Veterinary Mini Micro Fragment System Trauma Plates
Stainless steel surgical grade plates with low-profile locking screws for precision anatomical micro-fixation.
Inquire NowExplore our hospital-grade intramedullary nails, mini-micro fragment systems, and orthopedic trauma kits designed for optimal anatomical fit and mechanical stability.
Stainless steel surgical grade plates with low-profile locking screws for precision anatomical micro-fixation.
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Modular trauma fixation set equipped with CE/ISO13485 certification for small bone fracture realignment.
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High-tenacity titanium construct with anatomical plating, color-coded screws, and ergonomic drill guides.
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Full manual locking set engineered for high stress-bearing small diaphyseal and articular fractures.
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Complete tray featuring precision countersinks, depth gauges, bending pliers, and sleeve guides.
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Dedicated maxillofacial, metacarpal, and phalangeal repair system designed for minimal soft-tissue disruption.
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Versatile trauma set compatible with dynamic compression and rigid locking protocols.
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Heavy-duty biomechanical construct crafted specifically for canine and feline orthopedic reconstructions.
Inquire NowThe femoral shaft is subject to the largest mechanical loads within the human appendicular skeleton, enduring axial loads upwards of three to four times total body weight during normal gait cycles. Managing femoral diaphyseal, subtrochanteric, and retrotrochanteric fractures demands an intramedullary device that balances flexural rigidity, torsional stability, and biological fracture healing environment preservation.
As a leading femoral interlocking nailing system supplier and exporter, our implants are engineered to restore length, alignment, and rotation. Utilization of anatomical anterolateral bow radii (ranging from 1.0 to 1.5 meters) prevents anterior cortex impaction and cortical blowout during reamed or unreamed nail insertion procedures.
| Specification Parameter | Titanium Alloy (Ti-6Al-4V ELI / ASTM F136) | Stainless Steel (316L / ASTM F138 / ISO 5832-1) |
|---|---|---|
| Ultimate Tensile Strength (MPa) | ≥ 860 MPa | ≥ 690 MPa |
| Yield Strength (0.2% Offset) | ≥ 790 MPa | ≥ 460 MPa |
| Elastic Modulus (GPa) | 110 GPa (Closer to cortical bone ~18 GPa) | 200 GPa (Higher structural stiffness) |
| Fatigue Resistance Limit | Superior cyclic fatigue endurance | High torque and torsional yield limits |
| MRI Compatibility | Artifact-reduced magnetic resonance imaging | Standard diagnostic imaging compatibility |
To accommodate diverse clinical presentations—from high-energy comminuted shafts to ipsilateral femoral neck fractures—our advanced femoral nailing systems feature multi-planar targeting configurations:
Every nail is complemented by deep thread locking screws engineered with self-tapping flutes to eliminate the necessity for secondary tapping, reducing intraoperative OR time and thermal osteonecrosis risk.
Key insights driving global hospital purchasing decisions, tender requirements, and orthopedic surgical technology adoption.
Modern surgical centers are moving away from rigid lag screws toward expandable helical blade options that collapse under controlled axial weight-bearing, reducing cut-out rates in osteoporotic bone structures.
High-growth hospital procurement teams require OEM suppliers capable of rapid custom implant fabrication using patient CT scan data, delivering anatomical curvature accuracy for complex deformities.
Global tenders increasingly mandate pre-sterilized, gamma-irradiated single-use implant packaging to streamline inventory management, guarantee 100% sterility, and decrease autoclave processing overhead.
A world-renowned manufacturer delivering unmatched manufacturing capability, regulatory safety compliance, and OEM/ODM flexibility.
Detailed answers regarding regulatory certifications, material safety, ordering logistics, and surgical instrumentation.
Partner with Uteshiya Medicare—a trusted global supplier and exporter of femoral interlocking nailing systems, micro-fragment systems, and trauma instrumentation.