Cannulated Locking Screws: Advanced Orthopedic Fixation Solution for Enhanced Surgical Precision

Get a Free Quote

Our representative will contact you soon.
Email
Name
Company Name
Message
0/1000

canulated locking screws

Cannulated locking screws represent a significant advancement in orthopedic fixation technology, combining innovative design with practical functionality. These specialized surgical implants feature a hollow core running through their length, allowing for precise placement over guide wires during surgical procedures. The screws incorporate a unique threading mechanism that locks securely into corresponding plates, creating a stable, unified construct that enhances fixation strength. Manufactured from high-grade medical titanium or stainless steel, these screws offer exceptional biocompatibility and durability. The cannulated design facilitates accurate positioning and minimizes the risk of misalignment during insertion. Available in various diameters and lengths, these screws accommodate different anatomical requirements and fracture patterns. The locking mechanism prevents screw backout and reduces the likelihood of fixation failure, particularly important in osteoporotic bone. Advanced surface treatments enhance osseointegration, promoting faster healing and reducing the risk of complications. The precision-engineered thread design optimizes grip strength while minimizing tissue damage during insertion. These screws have revolutionized orthopedic surgery by enabling more reliable fixation in challenging cases, particularly in areas with poor bone quality or complex fracture patterns.

Popular Products

Cannulated locking screws offer numerous compelling advantages that make them indispensable in modern orthopedic surgery. The hollow core design enables surgeons to achieve perfect positioning using guide wires, significantly reducing operating time and improving accuracy. This precision placement capability minimizes the need for revision surgeries and ensures optimal healing outcomes. The locking mechanism creates a fixed-angle construct that maintains stability even in compromised bone quality, making these screws particularly valuable for elderly patients or those with osteoporosis. The unified plate-screw system distributes forces more evenly across the fixation construct, reducing the risk of implant failure and improving long-term outcomes. The specialized thread design enhances pull-out strength while minimizing bone damage during insertion. These screws demonstrate exceptional resistance to loosening, a critical factor in achieving successful bone union. The biocompatible materials used in their construction support optimal tissue response and reduce the risk of adverse reactions. Their versatility allows for use in various anatomical locations and fracture patterns, making them a valuable addition to any surgical inventory. The improved stability they provide often allows for earlier mobilization and rehabilitation, potentially leading to faster recovery times. The reduced risk of fixation failure translates to better patient outcomes and fewer complications, ultimately resulting in cost savings for healthcare providers.

Latest News

Multi scenario application analysis: flexible advantages of modular braces in trauma and orthodontics

09

May

Multi scenario application analysis: flexible advantages of modular braces in trauma and orthodontics

View More
From the heel bone to the metatarsal bone: a multi site application case of ankle internal fixation system

09

May

From the heel bone to the metatarsal bone: a multi site application case of ankle internal fixation system

View More
Hollow screws: Understanding their role in minimally invasive surgery

09

May

Hollow screws: Understanding their role in minimally invasive surgery

View More
Application of Intervertebral Fusion Device in Lumbar Fusion Surgery

09

May

Application of Intervertebral Fusion Device in Lumbar Fusion Surgery

View More

Get a Free Quote

Our representative will contact you soon.
Email
Name
Company Name
Message
0/1000

canulated locking screws

Advanced Locking Technology

Advanced Locking Technology

The innovative locking mechanism in these cannulated screws represents a significant technological breakthrough in orthopedic fixation. The precisely engineered threading system creates a rigid connection between the screw and plate, effectively transforming multiple components into a single, stable construct. This fixed-angle stability is particularly crucial in preventing implant failure in osteoporotic bone or complex fracture patterns. The locking technology eliminates toggle between the screw and plate, maintaining reduction position even under dynamic loading conditions. This feature significantly reduces the risk of fixation failure and ensures consistent compression across the fracture site throughout the healing process. The advanced design also minimizes the risk of screw backout, a common complication with traditional non-locking screws.
Enhanced Surgical Precision

Enhanced Surgical Precision

The cannulated design of these locking screws revolutionizes surgical accuracy and efficiency. The hollow core allows for guided placement over pre-positioned wires, ensuring optimal screw trajectory and positioning. This feature significantly reduces the risk of misalignment and the need for revision surgeries. Surgeons can confirm proper placement through radiographic imaging before final insertion, enhancing confidence in screw positioning. The design also facilitates minimally invasive techniques, as the guide wire system enables accurate screw placement through smaller incisions. This precision reduces operative time, minimizes tissue trauma, and improves overall surgical outcomes. The ability to achieve accurate first-time placement is particularly valuable in anatomically challenging areas or when working with limited visibility.
Superior Biomechanical Performance

Superior Biomechanical Performance

The biomechanical properties of cannulated locking screws set new standards for orthopedic fixation. The combination of cannulation and locking technology creates a construct that optimally distributes forces across the fixation site. The specialized thread design maximizes pull-out strength while minimizing damage to surrounding bone tissue. This superior mechanical performance is particularly evident in osteoporotic bone, where traditional screws often fail to provide adequate fixation. The unified plate-screw system creates a stable platform that resists both axial and rotational forces, maintaining fracture reduction throughout the healing process. The improved stability often allows for earlier mobilization and rehabilitation, potentially accelerating recovery times. The screws demonstrate exceptional resistance to fatigue failure, ensuring long-term fixation reliability.
logo