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Studies Genourob's Knee laxity arthrometers Anterior cruciate ligament (ACL) injury/tear ACL: Anterior cruciate ligament
  • Torn /injured ACL treatment
  • Torn ACL recovery time
  • ACL Reconstruction Surgery Techniques
  • Why buy a KT 1000 arthrometer when you can get a Dyneelax or GNRB? Did I tear my ACL? TOP 6 ACL diagnostic tests KT-1000 / KT-2000 / GNRB comparison Sports related to ACL Injuries 11 ACL fast facts Arthrometers: Enhance knee injury treatment Knee Stability/Instability Diagnostic Device Knee physical exams
  • Pivot Shift Test - Knee Instability Evaluation
  • Lachman Test - ACL assessment
  • Anterior Drawer Test - ACL assessment
  • ACL Rehab: How are arthrometers crucial to recover from ACL Surgery? New arthrometer NEW GNRB / ROTAM Research Studies GNRB Knee Arthrometer: More than just objective results on the ACL... The Future of Treating ACL Tears: Arthrometers Where can I order a KT1000 knee ligament arthrometer? KT-1000 vs. GNRB video: Testing the ACL with both arthrometers NEW GNRB STUDY KT1000 Arthrometer : Test Knee Laxity ESSKA BEST E-POSTER AWARD - GNRB ARTHROMETER Back pain and its associated problems Knee Laxity Arthrometer GNRB involved in more than 30 scientific studies What is Knee Ligamentous Laxity? Back Pain Rehabilitation - Spineo Patient Feedback New Funding from the European Union for the DYNEELAX Project AS MONACO football club has a DYNEELAX ! Memphis Depay, from FC Barcelona, being tested on our Arthrometer! What are the benefits of using knee laxity arthrometers? What is Dyneelax? Knee Ligament Analysis: ACL, PCL, LCL, MCL Assessment Device What is Knee Laxity? Study - Arthrometers better than MRI when diagnosing partial ACL tears Mastering Knee Examination: The Role of Arthrometers in Diagnosing Ligament Injuries Demystifying Anterior Cruciate Ligament (ACL) Injuries: Causes, Symptoms, and Treatment Revolutionizing Knee Assessment: The Dyneelax Knee Laxity Arthrometer Unraveling Knee Laxity: The Crucial Role of Arthrometers in Diagnosis and Treatment Mastering the Lachman Test: Detecting ACL Tears Unmasking Partial ACL Tears: The Edge of Dyneelax & GNRB Arthrometers Over MRI The Anterior Cruciate Ligament (ACL): A Brief Overview New Website ! Visit Arthrometer.com
    ABOUT US
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  • Genourob Certifications How we started... Why do we develop knee laxity arthrometers to analyse ACL tears at Genourob?
    KNEE
    What is Laximetry? Knee laxity tests - Genourob's LDA® Method
  • Lachman test (automated)
  • Posterior drawer test (automated)
  • Anterior drawer / Tibial rotation test (automated)
  • Tibial rotation instability test (automated)
  • Anterior Translation + Internal/ External Rotation
  • LDA Method Scientific Studies Arthrometers adapted to your speciality
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    SPINEO - Rehabilitation of the spine (Patented device) What is SPINEO? SPINEO Detailed Description Why use SPINEO during rehabilitation ? How does this spine rehabilitation device work?
    PRODUCTS
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  • CHOOSE YOUR GNRB
  • ACL injury/tear assessment
  • ACL test - Medial rotation
  • PCL injury/tear assessment
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  • Scientific Studies Genourob's Medical Products CHOOSE YOUR DYNEELAX
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  • DYNEELAX PCL
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    ORTHOPEDICS

    The LDA®: An innovative help in the diagnostics of ligament lesions and a new tool in the postoperative follow-up

    As a primary intention, confirming suspect clinical examinations, the Automated Dynamic Laximetry, LDA, features an objective detection of ACL (GNRB) and PCL (GNRB PCL) lesions and peripheral ligamentous structures (ROTAM)

    Postoperative, the obtained results inform about the healing process and the status of the ligament-plasty resistance, giving precise orientation on the choice of rehabilitation techniques.


    The GNRB and ROTAM are the only automated dynamic laximeters, where the test results can be integrated into patient data-management system of the institute.

    Precise and objective functional evaluation of ACL / Follow-up of the reconstruction.

    PREOPERATIVE

    The GNRB performs an automated anterior tibia translation and calculates new parameters for a more accurate evaluation of the ligament functionality of the knee.

    Example of preoperative control *
    Δ134 = 2,4 mm, ΔP2 = 18 μm/N
    Almost complete lesion shown by divergent curves, major functional instability.

    In arthroscopy : Fostering by the PCL, no functional engagement of the ACL (connection without resistance, soft tissue). In MRI : difficult exploration (hemarthrosis, effusion).

    POSTOPERATIVE

    The laxity controls performed at regular intervals can be done with weak adapted pushes and therefore without risks for the ligament-plasty.

    Example of a postoperative follow-up after 3 months            Δ134 = 1,2 mm, ΔP2 = 0

    Good development of the plasty. The parallel curves show a good resistance of the ligament-plasty against the adapted pushes, without delay. The ligament-plasty is functional and the curves should ideally remain parallel until the end of the ligamentisation process.

    Precise and objective evaluation of peripheral ligament structures

    The ROTAM applies a motorized torque to the tibia-ankle-foot bloc and registers the provoked rotation, as well medial as lateral.


    PREOPERATIVE

    Δ°r > 6
    Divergent curves
    Pathologic state of the ligament
    Extra-articular surgery recommended

     

     

    POSTOPERATIVE

    Δ°r = 0
    Reconstruction successful
    Parallel curves
    Good ligament resistance

    The LDA® : Objective Quality Assurance

    The LDA® measures validate the quality of the surgical intervention and the follow-up.
    The tests performed on every patient provide a precise documentation for the Quality Management System of the institute and also for the patient.

    Measurement accuracy, the automatic saving and the reproducibility are appreciated by all practitioners looking for reliable and documented tests.

    The units GNRB and ROTAM for orthopedics