%) patients being classified as ARCO II and III, respectively. Preoperatively, all patients reported load-dependent pain. In all cases, we could identify synovitis, which results in soft tissue release and synovectomy. Furthermore, 4 of 7 patients had an additional labrum lesion, which is addressed by refixation or shrinking.
Discussion:
Compared to the conventional technique, this fluoro-free navigation procedure allows more precise drilling. Moreover, additional pathologies, as found in all our cases, could be simultaneously addressed. The intraoperative radiation exposure for the patient and surgical team could also be reduced. Although arthroscopically assisted core decompression requires more preparation time, there are advantages over conventional surgery.
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