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Manufacturer / Exporter / Supplier Of Allos, Allos Granules, Nevos Fiber, Nevos Putty, Nevos Sponge, Provenda Amniotic Membrane, Ceres Midline Plate
Manufacturer / Exporter / Supplier Of Allos, Allos Granules, Nevos Fiber, Nevos Putty, Nevos Sponge, Provenda Amniotic Membrane, Ceres Midline Plate
The Nevos® Sponge is a cancellous allograft that is demineralized, a process which preserves inherent growth factors and results in sponge-like handling characteristics. Made entirely from cancellous bone, the Nevos® Sponge provides a 3D porous structure with elastic properties, providing maximum surface contact with surrounding structures. When hydrated, the Nevos® Sponge can be easily compressed to fit inside intervertebral cages or irregularly shaped defects.
Biocompatible allograft granules made from cancellous andor cortical bone, most commonly used for spinal fusion, void filling and sinus augmentation. Osteoconductive Allos® Granules provide an optimal osteoconductive scaffold with osteoinductive growth factors that promote cellular ingrowth and rapid incorporation.
The combination of the Ceres® Midline and Standard Anterior Cervical Plates provides greater flexibility in the operating room. The streamlined instrumentation is compatible with Amendia’s Ceres®-C Standalone Cervical Interbody.
The Allos® CC7 is a premium assembled structural allograft that combines the benefits of both cortical and cancellous bone. Cortical planks provide the graft with structural integrity and the dense cancellous center serves as an optimal scaffold for bony in-growth.
Nevos® Putty is a formable and flowable demineralized bone matrix derived from 100% allograft bone. Nevos Putty does not contain any extrinsic carriers and is entirely derived from 100% allograft bone. It resists irrigation and can be used to augment autologous cancellous or corticocancellous grafts. Nevos Putty is provided in a ready to use syringe.
Nevos® Fiber Technology consists of 100% Demineralized Cortical Bone creating a malleable fibrous structure when hydrated with any bioactive agent. The fibrous matrix provides an excellent osteoconductive scaffold with increased osteoinductive potential based on its larger surface area.
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