Evaluation of the Accuracy of the eCential Robotics Robot in Spinal Surgery
Evaluation of the Accuracy of the eCential Robotics Robot in Spinal Surgery at Amiens Picardie University Hospital
Centre Hospitalier Universitaire, Amiens
45 participants
Nov 21, 2025
INTERVENTIONAL
Conditions
Summary
Spinal surgery has evolved considerably over the years, and the introduction of advanced technologies has played a crucial role in improving clinical outcomes. The use of surgical robots, such as the eCential Robotic system, has emerged as an innovative solution for optimizing the precision and safety of procedures, particularly the placement of pedicle screws in the spine. The eCential Robotics surgical robot offers several advantages for the placement of pedicle screws in the spine. Various studies have demonstrated a significant improvement in screw accuracy and stability, reducing revision surgery rates with surgical robots. The system enables advanced preoperative planning based on three-dimensional imaging, improving understanding of the patient's specific anatomy. This study will also provide a clinical basis for the CE marking process. The objective of this prospective study is to collect data confirming safety, performance and clinical benefits of the eCential Robotics robot when used during spine and pelvic surgeries.
Eligibility
Plain Language Summary
Simplified for easier understanding
This summary was AI-generated to explain the trial in plain language. It is not medical advice. Always discuss eligibility with your doctor before enrolling in a clinical trial.
Interested in this trial?
Get notified about updates and connect with the research team.
Interventions
The robotic aid is adaptable to all cannulated pedicle screw implantations in spine surgery. The eCential Robotics solution consists of a unified platform combining 2D/3D imaging, navigation and robotics. The procedure consists of : * Setting up the patient reference on the patient's spinal processes * 2D then 3D imaging (low-dose technology, using a 5-axis motorized X-ray C-arm to optimize trajectory and increase reconstruction volume) * Intraoperative planning of implants based on the patient's image in the operating position * Navigation: automatic matching of patient and 3D imagery with factory pre-calibrated single-use instruments. Real-time visualization of the trajectory in the 3D image. * Robotic surgery: collaborative robot-surgeon handling. Automatic alignment of pedicle aiming instruments with workflow control from the sterile zone. * 3D imaging to control screw positioning
Locations(1)
View Full Details on ClinicalTrials.gov
For the most up-to-date information, visit the official listing.
NCT07421752