RPG2JKS73
XCmedico
1 Pcs(72 Hours Delivery)
Titanium Alloy
CE/ISO:9001/ISO13485.Etc
Custom-Made 15 Days Delivery(Excluding Shipping Time)
FedEx. DHL.TNT.EMS.Etc
Availability: | |
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Quantity: | |
Product | Pic | REF | Specification | Screw |
Proximal Femur Condylus Locking Plates | ![]() ![]() | RPG2JKS73L | L | Cannulated HC7.3 |
RPG2JKS73R | R |
CNC Preliminary Processing The computer numerical control technology is used to precisely process orthopedic products. This process has the characteristics of high precision, high efficiency, and repeatability. It can quickly produce customized medical devices that conform to the human anatomical structure and provide patients with personalized treatment plans. | Product Polishing The purpose of orthopedic products polishing is to improve the contact between the implant and human tissue, reduce stress concentration, and improve the long-term stability of the implant. | Quality Inspection The mechanical properties test of orthopedic products is designed to simulate the stress conditions of human bones, evaluate the load-bearing capacity and durability of implants in the human body, and ensure their safety and reliability. |
Product Package Orthopedic products are packaged in a sterile room to ensure that the product is encapsulated in a clean, sterile environment to prevent microbial contamination and ensure surgical safety. |
The storage of orthopedic products requires strict in-and-out management and quality control to ensure product traceability and prevent expiration or wrong shipment. |
The sample room is used to store, display and manage various orthopedic products samples for product technology exchanges and training. |
1. Ask Xc Medico Team For Proximal Femur Condylus Locking Plate Product Catalog.
2. Choose Your Interested Proximal Femur Condylus Locking Plate Product.
3. Ask For A Sample To Test Proximal Femur Condylus Locking Plate.
4.Make An Order Of XC Medico's Proximal Femur Condylus Locking Plate.
5.Become A Dealer Of XC Medico's Proximal Femur Condylus Locking Plate.
1.Better Purchase Prices Of Proximal Femur Condylus Locking Plate.
2.100% The Highest Quality Proximal Femur Condylus Locking Plate.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Proximal Femur Condylus Locking Plate.
6. Quick And Easy Assessment Of XC Medico's Proximal Femur Condylus Locking Plate.
7. A Globally Recognized Brand - XC Medico.
8. Fast Access Time To XC Medico Sales Team.
9. Additional Quality Test By XC Medico Team.
10. Track Your XC Medico Order From Start To Finish.
The proximal femur condylus locking plate is an advanced orthopedic implant designed to provide rigid fixation for fractures involving the proximal femur, including periarticular, osteoporotic, and high-energy trauma fractures. These plates incorporate locking screw technology, enhancing angular stability and ensuring superior biomechanical strength. Their anatomical contouring allows for better adaptation to femoral geometry, making them a preferred choice for orthopedic surgeons. This article explores their advantages, clinical applications, risks, and future market trends.
A proximal femur condylus locking plate is a pre-contoured metal implant designed for internal fixation of complex fractures in the proximal femur and femoral condyles. Constructed from titanium or stainless steel, these plates offer high durability, biocompatibility, and corrosion resistance.
The plate features multiple locking screw holes, allowing for stable fixation with angular stability. This technology eliminates the need for excessive compression on the bone, reducing the risk of periosteal damage. It is particularly beneficial in treating osteoporotic fractures, comminuted fractures, and periarticular injuries, where traditional screws may not provide sufficient stability.
The fixed-angle screw design provides strong stabilization, reducing the risk of secondary displacement.
Pre-shaped to match the natural curvature of the femur, minimizing the need for intraoperative bending.
Allows for minimally invasive surgical techniques, preserving periosteal blood supply and reducing healing time.
Offers better load distribution, reducing stress concentration and preventing implant failure.
Can be used for complex, osteoporotic, and high-impact fractures, ensuring reliable fixation across different patient groups.
Stable fixation allows for earlier weight-bearing, promoting faster rehabilitation and reducing complications.
These fractures occur in the upper femur region and often require locking plates for stable fixation.
In cases where hip arthroplasty is not indicated, locking plates provide an effective fixation alternative.
Locking plates are used for fractures around hip prostheses, where traditional screws may not provide sufficient stability.
The fixed-angle locking technology is highly beneficial in elderly patients with poor bone quality.
The plate allows rigid fixation without excessive bone compression, maintaining fracture stability.
Poor fracture reduction or insufficient biological healing may delay recovery.
If excessive weight-bearing occurs before full fracture healing, the plate may fail.
Postoperative infections, though uncommon, can necessitate implant removal and antibiotic therapy.
Incorrect placement may lead to misalignment, affecting gait and long-term function.
Improper screw positioning can damage adjacent nerves and blood vessels, leading to complications.
Development of 3D-printed, patient-specific implants to enhance surgical precision.
The growing preference for MIS procedures is leading to less invasive plate designs.
Research into biodegradable and composite materials to improve implant strength while reducing weight.
Expansion of healthcare infrastructure in Asia-Pacific, Latin America, and Africa is increasing access to advanced implants.
New screw designs with better anchorage in osteoporotic bone are being introduced.
The proximal femur condylus locking plate has revolutionized fracture fixation by offering enhanced stability, early mobilization, and improved healing outcomes. With fixed-angle locking technology, anatomic design, and biomechanical advantages, it has become an essential tool in orthopedic trauma management. While potential risks exist, technological advancements and refined surgical techniques are continuously improving patient outcomes. As research and innovation progress, the future of proximal femur condylus locking plates looks promising in addressing the evolving needs of orthopedic trauma care.
Warm reminder: This article is for reference only and cannot replace the doctor's professional advice. If you have any questions, please consult your attending physician.
Product | Pic | REF | Specification | Screw |
Proximal Femur Condylus Locking Plates | ![]() ![]() | RPG2JKS73L | L | Cannulated HC7.3 |
RPG2JKS73R | R |
CNC Preliminary Processing The computer numerical control technology is used to precisely process orthopedic products. This process has the characteristics of high precision, high efficiency, and repeatability. It can quickly produce customized medical devices that conform to the human anatomical structure and provide patients with personalized treatment plans. | Product Polishing The purpose of orthopedic products polishing is to improve the contact between the implant and human tissue, reduce stress concentration, and improve the long-term stability of the implant. | Quality Inspection The mechanical properties test of orthopedic products is designed to simulate the stress conditions of human bones, evaluate the load-bearing capacity and durability of implants in the human body, and ensure their safety and reliability. |
Product Package Orthopedic products are packaged in a sterile room to ensure that the product is encapsulated in a clean, sterile environment to prevent microbial contamination and ensure surgical safety. |
The storage of orthopedic products requires strict in-and-out management and quality control to ensure product traceability and prevent expiration or wrong shipment. |
The sample room is used to store, display and manage various orthopedic products samples for product technology exchanges and training. |
1. Ask Xc Medico Team For Proximal Femur Condylus Locking Plate Product Catalog.
2. Choose Your Interested Proximal Femur Condylus Locking Plate Product.
3. Ask For A Sample To Test Proximal Femur Condylus Locking Plate.
4.Make An Order Of XC Medico's Proximal Femur Condylus Locking Plate.
5.Become A Dealer Of XC Medico's Proximal Femur Condylus Locking Plate.
1.Better Purchase Prices Of Proximal Femur Condylus Locking Plate.
2.100% The Highest Quality Proximal Femur Condylus Locking Plate.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Proximal Femur Condylus Locking Plate.
6. Quick And Easy Assessment Of XC Medico's Proximal Femur Condylus Locking Plate.
7. A Globally Recognized Brand - XC Medico.
8. Fast Access Time To XC Medico Sales Team.
9. Additional Quality Test By XC Medico Team.
10. Track Your XC Medico Order From Start To Finish.
The proximal femur condylus locking plate is an advanced orthopedic implant designed to provide rigid fixation for fractures involving the proximal femur, including periarticular, osteoporotic, and high-energy trauma fractures. These plates incorporate locking screw technology, enhancing angular stability and ensuring superior biomechanical strength. Their anatomical contouring allows for better adaptation to femoral geometry, making them a preferred choice for orthopedic surgeons. This article explores their advantages, clinical applications, risks, and future market trends.
A proximal femur condylus locking plate is a pre-contoured metal implant designed for internal fixation of complex fractures in the proximal femur and femoral condyles. Constructed from titanium or stainless steel, these plates offer high durability, biocompatibility, and corrosion resistance.
The plate features multiple locking screw holes, allowing for stable fixation with angular stability. This technology eliminates the need for excessive compression on the bone, reducing the risk of periosteal damage. It is particularly beneficial in treating osteoporotic fractures, comminuted fractures, and periarticular injuries, where traditional screws may not provide sufficient stability.
The fixed-angle screw design provides strong stabilization, reducing the risk of secondary displacement.
Pre-shaped to match the natural curvature of the femur, minimizing the need for intraoperative bending.
Allows for minimally invasive surgical techniques, preserving periosteal blood supply and reducing healing time.
Offers better load distribution, reducing stress concentration and preventing implant failure.
Can be used for complex, osteoporotic, and high-impact fractures, ensuring reliable fixation across different patient groups.
Stable fixation allows for earlier weight-bearing, promoting faster rehabilitation and reducing complications.
These fractures occur in the upper femur region and often require locking plates for stable fixation.
In cases where hip arthroplasty is not indicated, locking plates provide an effective fixation alternative.
Locking plates are used for fractures around hip prostheses, where traditional screws may not provide sufficient stability.
The fixed-angle locking technology is highly beneficial in elderly patients with poor bone quality.
The plate allows rigid fixation without excessive bone compression, maintaining fracture stability.
Poor fracture reduction or insufficient biological healing may delay recovery.
If excessive weight-bearing occurs before full fracture healing, the plate may fail.
Postoperative infections, though uncommon, can necessitate implant removal and antibiotic therapy.
Incorrect placement may lead to misalignment, affecting gait and long-term function.
Improper screw positioning can damage adjacent nerves and blood vessels, leading to complications.
Development of 3D-printed, patient-specific implants to enhance surgical precision.
The growing preference for MIS procedures is leading to less invasive plate designs.
Research into biodegradable and composite materials to improve implant strength while reducing weight.
Expansion of healthcare infrastructure in Asia-Pacific, Latin America, and Africa is increasing access to advanced implants.
New screw designs with better anchorage in osteoporotic bone are being introduced.
The proximal femur condylus locking plate has revolutionized fracture fixation by offering enhanced stability, early mobilization, and improved healing outcomes. With fixed-angle locking technology, anatomic design, and biomechanical advantages, it has become an essential tool in orthopedic trauma management. While potential risks exist, technological advancements and refined surgical techniques are continuously improving patient outcomes. As research and innovation progress, the future of proximal femur condylus locking plates looks promising in addressing the evolving needs of orthopedic trauma care.
Warm reminder: This article is for reference only and cannot replace the doctor's professional advice. If you have any questions, please consult your attending physician.
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