Patient-Specific 3D Virtual Surgical Planning Using Simulated Fluoroscopic Images to Improve Sacroiliac Joint Fusion

Author:

Kampkuiper Nick123ORCID,Nellensteijn Jorm3,Hekman Edsko1ORCID,Tuijthof Gabriëlle1ORCID,Lankheet Steven123,Koenrades Maaike24,Schröder Femke123ORCID

Affiliation:

1. Department of Biomechanical Engineering, Faculty of Engineering Technologies, University of Twente, 7522 NB Enschede, The Netherlands

2. Medical 3D Lab, Medical Spectrum Twente, 7512 KZ Enschede, The Netherlands

3. Department of Orthopedic Surgery, Medical Spectrum Twente, 7512 KZ Enschede, The Netherlands

4. Multi-Modality Medical Imaging (M3i) Group, Faculty of Science and Technology, Technical Medical Center, University of Twente, 7522 NB Enschede, The Netherlands

Abstract

Sacroiliac (SI) joint dysfunction can lead to debilitating pain but can be treated with minimally invasive sacroiliac joint fusion (SIJF). This treatment is commonly performed using 2D fluoroscopic guidance. This makes placing the implants without damaging surrounding neural structures challenging. Virtual surgical planning (VSP) using simulated fluoroscopic images may improve intraoperative guidance. This article describes a workflow with VSP in SIJF using simulated fluoroscopic images and evaluates achieved implant placement accuracy. Ten interventions were performed on 10 patients by the same surgeon, resulting in a total of 30 implants; the median age was 39 years, and all patients were female. The overall mean implant placement accuracy was 4.9 ± 1.26 mm and 4.0 ± 1.44°. There were no malpositioning complications. VSP helped the surgeon understand the anatomy and determine the optimal position and length of the implants. The planned positions of the implants could be reproduced in surgery with what appears to be a clinically acceptable level of accuracy.

Publisher

MDPI AG

Subject

General Medicine

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