4.4 Article

Augmented Reality Navigation-Guided Core Decompression for Osteonecrosis of Femoral Head

Journal

JOVE-JOURNAL OF VISUALIZED EXPERIMENTS
Volume -, Issue 182, Pages -

Publisher

JOURNAL OF VISUALIZED EXPERIMENTS
DOI: 10.3791/63806

Keywords

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Funding

  1. Beijing Natural Science Foundation [7202183]
  2. National Natural Science Foundation of China [81972107]
  3. Beijing Municipal Science and Technology Commission [D171100003217001]

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The intraoperative navigation system based on augmented reality technology can improve the efficiency of positioning and fluoroscopy in core decompression surgery and reduce collateral damage.
Osteonecrosis of the femoral head (ONFH) is a common joint disease in young and middle-aged patients, which seriously burdens their lives and work. For early-stage ONFH, core decompression surgery is a classical and effective hip preservation therapy. In traditional procedures of core decompression with Kirschner wire, there are still many problems such as X-ray exposure, repeated puncture verification, and damage to normal bone tissue. The blindness of the puncture process and the inability to provide real-time visualization are crucial reasons for these problems. To optimize this procedure, our team developed an intraoperative navigation system on the basis of augmented reality (AR) technology. This surgical system can intuitively display the anatomy of the surgical areas and render preoperative images and virtual needles to intraoperative video in real-time. With the guide of the navigation system, surgeons can accurately insert Kirschner wires into the targeted lesion area and minimize the collateral damage. We conducted 10 cases of core decompression surgery with this system. The efficiency of positioning and fluoroscopy is greatly improved compared to the traditional procedures, and the accuracy of puncture is also guaranteed.

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