Osprey Spinal Grafts
Cervical & Lumbar Bio-Implant Allografts from Osprey
Eagle Cervical Series
Osprey® Eagle cervical series allografts provide a bio-implant with a micro-textured surface designed to reduce implant migration and increase surface area for bony apposition. Processed from one continuous and solid piece of cortical bone, Eagle Cervical grafts eliminate the need for fixation pins that could compromise a graft’s mechanical strength.
These patent-pending precision grafts maintain consistent, precise specifications. The radius on both anterior and posterior allows for ease of insertion and endplate preservation. 6° total lordosis, with 3° on each side, provides proper sagittal alignment.
Unique ATPS™ hydrated packaging system maintains the graft’s biomechanical strength, reduces brittleness and fracturing associated with freeze dried methods, and reduces valuable O.R. prep time.
Cervical Series CI
Processed from a solid piece of cortical bone for ideal biomechanical strength
Pre-hydrated with ATPS™ technology
Full instrumentation available, with trials and inserter
Cervical Series CII
A cortical and cancellous bone combination for ideal biomechanical strength with an additional osteoconductive matrix
Cancellous bone center allows for increased endplate contact and eliminates the need for an additional graft filler
Pre-hydrated with ATPS™ technology
Full instrumentation available, with trials and inserter
Ordering Information
Condor ALIF Series
Osprey® Condor ALIF Series allografts provide a bio-implant with unique macro surface and footing surface texture. This surfacing is designed to reduce graft migration, and an enhanced footing channel allows for bony ingrowth. The bi-convex and domed surface is anatomically designed to fit with the endplates, while the radius / chamfer on posterior allows for ease of insertion and endplate preservation.
Processed from one continuous and solid piece of cortical bone, Condor ALIF grafts eliminate the need for fixation pins that could compromise a graft’s mechanical strength. These patent-pending precision grafts maintain consistent, precise specifications. 6° total lordosis, with 3° on each side, provides proper sagittal alignment. A 6mm center channel is ideal for packing a graft extender or filler.
Unique ATPS™ hydrated packaging system maintains the graft’s biomechanical strength, reduces brittleness and fracturing associated with freeze dried methods, and reduces the need for valuable operating room prep time.
Condor ALIF Features
Macro surface and footing for excellent bite and bony ingrowth
Bi-convex design
One continuous and solid piece of precision cortical graft design
Radius/ chamfer on posterior
6° lordosis
Pre-hydrated with ATPS™ technology
Ordering Information
Talon TLIF Series
Osprey® Talon TLIF Series allografts provide a bio-implant with unique macro surface and footing surface texture. This surfacing is designed to reduce graft migration, with an enhanced footing channel allows for bony ingrowth. The chamfer (bullet nosed) shape allows for easier insertion and endplate preservation, and creates a nerve-friendly profile. A precision machined instrument slot ensures solid fit between implant and inserter.
Talon TLIF grafts contain the native bone growth proteins that stimulate the fusion process. They are created from one continuous and solid piece of cortical bone, eliminating the need for fixation pins that could compromise a graft’s mechanical strength. These patent-pending precision grafts maintain consistent, precise specifications.
Unique ATPS™ Bio-Implant Preservation Solution provides hydrated packaging designed to maintain the graft’s biomechanical strength, reduces brittleness and fracturing associated with freeze dried methods, and reduces the need for valuable O.R. prep time.
Talon TLIF Features
Macro surface and footing channel for excellent bite and bony ingrowth
One continuous and solid piece of precision cortical graft design
Bullet nosed shape for easier placement
Nerve friendly profile
A Natural Source For Fusion
Pre-hydrated with ATPS™ technology