TYZR
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 | Picture | REF | Specification |
Titanium TLIF Cage | ![]() ![]() | TYZR8X20 | 8x10x20mm |
TYZR8X22 | 8x10x22mm | ||
TYZR8X26 | 8x10x26mm | ||
TYZR10X20 | 10x10x20mm | ||
TYZR10X22 | 10x10x22mm | ||
TYZR10X26 | 10x10x26mm | ||
TYZR12X20 | 12x10x20mm | ||
TYZR12X22 | 12x10x22mm | ||
TYZR12X26 | 12x10x26mm |
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 TLIF Cage Product Catalog.
2. Choose Your Interested Titanium TLIF Cage Product.
3. Ask For A Sample To Test Titanium TLIF Cage.
4.Make An Order Of XC Medico's Titanium TLIF Cage.
5.Become A Dealer Of XC Medico's Titanium TLIF Cage.
1.Better Purchase Prices Of Titanium TLIF Cage.
2.100% The Highest Quality Titanium TLIF Cage.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Titanium TLIF Cage.
6. Quick And Easy Assessment Of XC Medico's Titanium TLIF Cage.
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.
Spinal fusion procedures have evolved significantly with the introduction of Titanium Transforaminal Lumbar Interbody Fusion (TLIF) cages. These implants play a crucial role in stabilizing the spine, promoting bone growth, and restoring proper disc height after degenerative or traumatic spinal conditions. Titanium TLF cages have become the preferred choice due to their superior biocompatibility, mechanical strength, and osteoconductive properties. This article delves into their advantages, applications, risks, and market trends in spinal surgery.
A Titanium TLF cage is an interbody fusion device used in Transforaminal Lumbar Interbody Fusion (TLIF) surgery, a procedure designed to stabilize and fuse the lumbar spine. These cages are made from medical-grade titanium or titanium alloys, offering high durability, excellent biocompatibility, and superior mechanical support.
Unlike traditional PEEK (Polyetheretherketone) cages, titanium cages feature a porous structure that enhances bone ingrowth and fusion rates. They are available in various shapes and sizes, allowing for precise anatomical fit and optimal lordotic correction. The hollow design of these cages permits the addition of bone graft material, facilitating the fusion process.
Titanium has natural osteoconductive properties, enhancing bone fusion compared to non-metallic alternatives.
Provides better load-bearing capacity, reducing the risk of implant subsidence or collapse.
Many modern 3D-printed titanium cages feature a trabecular-like surface, which promotes faster and more robust bone integration.
Unlike PEEK cages, which can cause imaging artifacts, titanium cages allow for clearer post-operative radiographic evaluation.
The textured or roughened surface increases stability within the intervertebral space, minimizing movement post-surgery.
Available in various heights, footprints, and angles, ensuring optimal alignment and load distribution for different patient anatomies.
Restores disc height and reduces nerve compression.
Helps stabilize vertebral slippage and promotes fusion.
Provides rigid stabilization for burst fractures, compression fractures, or unstable vertebral injuries.
Used in revision surgeries where previous discectomy has failed.
Helps reconstruct vertebral stability after tumor removal.
Used in cases of osteomyelitis or tuberculous spondylitis, ensuring structural integrity.
Inadequate bone grafting or biological response may lead to pseudoarthrosis.
Excessive load or poor implant positioning may cause the cage to shift or sink into the vertebral body.
Cage placement may cause foraminal stenosis, leading to nerve compression.
Although rare, some patients may exhibit hypersensitivity to titanium.
Fusion at one level may increase mechanical stress on neighboring segments, leading to future degeneration.
Risks include infection, dural tears, or vascular injury during implantation.
Customized and porous-structured implants are revolutionizing spinal fusion by improving osseointegration.
Surgeons are increasingly using MIS techniques, reducing hospital stays and improving recovery times.
Research is exploring titanium-PEEK hybrid cages to combine the strengths of both materials.
AI-driven surgical planning is optimizing implant selection and positioning for better clinical outcomes.
Countries in Asia-Pacific, Latin America, and the Middle East are investing in advanced orthopedic solutions.
New production methods aim to reduce costs while maintaining high-quality standards.
Titanium TLIF cages have revolutionized lumbar spinal fusion by providing superior mechanical strength, excellent biocompatibility, and enhanced osseointegration. Their role in treating degenerative, traumatic, and oncological spinal conditions continues to expand, with ongoing innovations improving implant design and surgical techniques. While potential risks exist, advancements in 3D printing, minimally invasive approaches, and hybrid materials are shaping the future of spinal fusion surgery. As technology progresses, Titanium TLIF cages will remain a cornerstone of orthopedic spine care, ensuring better clinical outcomes and improved patient recovery.
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 | Picture | REF | Specification |
Titanium TLIF Cage | ![]() ![]() | TYZR8X20 | 8x10x20mm |
TYZR8X22 | 8x10x22mm | ||
TYZR8X26 | 8x10x26mm | ||
TYZR10X20 | 10x10x20mm | ||
TYZR10X22 | 10x10x22mm | ||
TYZR10X26 | 10x10x26mm | ||
TYZR12X20 | 12x10x20mm | ||
TYZR12X22 | 12x10x22mm | ||
TYZR12X26 | 12x10x26mm |
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 TLIF Cage Product Catalog.
2. Choose Your Interested Titanium TLIF Cage Product.
3. Ask For A Sample To Test Titanium TLIF Cage.
4.Make An Order Of XC Medico's Titanium TLIF Cage.
5.Become A Dealer Of XC Medico's Titanium TLIF Cage.
1.Better Purchase Prices Of Titanium TLIF Cage.
2.100% The Highest Quality Titanium TLIF Cage.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Titanium TLIF Cage.
6. Quick And Easy Assessment Of XC Medico's Titanium TLIF Cage.
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.
Spinal fusion procedures have evolved significantly with the introduction of Titanium Transforaminal Lumbar Interbody Fusion (TLIF) cages. These implants play a crucial role in stabilizing the spine, promoting bone growth, and restoring proper disc height after degenerative or traumatic spinal conditions. Titanium TLF cages have become the preferred choice due to their superior biocompatibility, mechanical strength, and osteoconductive properties. This article delves into their advantages, applications, risks, and market trends in spinal surgery.
A Titanium TLF cage is an interbody fusion device used in Transforaminal Lumbar Interbody Fusion (TLIF) surgery, a procedure designed to stabilize and fuse the lumbar spine. These cages are made from medical-grade titanium or titanium alloys, offering high durability, excellent biocompatibility, and superior mechanical support.
Unlike traditional PEEK (Polyetheretherketone) cages, titanium cages feature a porous structure that enhances bone ingrowth and fusion rates. They are available in various shapes and sizes, allowing for precise anatomical fit and optimal lordotic correction. The hollow design of these cages permits the addition of bone graft material, facilitating the fusion process.
Titanium has natural osteoconductive properties, enhancing bone fusion compared to non-metallic alternatives.
Provides better load-bearing capacity, reducing the risk of implant subsidence or collapse.
Many modern 3D-printed titanium cages feature a trabecular-like surface, which promotes faster and more robust bone integration.
Unlike PEEK cages, which can cause imaging artifacts, titanium cages allow for clearer post-operative radiographic evaluation.
The textured or roughened surface increases stability within the intervertebral space, minimizing movement post-surgery.
Available in various heights, footprints, and angles, ensuring optimal alignment and load distribution for different patient anatomies.
Restores disc height and reduces nerve compression.
Helps stabilize vertebral slippage and promotes fusion.
Provides rigid stabilization for burst fractures, compression fractures, or unstable vertebral injuries.
Used in revision surgeries where previous discectomy has failed.
Helps reconstruct vertebral stability after tumor removal.
Used in cases of osteomyelitis or tuberculous spondylitis, ensuring structural integrity.
Inadequate bone grafting or biological response may lead to pseudoarthrosis.
Excessive load or poor implant positioning may cause the cage to shift or sink into the vertebral body.
Cage placement may cause foraminal stenosis, leading to nerve compression.
Although rare, some patients may exhibit hypersensitivity to titanium.
Fusion at one level may increase mechanical stress on neighboring segments, leading to future degeneration.
Risks include infection, dural tears, or vascular injury during implantation.
Customized and porous-structured implants are revolutionizing spinal fusion by improving osseointegration.
Surgeons are increasingly using MIS techniques, reducing hospital stays and improving recovery times.
Research is exploring titanium-PEEK hybrid cages to combine the strengths of both materials.
AI-driven surgical planning is optimizing implant selection and positioning for better clinical outcomes.
Countries in Asia-Pacific, Latin America, and the Middle East are investing in advanced orthopedic solutions.
New production methods aim to reduce costs while maintaining high-quality standards.
Titanium TLIF cages have revolutionized lumbar spinal fusion by providing superior mechanical strength, excellent biocompatibility, and enhanced osseointegration. Their role in treating degenerative, traumatic, and oncological spinal conditions continues to expand, with ongoing innovations improving implant design and surgical techniques. While potential risks exist, advancements in 3D printing, minimally invasive approaches, and hybrid materials are shaping the future of spinal fusion surgery. As technology progresses, Titanium TLIF cages will remain a cornerstone of orthopedic spine care, ensuring better clinical outcomes and improved patient recovery.
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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