DSI Syntoss Bone Graft Material Multi Layer Granules 1.0cc
DSI Syntoss Bone Graft Material Multi Layer Granules 1.0cc is backordered and will ship as soon as it is back in stock.
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Delivery and Shipping
Shipping Carriers | Shipping Cost | Estimated Delivery Time |
|
---|---|---|---|
USPS Ground | Free | 7-15 Business days | |
UPS® Ground |
$15
(Free on Orders Over $299) |
7-10 Business days | |
UPS® Priority |
$30
(Free on Orders Over $499) |
3-5 Business days | |
FedEx Express Saver® |
$30
(Free on Orders Over $499) |
3-5 Business days |
Shipping Carriers | Shipping Cost | Estimated Delivery Time |
|
---|---|---|---|
USPS First Class Package International |
$20
(Free on Orders Over $199) |
7-21 Business days | |
UPS Worldwide Expedited® |
$45
(Free on Orders Over $499) |
3-4 Business days | |
DHL Worldwide |
$45
(Free on Orders Over $499) |
2-3 Business days |
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- Material:20% β-Tricalcium Phosphate And 80% Hydroxyapatite in Polylactide Glycolide Matrix.
- Qualities: Radiopaque, Synthetic, Safe, Resorbable, Sterile Blister, Osteoconductive, and Osteostimulative.
- Purpose: Missing Bone Filling And Encourage New Bone Tissue.
- Volume: 1.0cc
- Completely Resorbed: 6 To 8 Months
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Country of Manufacture: Israel
- Package Include: DSI Syntoss Bone Graft Material Multi Layer Granules
DSI Syntoss Bone Graft Material Multi-Layer Granules is used as a filler and scaffold to facilitate bone formation and promote wound healing. This graft is bioresorbable and has no antigen-antibody reaction. A special Multi-Layer Granules formula contributes to an improved bone repair process, and to prevent and treatment of purulent complications. The granules are made from radiopaque β-tricalcium phosphate (20%) / hydroxyapatite (80%) in polylactide glycolide matrix. The inner layer of the coating contains sodium hyaluronate, which has a stimulating effect on cell growth and contributes to the activation of reparative osteogenesis in the area of the injury. The material is completely resorbed in 6 to 8 months. Resorption proceeds parallel to the regeneration process.