Showing 1–16 of 33 results
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Low-profile straight plate design
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Optimized for small animal orthopedic applications
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Smooth surface finish for reduced tissue irritation
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Uniform hole spacing for balanced fixation
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Easy intraoperative contouring
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Compatible with 1.5 mm screw systems
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Suitable for trauma and reconstructive procedures
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Available in multiple hole configurations
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High biocompatibility materials
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Reliable mechanical stability
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Specifically designed for canine distal femur and condylar fractures
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Anatomically contoured head for precise condylar fixation
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Optimized for 2.0 mm canine orthopedic screw systems
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Robust 3.2 mm plate thickness for enhanced stability
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Uniform 12 mm hole spacing for predictable screw placement
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Available in left and right anatomical orientations
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Manufactured from surgical stainless steel or medical-grade titanium
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Smooth, polished surface to reduce soft-tissue irritation
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Supports stable fixation and controlled postoperative recovery
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Suitable for medium to large dog orthopedic applications
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Designed for finger joint head and shaft fixation
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2 holes in head + 2 holes in shaft for stable construct
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Anatomically contoured L and T configurations
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Available in Left, Right, and Oblique orientations
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Low-profile design to reduce soft tissue irritation
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Precise hole geometry for controlled screw placement
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Suitable for small fragment and delicate bone fixation
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Smooth surface finish for improved biocompatibility
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Ideal for trauma and reconstructive hand surgery
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Engineered with dynamic compression holes to generate controlled axial compression for stable fracture fixation in veterinary orthopedic procedures.
Slim 2.2 mm thickness and 5 mm width reduce soft tissue irritation while maintaining mechanical strength for small animal applications.
Designed specifically for 2.4 mm veterinary cortical screws, ensuring accurate screw seating and consistent compression performance.
Available in multiple hole options from 4 to 14 holes, allowing flexibility across varied fracture patterns and bone lengths in small animals.
Manufactured in medical-grade stainless steel and titanium to deliver high corrosion resistance, durability, and long-term biocompatibility.
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Anatomically contoured curved design for acetabular anatomy
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Optimized for use with 2.7mm cortical screws
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Low-profile structure to reduce soft-tissue irritation
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High mechanical strength for pelvic load-bearing regions
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Precise screw hole machining for stable fixation
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Suitable for complex acetabular and pelvic fractures
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Available in stainless steel and titanium materials
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Enhanced corrosion and fatigue resistance
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Reduced need for intraoperative plate bending
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Supports modern trauma and reconstructive techniques
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Limited contact design preserves periosteal blood supply
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Compatible with standard 2.7mm cortical screws
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Dynamic compression hole geometry for controlled fixation
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Low-profile anatomical contour
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Available in stainless steel and titanium options
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Wide range of hole and length configurations
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Enhanced load distribution across fracture site
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Reduced bone-plate interface contact
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High mechanical strength and corrosion resistance
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Suitable for precise small bone fracture fixation
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One third tubular profile for balanced strength and flexibility
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Compatible with 2.7mm cortical screws
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Low-profile design minimizes soft tissue irritation
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Uniform hole spacing for stable load distribution
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Available in stainless steel and titanium materials
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Multiple length and hole configurations
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Smooth surgical-grade surface finish
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Reliable fixation for small bone fractures
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Anatomically adaptable plate geometry
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Suitable for trauma and reconstructive procedures
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T-shaped design for enhanced periarticular fixation
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Compatible with 2.7mm cortical screws
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Low-profile contour minimizes soft tissue irritation
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Stable load distribution across head and shaft
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Available in stainless steel and titanium variants
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Multiple hole configuration options
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Anatomically adaptable plate geometry
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Smooth surgical-grade surface finish
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Reliable fixation for small bone fractures
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Designed for consistent orthopedic trauma outcomes
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Broad profile design for enhanced load distribution
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Compatible with 3.5mm cortical screws
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Dynamic compression hole geometry
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Increased rigidity for long bone fixation
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Available in stainless steel and titanium materials
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Multiple hole and length configurations
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Smooth surgical-grade surface finish
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Controlled axial compression capability
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Anatomically adaptable plate contour
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Reliable performance in orthopedic trauma procedures
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Designed for biological osteosynthesis and natural bone healing
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Optimized for minimally invasive plate osteosynthesis (MIPO) techniques
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Reduced central screw density to preserve fracture biology
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Balanced rigidity to promote controlled callus formation
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Consistent 8 mm hole spacing for predictable fixation
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Central hole spacing of 32 mm for bridge plating applications
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Smooth, polished surface to minimize soft-tissue irritation
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Manufactured from veterinary-grade stainless steel or titanium
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Suitable for comminuted and diaphyseal fractures
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Compatible with modern veterinary orthopedic fixation principles
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Contours match canine hind limb anatomy for accurate placement.
Allows controlled compression and enhanced fixation stability.
Supports a wide range of screw sizes for different canine breeds.
Ensures precise anatomical orientation and improved surgical outcomes.
Offered in stainless steel and titanium for surgical preference.
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Designed specifically for canine TPLO procedures
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Cloverleaf-shaped head for enhanced metaphyseal fixation
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Compatible with 3.5 mm cortical screws
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Multidirectional screw placement for rotational stability
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Available in standard and broad configurations
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Optimized for proximal tibial anatomy
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Polished surface to reduce soft-tissue irritation
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High fatigue resistance for active canine patients
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Supports early weight bearing and rehabilitation
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Suitable for medium to large breed dogs
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Promotes axial compression to enhance fracture healing.
Supports plate selection from short to extended fixation lengths.
Available in titanium grade 5 and stainless steel.
Balances strength, rigidity, and soft tissue compatibility.
Integrates easily with standard 2.7 mm screw systems.
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Broad profile for enhanced load-bearing stability
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Dynamic self compression hole geometry
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Compatible with 4.5mm cortical screws
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Supports 6.5mm cancellous screw fixation
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Increased plate thickness for high-stress applications
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Uniform hole spacing for balanced load distribution
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High mechanical strength and durability
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Available in stainless steel and titanium materials
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Extensive range of hole configurations
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Reliable performance in orthopedic trauma procedures
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Designed specifically for 2.0 mm cortical screws
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Dynamic compression holes enable controlled fracture compression
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Low-profile construction reduces soft tissue irritation
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Variable thickness for optimized strength-to-size ratio
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Precision-machined holes for accurate screw alignment
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Smooth surface finish for improved biocompatibility
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Anatomically adaptable for small bone applications
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Available in stainless steel and titanium options
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Suitable for hand, foot, pediatric, and small fragment surgery
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Consistent quality suitable for routine and complex fixation cases
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Enables controlled fracture compression during screw tightening.
Reduces soft tissue irritation and improves postoperative comfort.
Designed specifically for ulna and radius fixation in animals.
Allows precise plate selection for varying fracture patterns.
Offered in stainless steel and titanium for surgical flexibility.