HP12Z66
XCmedico
1 Pcs(72 Hours Delivery)
Medical Stainless Steel
CE/ISO:9001/ISO13485.Etc
Custom-Made 15 Days Delivery(Excluding Shipping Time)
FedEx. DHL.TNT.EMS.Etc
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PRODUCT NAME | REF | SPECIFICATION | PIC |
Lower tibia and fibula adjustable titanium plate (Placa de titanio ajustable para tibia y peroné inferior) | HP12Z66 | 13×3.4×1.5mm /6.5×1.2mm 2# white blue pulling wire 1 pcs 5#White flap line 1 pcs | ![]() ![]() |
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 Lower Tibia And Fibula Adjustable Titanium Plate Product Catalog.
2. Choose Your Interested Lower Tibia And Fibula Adjustable Titanium Plate Product.
3. Ask For A Sample To Test Lower Tibia And Fibula Adjustable Titanium Plate Quality.
4.Make An Order Of Xc Medico's Lower Tibia And Fibula Adjustable Titanium Plate.
5.Become A Dealer Of Xc Medico's Lower Tibia And Fibula Adjustable Titanium Plate.
1. Better Purchase Prices Of Lower Tibia And Fibula Adjustable Titanium Plate.
2.100% The Highest Quality Lower Tibia And Fibula Adjustable Titanium Plate.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Lower Tibia And Fibula Adjustable Titanium Plate.
6. Quick And Easy Assessment Of XC Medico's Lower Tibia And Fibula Adjustable Titanium 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.
In the field of orthopedics, the treatment of lower leg fractures, particularly those involving the tibia and fibula, is a critical area of focus. Fractures in these regions often result from trauma, accidents, or stress, requiring stable and precise fixation for effective healing. The Lower Tibia and Fibula Adjustable Titanium Plate represents an advanced solution in fracture fixation, offering an adjustable, reliable, and durable means of stabilizing fractures. This comprehensive guide covers the essential features, advantages, applications, and the future outlook of this innovative orthopedic implant.
The Lower Tibia and Fibula Adjustable Titanium Plate is an orthopedic implant designed for the fixation of fractures occurring in the lower leg, specifically the tibia and fibula bones. These fractures are commonly associated with high-energy trauma, sports injuries, and accidents. The adjustable nature of this plate allows for controlled compression and alignment during and after surgery, optimizing the healing process.
Made from titanium or titanium alloy, known for its high strength-to-weight ratio and biocompatibility, this plate offers an ideal balance between stability and minimal invasiveness. The adjustable locking mechanism enables surgeons to adjust the plate for precise bone alignment and compression post-operatively, ensuring that the fracture site remains stable while the bone heals.
The adjustable feature allows the surgeon to modify the compression and alignment after the plate is placed. This is particularly beneficial in cases where fine-tuning is required to achieve optimal bone alignment and stability.
The plate is crafted from titanium alloy, a material that offers exceptional biomechanical strength while being lightweight and corrosion-resistant. It ensures long-term stability and minimal risk of implant-related complications.
The plate utilizes locking screws that securely attach the plate to the bone. This locking mechanism reduces the likelihood of screw loosening, even in high-stress areas, ensuring a more reliable fixation.
The plate is designed to match the natural contours of the tibia and fibula. This anatomical design facilitates better bone alignment and minimizes soft tissue disruption during surgery.
The titanium material is radiolucent, meaning it does not obstruct imaging such as X-rays, allowing the surgical team to monitor the healing progress effectively.
Available in various sizes and configurations, the plate can be tailored to different fracture types and patient anatomies, providing a more personalized treatment approach.
The ability to adjust the plate's compression and alignment post-operatively ensures that the bones are properly positioned, which reduces the risk of malunion or nonunion—a common complication in lower leg fractures.
The locking screw mechanism ensures a firm attachment to the bone, minimizing the risk of screw loosening or implant failure. This stability is crucial for preventing additional surgeries.
With optimal fixation and alignment, the fracture heals more efficiently, which leads to a faster recovery. Reduced complications contribute to quicker rehabilitation and return to normal function.
The anatomical design of the plate reduces the need for extensive dissection and soft tissue manipulation, minimizing the risk of injury to surrounding structures and promoting a more straightforward recovery.
The adjustable feature allows for better control over the compression, which helps in reducing the chances of post-surgical complications such as wound infection, nonunion, or improper alignment.
Titanium's inherent properties of strength, lightness, and corrosion resistance ensure that the plate can withstand the mechanical stresses placed on the lower leg without compromising the integrity of the implant.
The success of the procedure heavily depends on the surgeon's ability to correctly position and adjust the plate. Inadequate alignment or over-adjustment of the compression could lead to complications such as malunion or delayed healing.
The plate is not suitable for all patients. Individuals with infection, osteoporosis, or allergies to titanium may not be suitable candidates for this implant. Pre-operative assessment is essential to determine the appropriateness of the implant.
Close monitoring of the patient is crucial after surgery. This includes follow-up imaging to ensure proper fixation and to assess for potential complications like implant failure or infection.
Excessive compression may compromise blood supply to the fractured bone or cause damage to surrounding soft tissues. Surgeons must exercise caution during the adjustment process to avoid over-compressing the fracture site.
In some cases, the implant may need to be removed after the bone has healed. This is particularly true in younger patients or those with active lifestyles who may experience discomfort or irritation from the implant.
The plate is highly effective in stabilizing mid-shaft fractures of the tibia, a common result of traumatic injury. The ability to adjust the plate's alignment provides superior control over the reduction of the fracture.
Often occurring alongside tibial fractures, fibula fractures can also be treated effectively with this adjustable plate. The plate helps stabilize both bones and promotes optimal healing, especially in comminuted fractures.
These fractures involve both the tibia and fibula and often require precise alignment to ensure functional recovery. The adjustable plate allows for careful compression of both bones, reducing the risk of complications.
In cases where bone fragments are displaced, the adjustable mechanism enables precise realignment, reducing the risk of malunion or nonunion.
In more complicated fractures where the bone is shattered into several fragments, the Lower Tibia and Fibula Adjustable Titanium Plate offers stability and compression, allowing for better healing.
As the global population ages, the incidence of fractures, especially in weight-bearing bones like the tibia and fibula, is set to increase. This will drive demand for advanced, adjustable implants that offer superior fracture fixation.
Innovations in material science and manufacturing techniques, such as 3D printing and customized implants, will further improve the effectiveness and versatility of these plates, offering better outcomes for patients.
There is a growing trend toward minimally invasive orthopedic procedures, which reduce recovery time and surgical trauma. The adjustability of these plates aligns with this trend, making them ideal for use in less invasive surgeries.
As healthcare access improves in emerging markets, the demand for advanced orthopedic implants will increase, expanding the market for these adjustable plates.
With the increasing emphasis on personalized medicine and patient-specific treatments, the market for customized orthopedic implants, including adjustable plates, is likely to experience significant growth.
The Lower Tibia and Fibula Adjustable Titanium Plate represents a significant advancement in orthopedic fracture fixation technology. Its adjustable locking mechanism, combined with the strength of titanium, allows for precise bone alignment and compression, leading to faster recovery and fewer complications. By providing better stability, alignment, and patient-specific adaptability, this implant is an ideal choice for treating a range of tibial and fibular fractures.
Its benefits extend beyond traditional fixation methods, making it particularly useful in complex or displaced fractures. With continued advancements in implant technology and materials, the future of the Lower Tibia and Fibula Adjustable Titanium Plate looks promising, offering improved outcomes for patients and expanding opportunities for orthopedic professionals globally.
As orthopedic surgery continues to evolve, this innovative plate is set to play a key role in the effective treatment of lower leg fractures, ultimately enhancing patient care and recovery.
PRODUCT NAME | REF | SPECIFICATION | PIC |
Lower tibia and fibula adjustable titanium plate (Placa de titanio ajustable para tibia y peroné inferior) | HP12Z66 | 13×3.4×1.5mm /6.5×1.2mm 2# white blue pulling wire 1 pcs 5#White flap line 1 pcs | ![]() ![]() |
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 Lower Tibia And Fibula Adjustable Titanium Plate Product Catalog.
2. Choose Your Interested Lower Tibia And Fibula Adjustable Titanium Plate Product.
3. Ask For A Sample To Test Lower Tibia And Fibula Adjustable Titanium Plate Quality.
4.Make An Order Of Xc Medico's Lower Tibia And Fibula Adjustable Titanium Plate.
5.Become A Dealer Of Xc Medico's Lower Tibia And Fibula Adjustable Titanium Plate.
1. Better Purchase Prices Of Lower Tibia And Fibula Adjustable Titanium Plate.
2.100% The Highest Quality Lower Tibia And Fibula Adjustable Titanium Plate.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Lower Tibia And Fibula Adjustable Titanium Plate.
6. Quick And Easy Assessment Of XC Medico's Lower Tibia And Fibula Adjustable Titanium 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.
In the field of orthopedics, the treatment of lower leg fractures, particularly those involving the tibia and fibula, is a critical area of focus. Fractures in these regions often result from trauma, accidents, or stress, requiring stable and precise fixation for effective healing. The Lower Tibia and Fibula Adjustable Titanium Plate represents an advanced solution in fracture fixation, offering an adjustable, reliable, and durable means of stabilizing fractures. This comprehensive guide covers the essential features, advantages, applications, and the future outlook of this innovative orthopedic implant.
The Lower Tibia and Fibula Adjustable Titanium Plate is an orthopedic implant designed for the fixation of fractures occurring in the lower leg, specifically the tibia and fibula bones. These fractures are commonly associated with high-energy trauma, sports injuries, and accidents. The adjustable nature of this plate allows for controlled compression and alignment during and after surgery, optimizing the healing process.
Made from titanium or titanium alloy, known for its high strength-to-weight ratio and biocompatibility, this plate offers an ideal balance between stability and minimal invasiveness. The adjustable locking mechanism enables surgeons to adjust the plate for precise bone alignment and compression post-operatively, ensuring that the fracture site remains stable while the bone heals.
The adjustable feature allows the surgeon to modify the compression and alignment after the plate is placed. This is particularly beneficial in cases where fine-tuning is required to achieve optimal bone alignment and stability.
The plate is crafted from titanium alloy, a material that offers exceptional biomechanical strength while being lightweight and corrosion-resistant. It ensures long-term stability and minimal risk of implant-related complications.
The plate utilizes locking screws that securely attach the plate to the bone. This locking mechanism reduces the likelihood of screw loosening, even in high-stress areas, ensuring a more reliable fixation.
The plate is designed to match the natural contours of the tibia and fibula. This anatomical design facilitates better bone alignment and minimizes soft tissue disruption during surgery.
The titanium material is radiolucent, meaning it does not obstruct imaging such as X-rays, allowing the surgical team to monitor the healing progress effectively.
Available in various sizes and configurations, the plate can be tailored to different fracture types and patient anatomies, providing a more personalized treatment approach.
The ability to adjust the plate's compression and alignment post-operatively ensures that the bones are properly positioned, which reduces the risk of malunion or nonunion—a common complication in lower leg fractures.
The locking screw mechanism ensures a firm attachment to the bone, minimizing the risk of screw loosening or implant failure. This stability is crucial for preventing additional surgeries.
With optimal fixation and alignment, the fracture heals more efficiently, which leads to a faster recovery. Reduced complications contribute to quicker rehabilitation and return to normal function.
The anatomical design of the plate reduces the need for extensive dissection and soft tissue manipulation, minimizing the risk of injury to surrounding structures and promoting a more straightforward recovery.
The adjustable feature allows for better control over the compression, which helps in reducing the chances of post-surgical complications such as wound infection, nonunion, or improper alignment.
Titanium's inherent properties of strength, lightness, and corrosion resistance ensure that the plate can withstand the mechanical stresses placed on the lower leg without compromising the integrity of the implant.
The success of the procedure heavily depends on the surgeon's ability to correctly position and adjust the plate. Inadequate alignment or over-adjustment of the compression could lead to complications such as malunion or delayed healing.
The plate is not suitable for all patients. Individuals with infection, osteoporosis, or allergies to titanium may not be suitable candidates for this implant. Pre-operative assessment is essential to determine the appropriateness of the implant.
Close monitoring of the patient is crucial after surgery. This includes follow-up imaging to ensure proper fixation and to assess for potential complications like implant failure or infection.
Excessive compression may compromise blood supply to the fractured bone or cause damage to surrounding soft tissues. Surgeons must exercise caution during the adjustment process to avoid over-compressing the fracture site.
In some cases, the implant may need to be removed after the bone has healed. This is particularly true in younger patients or those with active lifestyles who may experience discomfort or irritation from the implant.
The plate is highly effective in stabilizing mid-shaft fractures of the tibia, a common result of traumatic injury. The ability to adjust the plate's alignment provides superior control over the reduction of the fracture.
Often occurring alongside tibial fractures, fibula fractures can also be treated effectively with this adjustable plate. The plate helps stabilize both bones and promotes optimal healing, especially in comminuted fractures.
These fractures involve both the tibia and fibula and often require precise alignment to ensure functional recovery. The adjustable plate allows for careful compression of both bones, reducing the risk of complications.
In cases where bone fragments are displaced, the adjustable mechanism enables precise realignment, reducing the risk of malunion or nonunion.
In more complicated fractures where the bone is shattered into several fragments, the Lower Tibia and Fibula Adjustable Titanium Plate offers stability and compression, allowing for better healing.
As the global population ages, the incidence of fractures, especially in weight-bearing bones like the tibia and fibula, is set to increase. This will drive demand for advanced, adjustable implants that offer superior fracture fixation.
Innovations in material science and manufacturing techniques, such as 3D printing and customized implants, will further improve the effectiveness and versatility of these plates, offering better outcomes for patients.
There is a growing trend toward minimally invasive orthopedic procedures, which reduce recovery time and surgical trauma. The adjustability of these plates aligns with this trend, making them ideal for use in less invasive surgeries.
As healthcare access improves in emerging markets, the demand for advanced orthopedic implants will increase, expanding the market for these adjustable plates.
With the increasing emphasis on personalized medicine and patient-specific treatments, the market for customized orthopedic implants, including adjustable plates, is likely to experience significant growth.
The Lower Tibia and Fibula Adjustable Titanium Plate represents a significant advancement in orthopedic fracture fixation technology. Its adjustable locking mechanism, combined with the strength of titanium, allows for precise bone alignment and compression, leading to faster recovery and fewer complications. By providing better stability, alignment, and patient-specific adaptability, this implant is an ideal choice for treating a range of tibial and fibular fractures.
Its benefits extend beyond traditional fixation methods, making it particularly useful in complex or displaced fractures. With continued advancements in implant technology and materials, the future of the Lower Tibia and Fibula Adjustable Titanium Plate looks promising, offering improved outcomes for patients and expanding opportunities for orthopedic professionals globally.
As orthopedic surgery continues to evolve, this innovative plate is set to play a key role in the effective treatment of lower leg fractures, ultimately enhancing patient care and recovery.
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