HP12Z99
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
Availability: | |
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Quantity: | |
PRODUCT NAME | REF | SPECIFICATION | PIC |
Titanium Plate(Crab)-AC | HP12Z99 | 8×10×1.5mm | ![]() ![]() |
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 Titanium Plate Product Catalog.
2. Choose Your Interested Titanium Plate Product.
3. Ask For A Sample To Test Titanium Plate Quality.
4.Make An Order Of Xc Medico's Titanium Plate.
5.Become A Dealer Of Xc Medico's Titanium Plate.
1. Better Purchase Prices Of Titanium Plate.
2.100% The Highest Quality Titanium Plate.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Titanium Plate.
6. Quick And Easy Assessment Of XC Medico's 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.
Titanium plates have become a cornerstone in modern orthopedic surgery due to their strength, biocompatibility, and durability. These plates are extensively used in the stabilization and fixation of fractures, particularly in cases of complex bone fractures, providing essential support during the healing process. In this comprehensive guide, we will delve into the various aspects of titanium plates, including their features, advantages, and applications in the treatment of fractures.
A titanium plate is a type of orthopedic implant used to stabilize and align fractured bones during the healing process. Made from titanium or its alloys, these plates are designed to be fixed to the bone with screws, offering the mechanical support needed to promote proper bone healing. The inherent properties of titanium — such as lightweight, high strength, and resistance to corrosion — make it an ideal material for use in bone fixation.
Titanium plates are often used in fractures of the long bones, pelvis, and spinal column, providing stable fixation to facilitate the natural healing process. Their biocompatibility ensures minimal risk of rejection or complications associated with the implant.
Titanium plates offer a strong yet lightweight solution, ensuring the necessary strength for bone fixation while minimizing added weight, which is essential in complex surgeries where maintaining the patient’s mobility and comfort is crucial.
Titanium plates are highly resistant to corrosion from bodily fluids, reducing the risk of complications related to infections or implant degradation over time.
Titanium is recognized for its biocompatibility, meaning it integrates well with the human body without causing significant adverse reactions. This property is essential in preventing immune rejection or inflammatory responses.
While titanium plates are highly durable, they also allow for clear X-ray imaging and MRI scans, ensuring that surgeons can monitor the healing process and assess the alignment of the bones and plate without interference from the implant.
Titanium plates come in various shapes, sizes, and designs, allowing surgeons to select the most suitable option for different types of fractures. Customizable designs are available for challenging fractures, enabling precise fixation.
Titanium plates provide stable fixation, allowing bones to heal in their correct anatomical alignment. This stability prevents displacement and promotes faster recovery, particularly in fractures that might otherwise require longer periods of immobilization.
The corrosion-resistant nature of titanium reduces the likelihood of bacterial growth on the plate, which lowers the risk of post-surgical infections.
Titanium plates are lightweight and designed for optimal fit, reducing discomfort for patients during their recovery period. Furthermore, the biocompatibility minimizes complications related to allergic reactions or tissue irritation.
Titanium plates exhibit excellent fatigue resistance. This means they can withstand the repetitive stresses applied to bones during movement without bending or breaking, a critical feature for orthopedic implants.
The longevity of titanium plates makes them ideal for permanent implants, as they do not degrade over time and provide reliable support throughout the healing process and beyond.
The correct selection of plate size, shape, and the exact placement of the plate is essential for ensuring effective fixation. Improper placement can lead to malunion or nonunion of the bone fracture.
While titanium plates are biocompatible, certain pre-existing medical conditions such as osteoporosis or poor bone quality may require special consideration. Surgeons should assess the patient’s bone health before using titanium plates.
The success of the procedure depends on the skill of the surgeon. Infection prevention, proper sterilization, and careful handling of the implant are vital to minimizing complications.
Regular follow-up visits are necessary to ensure that the titanium plate remains securely in place and that no complications, such as infection or hardware failure, develop.
In certain anatomical locations, such as the spine or areas with high mechanical loads, titanium plates may not always provide adequate support. In such cases, additional support mechanisms, such as bone grafts or hybrid fixation methods, may be considered.
Fractures of the femur, tibia, and humerus are often stabilized with titanium plates to restore bone alignment and facilitate healing. These fractures may result from trauma, sports injuries, or falls, and the plate ensures that the bones remain in the correct position.
Pelvic fractures often require surgical intervention, and titanium plates are used to stabilize the fractured segments of the pelvis. The high strength of the plates ensures that the pelvis maintains its shape and function during recovery.
In some cases, spinal fractures involving the vertebrae are treated with titanium plates to secure the bones and prevent further damage. These implants help in the stabilization of the spine, preventing deformity and restoring mobility.
Complex fractures where the bone is broken into multiple pieces (comminuted fractures) benefit from titanium plates' ability to stabilize fractured bone fragments, preventing movement and promoting healing.
As the global population ages, the incidence of fractures due to osteoporosis and age-related bone conditions is increasing, driving the demand for orthopedic implants like titanium plates.
Minimally invasive surgeries and robotic-assisted surgeries are becoming more prevalent, increasing the need for precise, reliable implants. Titanium plates fit well into these modern surgical approaches, offering durability and ease of use.
Ongoing improvements in titanium alloy technology and the customization of plates will further enhance the clinical applications of titanium plates, allowing for more tailored solutions for specific fractures.
With the rise in recreational and professional sports activities worldwide, there is an increasing demand for advanced orthopedic treatments. Titanium plates will continue to be used to address fractures resulting from high-impact sports.
As healthcare infrastructure improves in emerging economies, the demand for high-quality orthopedic implants, including titanium plates, will rise, expanding the global market for these implants.
Titanium plates are essential components in modern orthopedic surgery, offering numerous benefits in the stabilization and fixation of bone fractures. Their biocompatibility, strength, lightweight nature, and corrosion resistance make them an ideal choice for a wide range of fractures, from simple bone breaks to complex pelvic and spinal fractures.
While proper surgical technique and precautionary measures are critical for success, titanium plates offer a reliable, durable solution that promotes fast recovery and long-term functionality. As the market continues to expand, the future of titanium plates in orthopedic treatments is bright, with advancements in material science and surgical techniques expected to drive further improvements in patient outcomes.
Overall, titanium plates represent a powerful tool in the arsenal of orthopedic surgeons, ensuring that fractures heal effectively and that patients regain their full range of motion in a timely manner.
PRODUCT NAME | REF | SPECIFICATION | PIC |
Titanium Plate(Crab)-AC | HP12Z99 | 8×10×1.5mm | ![]() ![]() |
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 Titanium Plate Product Catalog.
2. Choose Your Interested Titanium Plate Product.
3. Ask For A Sample To Test Titanium Plate Quality.
4.Make An Order Of Xc Medico's Titanium Plate.
5.Become A Dealer Of Xc Medico's Titanium Plate.
1. Better Purchase Prices Of Titanium Plate.
2.100% The Highest Quality Titanium Plate.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Titanium Plate.
6. Quick And Easy Assessment Of XC Medico's 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.
Titanium plates have become a cornerstone in modern orthopedic surgery due to their strength, biocompatibility, and durability. These plates are extensively used in the stabilization and fixation of fractures, particularly in cases of complex bone fractures, providing essential support during the healing process. In this comprehensive guide, we will delve into the various aspects of titanium plates, including their features, advantages, and applications in the treatment of fractures.
A titanium plate is a type of orthopedic implant used to stabilize and align fractured bones during the healing process. Made from titanium or its alloys, these plates are designed to be fixed to the bone with screws, offering the mechanical support needed to promote proper bone healing. The inherent properties of titanium — such as lightweight, high strength, and resistance to corrosion — make it an ideal material for use in bone fixation.
Titanium plates are often used in fractures of the long bones, pelvis, and spinal column, providing stable fixation to facilitate the natural healing process. Their biocompatibility ensures minimal risk of rejection or complications associated with the implant.
Titanium plates offer a strong yet lightweight solution, ensuring the necessary strength for bone fixation while minimizing added weight, which is essential in complex surgeries where maintaining the patient’s mobility and comfort is crucial.
Titanium plates are highly resistant to corrosion from bodily fluids, reducing the risk of complications related to infections or implant degradation over time.
Titanium is recognized for its biocompatibility, meaning it integrates well with the human body without causing significant adverse reactions. This property is essential in preventing immune rejection or inflammatory responses.
While titanium plates are highly durable, they also allow for clear X-ray imaging and MRI scans, ensuring that surgeons can monitor the healing process and assess the alignment of the bones and plate without interference from the implant.
Titanium plates come in various shapes, sizes, and designs, allowing surgeons to select the most suitable option for different types of fractures. Customizable designs are available for challenging fractures, enabling precise fixation.
Titanium plates provide stable fixation, allowing bones to heal in their correct anatomical alignment. This stability prevents displacement and promotes faster recovery, particularly in fractures that might otherwise require longer periods of immobilization.
The corrosion-resistant nature of titanium reduces the likelihood of bacterial growth on the plate, which lowers the risk of post-surgical infections.
Titanium plates are lightweight and designed for optimal fit, reducing discomfort for patients during their recovery period. Furthermore, the biocompatibility minimizes complications related to allergic reactions or tissue irritation.
Titanium plates exhibit excellent fatigue resistance. This means they can withstand the repetitive stresses applied to bones during movement without bending or breaking, a critical feature for orthopedic implants.
The longevity of titanium plates makes them ideal for permanent implants, as they do not degrade over time and provide reliable support throughout the healing process and beyond.
The correct selection of plate size, shape, and the exact placement of the plate is essential for ensuring effective fixation. Improper placement can lead to malunion or nonunion of the bone fracture.
While titanium plates are biocompatible, certain pre-existing medical conditions such as osteoporosis or poor bone quality may require special consideration. Surgeons should assess the patient’s bone health before using titanium plates.
The success of the procedure depends on the skill of the surgeon. Infection prevention, proper sterilization, and careful handling of the implant are vital to minimizing complications.
Regular follow-up visits are necessary to ensure that the titanium plate remains securely in place and that no complications, such as infection or hardware failure, develop.
In certain anatomical locations, such as the spine or areas with high mechanical loads, titanium plates may not always provide adequate support. In such cases, additional support mechanisms, such as bone grafts or hybrid fixation methods, may be considered.
Fractures of the femur, tibia, and humerus are often stabilized with titanium plates to restore bone alignment and facilitate healing. These fractures may result from trauma, sports injuries, or falls, and the plate ensures that the bones remain in the correct position.
Pelvic fractures often require surgical intervention, and titanium plates are used to stabilize the fractured segments of the pelvis. The high strength of the plates ensures that the pelvis maintains its shape and function during recovery.
In some cases, spinal fractures involving the vertebrae are treated with titanium plates to secure the bones and prevent further damage. These implants help in the stabilization of the spine, preventing deformity and restoring mobility.
Complex fractures where the bone is broken into multiple pieces (comminuted fractures) benefit from titanium plates' ability to stabilize fractured bone fragments, preventing movement and promoting healing.
As the global population ages, the incidence of fractures due to osteoporosis and age-related bone conditions is increasing, driving the demand for orthopedic implants like titanium plates.
Minimally invasive surgeries and robotic-assisted surgeries are becoming more prevalent, increasing the need for precise, reliable implants. Titanium plates fit well into these modern surgical approaches, offering durability and ease of use.
Ongoing improvements in titanium alloy technology and the customization of plates will further enhance the clinical applications of titanium plates, allowing for more tailored solutions for specific fractures.
With the rise in recreational and professional sports activities worldwide, there is an increasing demand for advanced orthopedic treatments. Titanium plates will continue to be used to address fractures resulting from high-impact sports.
As healthcare infrastructure improves in emerging economies, the demand for high-quality orthopedic implants, including titanium plates, will rise, expanding the global market for these implants.
Titanium plates are essential components in modern orthopedic surgery, offering numerous benefits in the stabilization and fixation of bone fractures. Their biocompatibility, strength, lightweight nature, and corrosion resistance make them an ideal choice for a wide range of fractures, from simple bone breaks to complex pelvic and spinal fractures.
While proper surgical technique and precautionary measures are critical for success, titanium plates offer a reliable, durable solution that promotes fast recovery and long-term functionality. As the market continues to expand, the future of titanium plates in orthopedic treatments is bright, with advancements in material science and surgical techniques expected to drive further improvements in patient outcomes.
Overall, titanium plates represent a powerful tool in the arsenal of orthopedic surgeons, ensuring that fractures heal effectively and that patients regain their full range of motion in a timely manner.
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