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OLECRANON LCP - TiCP
尺骨鹰嘴锁定接骨板适用于尺骨鹰嘴骨折及尺骨近端骨折的治疗,采用解剖型轮廓设计,为关节内及关节外骨折提供稳定的成角固定。
Olecranon locking plate is indicated for olecranon and proximal ulna fractures, with anatomical contour design to provide stable angular fixation for intra-articular and extra-articular fractures.
Anatomically pre-contoured olecranon design optimized for the posterior proximal ulna anatomy
Anatomically pre-contoured olecranon design optimized for the posterior proximal ulna anatomy
Titanium (TiCP) construction offering high strength, fatigue resistance, and excellent biocompatibility
Low-profile plate design to reduce soft tissue irritation and minimize hardware prominence
Multiple proximal locking screw options for secure fixation of the olecranon articular fragment
Combination locking and compression holes allowing flexible fixation strategies
Optimized screw trajectories to enhance purchase in small proximal ulna fragments
Extension capability along the ulnar shaft for additional stability in comminuted fractures
The Olecranon LCP – TiCP is indicated for:
Olecranon fractures (simple, comminuted, and displaced patterns)
Intra-articular proximal ulna fractures
Monteggia fractures (as part of ulna fixation strategy)
Comminuted proximal ulna fractures
Nonunion or malunion of olecranon fractures
Osteoporotic fractures of the proximal ulna
Complex elbow injuries requiring stable posterior ulna fixation
Provides rigid fixation of the olecranon articular surface for accurate joint reconstruction
Enables early range of motion of the elbow joint after stable fixation
Improves stability in comminuted and osteoporotic bone conditions
Reduces risk of implant failure through locking plate stability
Anatomical design minimizes need for intraoperative bending
Titanium material enhances biocompatibility and reduces soft tissue irritation
Left and right anatomical plate versions
Multiple plate lengths extending along the ulnar shaft
Locking and cortical screw compatibility
Variable angle screw options for fragment-specific fixation
Pre-contoured olecranon geometry for improved surgical fit