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A400 Resources

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A400 Features and Benefits

Addresses a range of patient anatomy 15 sizes in both standard and lateral implant configurations 10 degree anteverted neck option 5 femoral head offsets Reduced distal design option for proximal/distal femur mismatch Multiple advanced bearing options 28, 32, 36 and 40mm head diameters CoCr and BIOLOX®† delta ceramic femoral heads MAX Highly Crosslinked Polyethylene E-MAX […]

A450 Acetabular Cup System

Provides intraoperative flexibility for primary and revision hip surgery and multiple advanced bearing options. The A450 Acetabular System offers a full range of shell and liner configurations, providing intraoperative flexibility for optimizing the reconstruction of the acetabular anatomy. The shell is manufactured from titanium alloy, with a commercially-pure titanium plasma coating. Advanced low-wear bearing options […]

A450 Design Rationale

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MAX Highly Crosslinked Polyethylene

Acetabular Inserts MAX Highly Crosslinked Polyethylene for hip bearings has excellent wear resistance while preserving strength through an innovative annealing process that does not require melting.   Highly Crosslinked for Low Wear In hip simulator testing, MAX demonstrated 95% less wear than conventional polyethylene. [1] Mechanically Annealed During radiation crosslinking of polyethylene, free radicals are […]

E-MAX Highly Crosslinked Polyethylene Acetabular Inserts

E-MAX Highly Crosslinked Polyethylene with Vitamin E for hip bearings builds on the successes of first generation XLPE by incorporating two innovative technologies: Vitamin E and mechanical annealing. Vitamin E is added to inhibit in vivo oxidation, which can cause degradation of the polymer material. [1,2] The mechanical anneal—as opposed to melting—helps maintain mechanical properties. […]

BIOLOX delta Ceramic Heads

Paired with E-MAX Highly Crosslinked Polyethylene for a complete bearing solution, engineered for long-term performance. What is BIOLOX®† delta? BIOLOX delta is zirconia-toughened alumina ceramic. This nanocomposite was engineered to provide the well-known advantages of previous generation alumina ceramics with the addition of improved fracture toughness. E-MAX Highly Crosslinked Polyethylene and BIOLOX delta ceramic are […]

S100 Pedicle Screw System

The S100 Pedicle Screw System provides surgeons with a comprehensive range of intraoperative options for reduction of spinal deformities, stabilization of unstable spinal segments, and enhanced fusion. The implants and instrumentation were designed to streamline the operative procedure and to accommodate variations in patient anatomy. This top-loading, low-profile system includes multi-axis pedicle screws, with up […]

E-MAX Highly Crosslinked Polyethylene

E-MAX is a step forward in the evolution of highly crosslinked polyethylene (XLPE) for orthopedic total joint bearing surfaces. Highly crosslinked A proven strategy for reducing in vivo wear [1-10] Mechanically annealed Eliminates* free radicals without the problems of melting [11,12] Vitamin E blended Intended to provide oxidative stability over time in vivo [12,13] Like […]

S100 Pedicle Screw System

with Helical Flange Technology Designed for ease of insertion and secure assembly for stabilization of unstable spinal segments and enhanced fusion. The locking cap features Helical Flange®† Locking Technology, designed to: Minimize cross-threading Prevent “tulip splay” Ensure construct rigidity Learn more about the features and options within the S100 Pedicle Screw System. †Helical Flange is […]