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Updated: Jan 15, 2026

Cone Beam Intraoperative Computed Tomography-based Image Guidance for Minimally Invasive Transforaminal Interbody Fusion
Published on: August 6, 2019
Intraoperative 3D Fluoroscopy Reduces Revision Rates and Improves Reduction Quality in Acetabular Fracture Fixation
Marie Le Baron1, Guillaume David, Byron A Ward
1Department of Orthopedics, Denver Health Medical Center; Denver, CO.
Objectives:
To evaluate whether the use of intraoperative 3D fluoroscopy during acetabular fracture fixation reduces the rate of unplanned returns to the operating room and improves radiographic quality of reduction without increasing operative time or blood loss.
Design:
Retrospective comparative study.
Setting:
Single urban Level I trauma center.
Patient Selection Criteria:
Patients with operatively treated acetabular fractures (OTA/AO 62) between 2017 and 2025. Patients were divided into 2 cohorts: those treated before and after the implementation of intraoperative 3D fluoroscopy (Cios Spin, Siemens, Germany).
Outcome Measures And Comparisons:
Primary outcome was the rate of unplanned return to the operating room. Secondary outcomes included postoperative residual joint gap, presence of intra-articular loose bodies, implant malposition, operative time, and estimated blood loss (EBL). These outcomes were compared between the 2 cohorts.
Results:
177 patients were included between 2017 and 2025, 148 patients treated before (control group) and 29 after the implementation of intraoperative 3D fluoroscopy (3D fluoro group). The mean age as 41.1 ± 17.4 years in the control group with 117 men (79%) versus 42.8 ± 18.1 years ( P = 0.55) in the 3D fluoro group, with 20 men (68.9%, P = 0.34). The rate of unplanned return to the operating room was significantly lower in the 3D fluoroscopy group (0%) compared with the control group (15.5%) ( P = 0.01). Postoperative CT scan (obtained in 148/148 in the control group and 22/29 in the 3D fluoroscopy group) demonstrated better fracture reduction in the 3D fluoroscopy group (mean residual gap: 3.4 ± 1.9 mm vs. 4.5 ± 2.4 mm; P = 0.03). There were no significant differences in operative time (200.6 ± 99.8 vs. 221.2 ± 114.4; P = 0.49) or EBL (641.6 ± 637.1 vs. 674 ± 572; P = 0.67) between groups. Intraoperative findings seen on the 3D fluoroscopy such as malreduction, loose bodies, or misplaced hardware led to modification of the surgical plan in 29% of cases where the 3D fluoroscopy was used.
Conclusions:
The use of intraoperative 3D fluoroscopy allowed intraoperative identification and correction of malreductions, implant malposition, and removal of loose bodies, reducing the need for revision surgery and improving quality of reduction in acetabular fracture fixation. Its use did not increase operative time or blood loss, suggesting clinical and potentially economic benefits that may support broader adoption.
Level Of Evidence:
Therapeutic Level III. See Instructions for Authors for a complete description of levels of evidence.

