Allogenics

DBM Allografts & Cancellous Chips

The Viable ABG Fiber and Viable ABG Fiber, Moldable is comprised of demineralized and mineralized cortical bone shavings, mineralized cancellous bone chips and demineralized cortical bone microparticulate.

DBM Fiber Allograft

Infinity DBM Fiber Technology is an advanced bone graft solution containing 100% fibrous demineralized cortical bone. The graft provides osteoinductive potential as well as osteoconduction and can be hydrated with autologous bone marrow or blood.

Composition & Benefits

  • Contains 100% fibrous demineralized cortical bone.
  • Capable of wicking fluid supporting autologous cells and proteins important for cell binding and bone growth.
  • Malleable when hydrated; capable of filling defects of various sizes in the spine, extremities, or pelvis.
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DBM Putty + Cancellous Chips Blend

Composition & Benefits

  • Consist of DBM putty & cortical cancellous bone chips (100% Demineralized human bone).
  • Excellent handling characteristics – will shape and conform to fill unique bony voids
  • Lavage resistant – retains shape and will not wash away or migrate
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DBM Putty Allograft

Infinity DBM Putty is formable and injectable. The graft resists irrigation and can be used to augment autologous cancellous or cortico-cancellous grafts. Infinity DBM Putty is entirely derived from human allograft bone tissue.

Composition & Benefits

  • Formable and injectable.
  • Resists irrigation and can be used to augment autologous cancellous or cortico-cancellous grafts.
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Cancellous Chips

Composition & Benefits

  • Packs well into any size or shaped defect, for maximum surgical flexibility.
  • Available for immediate use with no refrigeration or thawing required.
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Demineralized Allografts – Cubes & Strips

The Viable ABG Fiber and Viable ABG Fiber, Moldable is comprised of demineralized and mineralized cortical bone shavings, mineralized cancellous bone chips and demineralized cortical bone microparticulate.

DBM Sponge Cube Allografts

Composition & Benefits

  • Derived from trabecular bone.
  • Can conform to space defect or implant space (i.e., spinal
    fusion spacers).
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DBM Sponge Strip Allografts

Composition & Benefits

  • Derived from trabecular bone.
  • Capable of filling defects in the spine, pelvis or extremities.
  • Provides the ideal environment for bone healing after hydration
    including vascularization and mineralization.
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Fenestrated Demineralized Cortical Graft (DCG) Strip

Composition & Benefits

  • Processed from entirely from cortical bone
  • Fenestrated to create a surface on and through which
    bone can grow
  • Radiolucent to allow for easy follow up assessment of
    bone formation
  • Rehydrates quickly for ease of use.
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Viable Allogeneic Bone Grafts (ABG)

The Viable ABG Fiber and Viable ABG Fiber, Moldable is comprised of demineralized and mineralized cortical bone shavings, mineralized cancellous bone chips and demineralized cortical bone microparticulate.

Viable ABG Fiber

Composition & Benefits

  • Comprised of cortical shavings, cancellous chips, 100 – 300 µm demineralized cortical bone microparticulate scaffold, and cell mixture.
  • Bone particulate scaffold and cell mixture allows for a cohesive fibrous consistency.
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Viable ABG Fiber, Moldable

Composition & Benefits

  • Includes the components of the Infinity | Viable ABG Fiber
  • An added bone gel component allows for cohesive fibrous moldable
    characteristics.
  • Hydrophobic properties make it more resistant to lavage.
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Viable ABG Putty

Composition & Benefits

  • Comprised of 100 – 300 µm cortical and cancellous bone microparticulate scaffold blend.
  • Bone microparticulate scaffold and cell mixture allows for tight packing of defect with a cohesive wet sand consistency. 
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Viable ABG Putty, Moldable

Composition & Benefits

  • Includes the components of the Infinity | Viable ABG Putty.
  • An added bone gel allows for a moldable allograft that can easily pass
    through a large or open bore syringe.
  • Hydrophobic properties make it more resistant to lavage.
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Documentation