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At 8 weeks, there was overall more bone contact compared to 4 weeks.
The remaining 5 mm was due to the surgeon's choice to have more bone contact between the fragments and less of a step-off pushing into the soft tissues from the sliding of the distal fragment posteriorly (Fig. 6b).
In six out of twelve specimens, the screws had no more bone contact after day 20.
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More bone-implant contact also appeared on test implant surfaces.
Previous cadaver studies have shown that SB produces more bone-tendon contact area and pressure than conventional DR technique in cadaver study.
The results showed significantly more bone ingrowth and bone contact in the HA than in the zirconia scaffolds.
The results showed that the chemistry and microporosity of HA promoted more bone ingrowth and bone contact than those of ZrO2 scaffolds in the human maxilla.
Femoral stem-bone anchorage was defined as adequate if 50% of the stem flutes or more had cortical bone contact.
Such modeling will give more insight into implant bone contact stresses and wear in the hip joint, both are important for the prediction of implant survivorship.
Microporous HA scaffolds revealed four times more bone ingrowth and seven times higher bone contact area compared to the ZrO2 scaffolds.
Further analysis revealed that osteoclasts in PI3Kβ−/− mouse sections were more rounded with significantly shorter bone contact length (P = 0.030; n = 30 osteoclasts).
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