LCP Volar Distal Radius Plate: Advanced Fracture Fixation System with Variable Angle Locking Technology

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lcp volar distal radius plate

The LCP Volar Distal Radius Plate represents a significant advancement in orthopedic surgical solutions, specifically designed for treating distal radius fractures. This innovative fixation system combines sophisticated engineering with anatomical precision to provide optimal support for fracture healing. The plate features a low profile design that conforms seamlessly to the volar surface of the distal radius, minimizing soft tissue irritation while maintaining robust structural integrity. Manufactured from high grade surgical stainless steel or titanium, the plate incorporates multiple locking screw options that enable surgeons to achieve stable fixation across various fracture patterns. The system's distinctive locking mechanism creates a fixed angle construct, effectively preventing screw toggle and backout, which is crucial for maintaining reduction during the healing process. With its anatomically contoured shape, the plate accommodates the watershed line of the distal radius, reducing the risk of flexor tendon complications. The plate system includes both standard and variable angle locking options, providing surgeons with the flexibility to address complex fracture patterns and patient specific anatomical variations. Additionally, the plate's innovative design incorporates specific features for subchondral support, helping to prevent collapse of the articular surface during healing.

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The LCP Volar Distal Radius Plate offers numerous compelling advantages that make it a preferred choice for both surgeons and patients. First and foremost, its anatomically optimized design significantly reduces operative time by eliminating the need for extensive plate contouring during surgery. The system's variable angle locking technology provides surgeons with up to 15 degrees of screw angulation freedom, enabling precise fragment targeting and optimal fracture fixation. This flexibility proves particularly valuable when dealing with complex fracture patterns or addressing specific patient anatomical variations. The plate's low profile configuration minimizes soft tissue irritation and reduces the likelihood of flexor tendon complications, contributing to better patient comfort and recovery outcomes. The locking screw technology creates a stable angular construct that maintains reduction even in osteoporotic bone, making it particularly beneficial for elderly patients. The plate's comprehensive screw hole options facilitate multiple fixation strategies, allowing surgeons to achieve stable fixation while avoiding critical structures. Furthermore, the system's compatibility with both locking and non locking screws provides enhanced versatility in fracture management. The plate's superior mechanical properties ensure reliable fixation while its optimized design promotes early mobilization, which is crucial for achieving better functional outcomes. The system also includes specific features for subchondral support, effectively preventing articular surface collapse during the healing process. Additionally, the plate's design incorporates drill guides that enable precise screw placement, reducing the risk of screw misplacement and potential complications.

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lcp volar distal radius plate

Advanced Locking Mechanism Technology

Advanced Locking Mechanism Technology

The LCP Volar Distal Radius Plate features a state of the art locking mechanism that represents a significant advancement in fracture fixation technology. This innovative system utilizes precisely engineered threaded holes that interface with specially designed locking screws to create a stable angular construct. The threading technology ensures optimal screw to plate interface, effectively preventing screw toggle and backout, which are common concerns in traditional plating systems. The variable angle capability allows surgeons to adjust screw trajectories within a 15 degree cone, providing crucial flexibility in addressing complex fracture patterns while maintaining the benefits of angular stability. This advanced locking mechanism proves particularly valuable in osteoporotic bone, where traditional non locking plates might fail to provide adequate fixation. The system's ability to combine both locking and non locking screws in the same construct offers enhanced versatility in fracture management, allowing surgeons to employ different fixation strategies based on specific fracture characteristics and bone quality.
Anatomically Optimized Design

Anatomically Optimized Design

The plate's design represents a perfect synthesis of anatomical understanding and engineering precision. Every contour and curve has been carefully crafted to match the natural anatomy of the volar distal radius, minimizing the need for intraoperative bending and reducing surgical time. The plate's low profile configuration has been specifically engineered to respect the watershed line of the distal radius, significantly reducing the risk of flexor tendon irritation and potential complications. The design incorporates strategically placed screw holes that allow optimal fragment fixation while avoiding critical anatomical structures. The plate's thickness distribution has been carefully calculated to provide maximum strength where needed while maintaining a low profile in areas prone to soft tissue irritation. This thoughtful design approach extends to the plate's edges, which are carefully smoothed to prevent soft tissue irritation and enhance patient comfort during the recovery period.
Enhanced Fixation Versatility

Enhanced Fixation Versatility

The LCP Volar Distal Radius Plate system offers unprecedented fixation versatility through its comprehensive range of fixation options. The plate features multiple screw hole configurations that accommodate both locking and non locking screws, allowing surgeons to implement hybrid fixation strategies based on specific fracture patterns and bone quality. The variable angle locking technology provides up to 15 degrees of screw angulation freedom, enabling precise targeting of specific fragments while maintaining angular stability. This versatility proves particularly valuable in complex fracture patterns where standard fixed angle constructs might not provide optimal fragment capture. The system includes specific features for subchondral support, effectively preventing articular surface collapse during the healing process. Additionally, the plate's design incorporates specialized targeting guides that facilitate accurate screw placement, reducing operative time and minimizing the risk of screw misplacement.
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