Background: Over the past two decades, modern spine surgery has become increasingly intellectualized and minimally invasive. However, whether using robots in spine surgery results in more accurate pedicle screw placement remains a topic of debate. This study aimed to evaluate the certainty and quality of the available evidence on the efficacy of robot-assisted pedicle screw placement.
Methods: We performed an overview of reviews including systematic reviews (SRs) and meta-analyses (MAs) regarding the accuracy of robot-assisted pedicle screw placement. Regarding the SRs/MAs, five electronic databases were searched from inception to 28 April 2023. There were no restrictions on the language or population. The quality and certainty of the evidence were evaluated with PRISMA, AMSTAR-2, ROBIS, Veritas plot, and GRADE tools.
Results: Fifteen SRs/MAs were analyzed. The findings indicated that the accuracy of pedicle screw placement in the robot-assisted group was not superior to that in the freehand group. All the SRs/MAs were of low or critically low quality. The main reasons for this include missing data, lack of transparency, lack of sensitivity analysis, and measurement of heterogeneity in the included studies, registration of reporting protocols, and deficiencies in the study inclusion methods and selection criteria.
Conclusions: While there is potential for robot-assisted pedicle screw placement to offer superior accuracy compared to conventional surgery, the current evidence is limited by methodological shortcomings. The quality of the studies analyzed was insufficient to provide a robust basis for developing clinical guidelines. Further high-quality research is necessary to confirm the benefits and establish clearer recommendations.
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http://dx.doi.org/10.1530/EOR-24-0062 | DOI Listing |
J Neurosurg Spine
January 2025
2Anesthesiology, University of Miami Miller School of Medicine, Miami, Florida.
Objective: Awake, endoscopic spinal fusion has been utilized as an ultra-minimally invasive surgery technique to accomplish the goals of spinal fixation, fusion, and disc height restoration. While many techniques exist for this approach, this series represents a single institution's experience with a large cohort and the evolution of this method.
Methods: The medical records of a consecutive series of 400 patients treated over a 10-year period were retrospectively reviewed.
Clin Spine Surg
December 2024
Department of Orthopaedic Surgery, Keio University School of Medicine, Shinjyuku, Tokyo.
Study Design: Multicenter retrospective cohort study.
Objective: To evaluate the efficacy and safety of using cement-augmented pedicle screw (CAPS) fixation only for the cephalad and caudal vertebral bodies.
Summary Of Background Data: Pedicle screw fixation is less effective in patients with low-quality bone.
Acta Chir Orthop Traumatol Cech
January 2025
Neurochirurgická klinika Fakultní nemocnice Olomouc.
Purpose Of The Study: The annual number of spinal fusion procedures has been increasing and is well documented worldwide. The O-arm is slowly becoming the standard for transpedicular screw insertion. The accuracy and safety of this method have been confirmed by many studies.
View Article and Find Full Text PDFEur Spine J
January 2025
In Silico Biomechanics Laboratory, National Center for Spinal Disorders, Buda Health Center, Budapest, Hungary.
Purpose: The objective of this systematic review is to present a comprehensive summary of existing research on the use of 3D printing in spinal surgery.
Methods: The researchers conducted a thorough search of four digital databases (PubMed, Web of Science, Scopus, and Embase) to identify relevant studies published between January 1999 and December 2022. The review focused on various aspects, including the types of objects printed, clinical applications, clinical outcomes, time and cost considerations, 3D printing materials, location of 3D printing, and technologies utilized.
Medicina (Kaunas)
December 2024
Division of Spine, Department of Orthopaedic Surgery, Tan Tock Seng Hospital, Singapore 308433, Singapore.
Spine surgery has undergone significant advancements, particularly with regard to robotic systems that enhance surgical techniques and improve patient outcomes. As these technologies become increasingly integrated into surgical practice, it is essential to evaluate their added value and cost savings. Hence, this study compared robot-assisted and navigation-based spine surgery, focusing on surgical efficiency.
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