LCP Humerus Plate: Advanced Orthopedic Solution for Superior Fracture Fixation

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lcp humerus plate

The LCP Humerus Plate represents a significant advancement in orthopedic surgical solutions, specifically designed for treating complex fractures of the humerus bone. This innovative fixation system combines the principles of locking compression plate technology with anatomically contoured designs to provide optimal stability and healing potential. The plate features multiple locking holes that accept both locking and cortex screws, offering surgeons enhanced flexibility in fracture fixation approaches. Its sophisticated design incorporates combi-holes that allow for dynamic compression or angular stable fixation, depending on the specific clinical requirements. The plate's thickness gradually reduces from the shaft to the end sections, helping to minimize soft tissue irritation while maintaining structural integrity. Advanced metallurgical engineering ensures the plate exhibits superior fatigue strength and biocompatibility, typically manufactured from high-grade titanium alloy or surgical-grade stainless steel. The system includes both standard and small fragment options, accommodating various patient anatomies and fracture patterns. Additionally, the plate's surface treatment promotes improved osseointegration while reducing the risk of postoperative complications. With its comprehensive range of sizes and configurations, the LCP Humerus Plate system enables surgeons to address both simple and complex fracture patterns effectively, from proximal humerus fractures to shaft fractures and distal humerus injuries.

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The LCP Humerus Plate offers numerous compelling advantages that make it a preferred choice for orthopedic surgeons and patients alike. First and foremost, its anatomically contoured design significantly reduces the need for intraoperative bending, saving valuable operating time and maintaining the plate's structural integrity. The system's versatility in accepting both locking and conventional screws provides surgeons with unprecedented flexibility in treating various fracture patterns. This adaptability allows for both bridge plating techniques in comminuted fractures and compression techniques in simple fractures. The plate's low-profile design minimizes soft tissue irritation and reduces the risk of impingement, particularly important in the shoulder region. The locking mechanism creates a fixed-angle construct, which is especially beneficial in osteoporotic bone where traditional screws might not provide adequate fixation. The plate's innovative combi-holes enable surgeons to use compression techniques when needed while maintaining the option for angular stability. Furthermore, the system's comprehensive size range ensures optimal fit for different patient anatomies, from petite to larger builds. The plate's superior metallurgy provides excellent fatigue strength while maintaining biocompatibility, reducing the risk of adverse tissue reactions. The precise manufacturing tolerances ensure consistent performance and reliable fixation. Additionally, the system includes specialized targeting guides and instruments that facilitate accurate screw placement, reducing operating time and potential complications. The plate's design also incorporates features that help preserve periosteal blood supply, promoting better bone healing and reducing the risk of delayed union or nonunion.

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lcp humerus plate

Advanced Locking Technology

Advanced Locking Technology

The LCP Humerus Plate's advanced locking technology represents a breakthrough in fracture fixation security. The system employs a sophisticated thread-to-thread locking mechanism between the screw head and plate hole, creating a remarkably stable angular construct. This technology effectively transforms the plate and screws into a single unified device, distributing forces evenly across the entire construct. The locking mechanism provides exceptional stability even in poor quality bone, making it particularly valuable for treating osteoporotic patients. The threaded plate holes are precisely manufactured to ensure optimal screw engagement and minimize the risk of cross-threading or screw loosening. This technology also allows for unicortical screw fixation in certain situations, preserving the far cortex and reducing the risk of soft tissue irritation. The system's ability to maintain angular stability helps prevent secondary loss of reduction, particularly important in complex fracture patterns where maintaining alignment is crucial for proper healing.
Anatomical Design Excellence

Anatomical Design Excellence

The anatomical design excellence of the LCP Humerus Plate showcases meticulous attention to human anatomy and biomechanical principles. The plate's contour precisely matches the natural shape of the humerus, minimizing the need for intraoperative modification and ensuring optimal bone contact. The design incorporates specific features for different regions of the humerus, with dedicated proximal, shaft, and distal options. The plate's thickness varies along its length, being thicker in high-stress areas and thinner where soft tissue coverage is critical. The underside of the plate features specialized grooves that help preserve periosteal blood supply, crucial for bone healing. The plate's edges are carefully rounded to prevent soft tissue irritation, while the screw hole placement is optimized for maximum construct stability while avoiding critical anatomical structures.
Versatile Fixation Options

Versatile Fixation Options

The versatile fixation options provided by the LCP Humerus Plate system offer unprecedented flexibility in treating various fracture patterns. The innovative combi-holes accept both locking and conventional screws, allowing surgeons to choose the optimal fixation strategy for each case. This versatility enables the use of compression techniques for simple fractures while maintaining the option for angular stable fixation in complex cases. The system includes multiple screw options, including cortical, cancellous, and periprosthetic screws, each designed for specific clinical situations. The plate's design allows for both standard and minimally invasive surgical techniques, adapting to different surgical approaches and preferences. The system also includes specialized holes for suture fixation, particularly useful in managing associated soft tissue injuries or attaching bone fragments in complex fracture patterns.
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