This study aims to evaluate the clinical efficacy and safety of an intelligent robotic system for the closed reduction of extra-articular supracondylar femoral fractures (Arbeitsgemeinschaft für Osteosynthesefragen/Orthopaedic Trauma Association AO/OTA 33-A). Traditional manual reduction for supracondylar femoral fractures is often challenging due to strong muscle pull, heavily relying on the surgeon's experience and frequently requiring repeated fluoroscopy. This clinical trial compares robot-assisted closed reduction against traditional surgeon-led reduction methods. The primary goal is to determine if the robotic system improves the precision of bone alignment (excellent and good reduction rate) and functional recovery while reducing surgical radiation exposure.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
80
The patient undergoes automated or human-robot collaborative closed fracture reduction powered by an intelligent robotic system. The system integrates deep-learning-based bone segmentation, automatic reduction planning, and a self-adaptive 2D-3D image registration framework to achieve sub-millimeter positioning feedback and force-position collaborative security gates. Following successful reduction, internal fixation is performed using a distal femoral locking compression plate (LCP-DF) via the minimally invasive percutaneous plate osteosynthesis (MIPO) technique.
The patient undergoes conventional closed or open fracture reduction performed entirely by the surgical team based on traditional clinical experience under ordinary C-arm fluoroscopic guidance. Internal fixation is achieved using standard distal femoral locking plates or intramedullary nails (with dual-plate fixation permitted when indicated for medial bone defects or collapse) according to the surgeon's choice and standard of care.
Aerospace Center Hospital
Beijing, Beijing Municipality, China
RECRUITINGBeijing Jishuitan Hospital
Beijing, Beijing Municipality, China
RECRUITINGRate of Excellent or Good Closed Fracture Reduction Assessed by Postoperative Low-Dose CT-Based 3D Quantitative Reduction Grading Criteria
The percentage of patients achieving "Excellent" or "Good" anatomical closed reduction. Reduction quality is measured on post-op CT via RadiAnt DICOM Viewer and 3D Slicer based on the worst-performing of 3 dimensions: 1. Separation/shortening displacement: Excellent (≤3mm), Good (\>3-5mm), Fair (\>5-10mm), Poor (\>10mm). 2. Angulation deformity: Excellent (≤3°), Good (\>3-5°), Fair (\>5-10°), Poor (\>10°). 3. Rotational deformity: Excellent (≤3°), Good (\>3-5°), Fair (\>5-10°), Poor (\>10°). The final reduction grade is determined by the lowest category among these parameters, and the primary outcome represents the proportion of patients graded as Excellent or Good.
Time frame: From completion of surgery to postoperative low-dose CT assessment, assessed up to 2 weeks after surgery
Total Operation Time Measured in Minutes
Total operation time will be measured in minutes and defined as the duration from initial skin incision to completion of skin closure.
Time frame: From initial skin incision to completion of skin closure, assessed up to 8 hours
Number of Intraoperative C-Arm Fluoroscopy Shots
The number of intraoperative fluoroscopy shots taken using the C-arm during the surgical procedure will be recorded.
Time frame: From initial skin incision to completion of skin closure, assessed up to 8 hours
Intraoperative Blood Loss Measured in Milliliters
The estimated total volume of blood loss during the surgical procedure will be recorded in milliliters.
Time frame: From initial skin incision to completion of skin closure, assessed up to 8 hours
Length of Hospital Stay Measured in Days
The length of hospital stay will be recorded in days from admission to hospital discharge.
Time frame: From hospital admission to hospital discharge, assessed up to 30 days
Robot-Assisted Reduction Planning and Execution Time Measured in Minutes in the Experimental Group
For participants assigned to the experimental group, the robot-assisted reduction planning and execution time will be recorded in minutes. This time is defined as the duration from completion of robotic arm setup to completion of the reduction maneuver.
Time frame: From initial skin incision to completion of the reduction maneuver, assessed up to 8 hours
Time to Radiographic Fracture Union Assessed by Standard X-Ray
Time to radiographic fracture union will be measured in weeks using standard anteroposterior and lateral X-rays. Fracture union is defined as cortical bridging in at least 3 of 4 cortices with no significant pain during weight-bearing. Low-dose CT may be used to confirm fracture union in uncertain cases.
Time frame: From completion of surgery to the first documented radiographic evidence of fracture union, assessed up to 6 months after surgery
Radiographic Fracture Union Rate Assessed by Standard X-Ray
The percentage of participants achieving radiographic fracture union will be assessed using standard anteroposterior and lateral X-rays. Low-dose CT may be used to confirm fracture union in uncertain cases.
Time frame: From completion of surgery to the first documented radiographic evidence of fracture union, assessed up to 6 months after surgery
American Knee Society Score
The American Knee Society Score (AKSS) is used to evaluate the clinical outcomes and functional status of the knee joint post-operation. The total score ranges from 0 to 100, with a higher score indicating better knee function and a superior clinical outcome.
Time frame: From baseline to 1 month, 3 months and 6 months after surgery
Lower Extremity Functional Scale
The Lower Extremity Functional Scale (LEFS) is used to evaluate the patient's ability to perform everyday tasks and lower extremity function. The score ranges from 0 to 80, with higher scores representing better functional status.
Time frame: From baseline to 1 month, 3 months and 6 months after surgery
EuroQol 5-Dimension 5-Level Health-Related Quality of Life
The EuroQol 5-Dimension 5-Level (EQ-5D-5L) questionnaire is used to assess health-related quality of life across five dimensions: mobility, self-care, usual activities, pain/discomfort, and anxiety/depression. Each dimension is scored on a 5-level scale, and health states are converted into an index score ranging from less than 0 to 1, where higher scores mean a better quality of life.
Time frame: From baseline to 1 month, 3 months and 6 months after surgery
EuroQol Visual Analogue Scale Score
The EuroQol Visual Analogue Scale (EQ VAS) provides a quantitative measure of the patient's self-rated overall health status. The score is recorded on a visual scale ranging from 0 to 100, where 0 represents the worst imaginable health state and 100 represents the best imaginable health state.
Time frame: From baseline to 1 month, 3 months and 6 months after surgery
Incidence of Intraoperative Complications
The percentage of participants experiencing intraoperative complications, including neurovascular injury, cortical perforation, abnormal bleeding, device failure, registration failure requiring manual takeover or change of reduction strategy, will be recorded.
Time frame: From initial skin incision to completion of skin closure, assessed up to 8 hours
Incidence of Postoperative Complications
The percentage of participants experiencing postoperative complications, including wound problems or infection, thrombotic events, internal fixation failure, or loss of reduction, will be recorded.
Time frame: From completion of surgery to postoperative complication assessment, assessed up to 6 months after surgery
Incidence of Reoperation
The percentage of participants requiring reoperation after the index surgery will be recorded.
Time frame: From completion of surgery to reoperation assessment, assessed up to 6 months after surgery
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