
Total Knee Replacement
WIND
In Modern Knee Reconstruction
Reliable Orthopedic Implant Technology
Developed for primary total knee arthroplasty procedures, the WIND Total Knee Replacement is a modern orthopedic implant system that aims to support natural joint biomechanics with its anatomical design, biocompatible implant materials, and wide range of component options.
Anatomical Design
High Stability
Primary Knee Arthroplasty
Wide Range of Implant Options

PRODUCT DESCRIPTION
What is Total Knee Replacement?
Total knee replacement is an orthopedic implant system used to completely replace damaged joint surfaces caused by advanced degenerative joint disease, trauma, or other knee joint pathologies. Also called Total Knee Arthroplasty (TKA), this surgical procedure aims to reduce pain, restore joint function, and improve the patient's quality of life.
The WIND Total Knee Replacement features a systematic design consisting of a femoral component, tibial component, polyethylene insert, and patellar component. The anatomically shaped components are designed to support the knee's natural range of motion. Manufactured from biocompatible materials, the implants offer high wear resistance, stability, and reliable performance for long-term clinical success.

COMPONENTS

Femoral Component
Manufactured from Cobalt Chromium (CoCr) alloy, the femoral component provides an anatomically comfortable design that perfectly fits the femoral condyles and supports natural knee kinematics.
Technical Specifications
Raw Material: CrCoMo alloy (Precision Casting Technology)
Sizes: CR (Cruciate Retaining) 2-3-4-5-6-7 (Right-Left)
Sizes: PS (Posterior Stabilized) 2-3-4-5-6-7 (Right-Left)

UHMWPE Insert
Manufactured from high molecular weight raw materials, the insert provides long-term biomechanical performance with high wear resistance and a low coefficient of friction. Available in various thicknesses, it helps optimize ligament balance.
Technical Specifications
Raw Material: UHMWPE (High Molecular Weight Polyethylene)
Sizes: 1-2
Thicknesses (mm): 9-11-13-15

Tibial Component
Manufactured from Cobalt Chromium (CoCr) alloy, the tibial tray features an optimized surface structure to provide high stability. Available in cemented and uncemented options, it accommodates various surgical preferences.
Technical Specifications
Raw Material: CrCoMo alloy (Precision Casting Technology)
Sizes: 2-3-4-5-6-7

UHMWPE Patella
Made from high molecular weight raw materials, Patella supports smooth movement in the pateliofemoral joint. Available in various sizes for an anatomical fit and resistant to wear and tear.
Technical Specifications
Raw Material: UHMWPE (High Molecular Weight Polyethylene)
Sizes: 1-2-3-4
CLINICAL ADVANTAGES
Anatomical
Adaptation
Stable and Reliable Movement
Biocompatible materials
Bone-protecting design
Wide range of size options.
Reliable Instrumentation
INDICATIONS
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Osteoarthtritis Aseptic Necrosis
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Rheumatoid Arthritis Degeneration
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Post-traumatic Arthritis
SCIENTIFIC APPROACH
Developed for Modern Knee Arthroplasty
Total knee arthroplasty aims to reduce pain, restore joint function, and improve mobility in patients with advanced degenerative knee disease.
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Anatomical compatibility
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Stable fixation
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Optimized load distribution
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Smooth joint movement
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Long-term clinical success
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Optimal fit with a design that conforms to natural knee anatomy
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Long-term performance with high wear resistance
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Balanced load distribution with articular surface geometry
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Kinematic design that supports physiological movement
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Long-term stability and reliable clinical results
OPERATIONAL INSTRUMENT SETS
WIND Orthopedic Instrument Sets are designed to provide a precise, efficient, and repeatable workflow during primary total knee arthroplasty procedures. Designed for ergonomic use, high manufacturing precision, and durable surgical-grade materials, the instruments support accurate bone preparation, implant positioning, and alignment throughout the surgical procedure.
Manufactured from premium medical-grade stainless steel, the instrument sets offer excellent mechanical strength, corrosion resistance, and a long service life. Their modular design simplifies the surgical workflow, facilitates sterilization, and contributes to reduced surgical time while ensuring reliable clinical performance.

