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NCT Number: NCT07522489

Imageless Navigation Versus Image-Based Navigation in Robotic-Assisted Total Knee Arthroplasty for Knee Osteoarthritis

The goal of this clinical trial is to learn if imageless navigation is not inferior to image-based navigation in robotic-assisted total knee arthroplasty (RA-TKA) for treating patients with knee osteoarthritis.

The main questions the study aims to answer are:

1. Does imageless procedure provide functional results comparable to those of image-based navigation? 2. Are there differences in postoperative complications patients may experience after RA-TKA with imageless and image-based navigation? Researchers will compare imageless navigation with image-based navigation used in total knee arthroplasty to assess whether imageless navigation is comparable for the treatment of knee osteoarthritis.

Participants will:

1. Answer survey questions about knee pain and function before RA-TKA. 2. Undergo RA-TKA with imageless navigation or image-based navigation. 3. Visit the Clinic after 6 months and 12 months after surgery for checkups and to answer the same survey questions about postoperative knee pain and function.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Department of Orthopedics and Locomotor Traumatology, Medical University of Warsaw

Warsaw, Mazovian, 02-005, Poland

Location contact

Paweł Kasprzak, MD

CONTACT

[email protected]

22 50 21 514 ext. +48

Paweł Kasprzak, MD

PRINCIPAL_INVESTIGATOR

Paweł Łęgosz, MD, Professor

PRINCIPAL_INVESTIGATOR

Łukasz Pulik, MD, PhD

PRINCIPAL_INVESTIGATOR

About this study

The trial will include patients with end-stage osteoarthritis, qualified for Robotic-Assisted Total Knee Arthroplasty (RA-TKA). For each patient, a full-length standing radiograph will be taken with designated sensors. Based on these, a three-dimensional model of the knee joint will be generated, enabling preoperative planning and intraoperative navigation in the image-based mode. Patients who meet the criteria and provide informed consent will be included in the study. Immediately before surgery, patients will be randomly assigned by a computer programme to either the experimental or control group in a 1:1 ratio, remaining blinded to the chosen method. In the experimental group, RA-TKA will be performed using imageless navigation, whereas in the control group, it will be performed using image-based navigation. In both groups, the procedure will be performed by experienced specialists with several years of experience, according to a standardized protocol: a medial parapatellar approach with restricted kinematic alignment, using a medial congruent knee implant.

The total number of patients included in the study is planned to be 146, with 73 in the experimental group and 73 in the control group. The group size was calculated based on a power analysis; power level: 80%, significance level: α=0.05, minimal clinically important difference: 5 points on the Oxford Knee Score (OKS), standard deviation: 10 points on the OKS. The study's dropout rate is estimated at 15%.

Radiologic imaging, survey responses, and intraoperative records will be stored on physical disks and paper, as well as in a secure cloud-based database. All other records will be stored digitally only. Registry data will be compared with external data sources (medical records) every 6 months to assess their accuracy and completeness. A Linear Mixed-Effects Model will be used to account for correlation between OKS measurements in the same patient. Both Per-Protocol and Intention-to-Treat analyses will be reported. For comparing continuous variables, a t-test (if normally distributed) or a Mann-Whitney U test (if skewed) will be used. Categorical variables will be compared with Fisher's Exact Test or the Chi-squared test. A cost-minimization analysis will be conducted using economic data.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Symptomatic, radiologically confirmed advanced osteoarthritis of the knee.
  • Patients referred for primary robotic-assisted total knee arthroplasty.
  • Patients in whom a correctly performed radiograph with designated sensors has confirmed the possibility of performing robotic-assisted total knee arthroplasty with image-based navigation.
  • Patients capable of giving informed consent to participate in the study and willing to attend all follow-up visits.

Exclusion criteria

  • No informed consent for the surgery.
  • No informed consent for taking part in the study.
  • Pregnancy.
  • Active infections.
  • Diagnosed comorbidities: autoimmune arthritis, malignant tumors, serious neurological disorders affecting a reliable functional outcome measurement (e.g., severe stroke, severe Parkinson's disease).

Treatment and study plan

Imageless Robotic-Assisted Total Knee Arthroplasty

Procedure

Patients undergoing Robotic-Assisted Total Knee Arthroplasty with Imageless Navigation

Image-based Robotic-Assisted Total Knee Arthroplasty

Procedure

Patients undergoing Robotic-Assisted Total Knee Arthroplasty with Image-based Navigation

Primary outcomes

  1. Patient-Reported Outcome Measures assessed with the Oxford Knee Score

    Time frame: Survey taken right before surgery, at 6 months, and at 12 months after surgery.

    Zero is equivalent to the worst possible function of the joint and 48 indicates the best achievable function.

Secondary outcomes

  1. Range of motion

    Time frame: On admission to the hospital, the day after surgery, at 6 months, and at 12 months postoperatively.

    Measured according to the neutral-zero method with a 360-degree goniometer.

  2. Number of Participants achieving a planned postoperative limb alignment

    Time frame: From enrollment to 12 months after surgery.

    The percentage of patients within ±3 degrees of the preoperative target.

  3. Postoperative radiographic results

    Time frame: From enrollment to 12 months after surgery.

    Hip-Knee-Ankle angle, mechanical axis deviation, coronal femoral component angle (mechanical lateral distal femoral angle, mechanical lateral proximal femoral angle), sagittal femoral tilt/flexion, coronal tibial component angle (mechanical/anatomical lateral distal tibial angle, mechanical/anatomical medial proximal tibial angle) posterior tibial slope, joint line convergence angle, all measured in degrees

  4. Postoperative pain assessed with a VAS scale

    Time frame: Survey taken right before surgery, at 6 months, and at 12 months after surgery.

    Zero is equivalent to no pain and 10 indicates the worst possible pain.

  5. Time of the surgical procedure

    Time frame: From the beginning to the end of the surgical procedure.

    Duration of the surgical procedure in total and for each stage measured in minutes.

  6. Estimation of perioperative blood loss

    Time frame: Immediately after the end of the surgery.

    Intra-operative blood loss estimation by measuring the blood volume accumulated in suction bottles in milliliters, taking into account the volume of saline solution used during the surgery.

  7. Difference between preoperative and postoperative hemoglobin levels

    Time frame: Hemoglobin levels will be measured within 2 weeks before surgery, as well as 24, 48 and 72 hours after surgery.

    Hemoglobin levels will be obtained from samples taken at different times before and after surgery.

  8. Postoperative complications

    Time frame: From enrollment to 12 months after surgery.

    The percentage of cases with reported postoperative complications, such as: bleeding, wound complication, thromboembolic disease, neural deficit, vascular injury, ligament injury, instability, malalignment, stiffness, periprosthetic joint infection, periprosthetic fracture, extensor mechanism disruption, dislocation, bearing surface wear, osteolysis, implant loosening, revision, death.

  9. Costs required for preoperative planning

    Time frame: From one month before enrollment to 12 months after surgery.

    Costs of all preoperative imaging and procedures necessary to plan imageless and image-based robotic navigation.

  10. Time required for preoperative planning

    Time frame: From one month before enrollment to 12 months after surgery.

    Time required to prepare all preoperative imaging and procedures necessary to plan imageless and image-based robotic navigation.

Study contacts

Contact information is provided by the study sponsor or research team.

Paweł Kasprzak, MD

CONTACT

[email protected]

22 50 21 514 ext. +48

Sponsors and collaborators

Lead sponsor

Medical University of Warsaw

Other

Registry information

Official study title

Outcomes of Robotic-Assisted Total Knee Arthroplasty With Imageless Navigation Versus Image-Based Navigation: A Randomised, Single-Blinded, Non-Inferiority Trial

Important dates

Study start
2026
Primary completion
2029
Study completion
2029
First posted
Apr 13, 2026
Registry last updated
Jul 7, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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