Aug 2026· Frontiers in Neurology· Vol 17· 0 citations· 33 references
Medicine
Abstract
Objective To evaluate the feasibility and clinical efficacy of patient-specific 3D-printed guide plates for pedicle screw placement in the upper cervical spine, compared with the conventional free-hand technique. Methods A retrospective analysis was conducted on 39 patients who underwent upper cervical spine surgery between June 2009 and June 2022. Patients were divided into a guide plate group (n = 24) and a free-hand control group (n = 15). Surgical parameters (operative time, blood loss, fluoroscopy frequency), screw placement accuracy (assessed by Kawaguchi classification on postoperative CT), and clinical outcomes (VAS, JOA, and ASIA scores) were compared between groups. Results A total of 141 pedicle screws were placed. The guide plate group achieved a significantly higher rate of perfect screw placement (81.8 vs. 62.3%, P = 0.009) and fewer grade 2 cortical breaches. Operative time, blood loss, and fluoroscopy exposure were significantly reduced in the guide plate group (all P < 0.05). Both groups showed significant postoperative improvements in all clinical scores (P < 0.05), with no significant intergroup differences at final follow-up. Conclusion Patient-specific 3D-printed guide plates significantly improve screw placement accuracy and reduce operative time, blood loss, and radiation exposure in upper cervical spine surgery, while achieving clinical outcomes comparable to the free-hand technique. This method is a safe and effective alternative for upper cervical pedicle screw fixation.
Pedicle screw fixation is widely utilized for lumbar stabilization, but deviation from the planned pedicle corridor may result in cortical breach and neurovascular injury. Individualized 3D-printed guides may help transfer preoperative planning to screw insertion. However, their guiding performance and measurement reli...
Zhi-Hao Qin, Jia-Ming Tan, Fan Yang et al.· Proceedings of the Instituti...· 0 citations
BACKGROUND
Accurate pedicle screw placement is essential to prevent neurovascular injury, revision surgery, and excess healthcare costs. While navigation and robotic systems enhance accuracy over freehand or fluoroscopic techniques, they remain limited by high cost and patient radiation exposure. Three-dimensional prin...
Shehab Eid, Navid Ghaderi, R. Koucheki et al.· The spine journal· 0 citations
STUDY DESIGN
Retrospective comparative cohort study.
INTRODUCTION
Accurate pedicle screw placement is critical for spinal stability and for preventing neurological or vascular injury. This study compared screw-placement accuracy and safety between robot-assisted and navigation-guided pedicle screw implantation and ex...
Ali Mulhem, Lennart Schreiweis, H. Krenzlin et al.· European spine journal· 0 citations
Background: Accurate pedicle screw placement is critical for successful thoracolumbar spine fixation. Misplacement can lead to complications such as neurological injury, vascular damage, and the need for revision surgeries. The use of 3D intraoperative imaging and navigation systems, such as the O-arm and Stealth syste...
R. Gupta, Swaroop Patel, A. K. Jha et al.· International Journal of Res...· 0 citations
Unicompartmental knee arthroplasty (UKA) is an effective treatment for medial compartment knee osteoarthritis, with its outcomes highly dependent on the accuracy of prosthesis positioning. Conventional UKA, performed using traditional instrumentation, often relies heavily on surgical experience and may lead to variabil...
Kun Zhang, Jin-Hua Zhang, Shang Gao et al.· 3D Printing in Medicine· 0 citations
BACKGROUND
Patient-specific instrumentation (PSI) may improve implant positioning in total ankle arthroplasty (TAA), but three-dimensional validation with postoperative weightbearing CT (WBCT) remains limited. This study assessed the accuracy of the INBONE Prophecy system.
METHODS
Fifty-four patients undergoing INBON...
Riccardo Garibaldi, John E. Lama, Jensen K. Henry et al.· Foot and Ankle Surgery· 0 citations
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