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Augmentation of cancellous screw fixation with a bioactive cement (cap) in vivo

机译:在体内使用生物活性水泥(帽)增强松香螺钉固定

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We studied the effect of bioactive cement (CAP) and polymethylmethacrylate (PMMA) cement on augmentation of cancellous screw fixation in rabbit tibia. CAP is composed of 77percent w/w hydroxyapatite granules and bis-phenol-A glycidyl methacrylate-based resin. CAP has superior mechanical strength and osteoconductive property. A cancellous screw was placed in the proximal end of tibia to the point where threads engaged cancellous bone. One side was randomly selected to be augmented with PMMA or CAP. The contralateral side had a screw without cement (control). Thirty-six rabbits were operated on and sacrificed 1 and 3 months after surgery, and then the pull-out strength was determined for each screw. At 1 month mean values of pull-out strength of screws augmented with CAP and PMMA (319+-58N* and 284+-100N**, respectively) were higher than those for controls (control for CAP; 105+-41N* and control for PMMA; 132+-71N**). Although all values of pull-out strength increased at 3 months, the CAP augmented screws maintained the greatest value (CAP vs control; 387+-109N***vs 196+-107N***, PMMA vs control; 372+-145N vs 242+-100N) (*,**,***; p<0.05). The effect of augmentation using CAP was equal with that for PMMA. In addition, CAP may promote and not impede fracture healing because of its osteoconductive property and low curing temperature. These results suggested that CAP had a good potential for clinical indication.
机译:我们研究的生物活性水泥(CAP)和聚甲基丙烯酸甲酯(PMMA)水泥对松螺钉固定的增强家兔胫骨的效果。 CAP由77percent的w / w的羟磷灰石颗粒和-A双酚甲基丙烯酸缩水甘油酯为基础的树脂。 CAP具有优越的机械强度和骨传导性能。甲松质骨螺钉放置在胫骨的近端到螺纹啮合松质骨的点。一侧被随机选择为与PMMA或CAP来增强。对侧有没有水泥(控制)的螺钉。三只均在操作和手术1和3个月后处死,然后确定每个螺钉拔出力。在与CAP和PMMA(319 + -58N *和284 + -100N **,分别地),均较(对照为CAP更高增强螺钉拔出强度1个月平均值; 105 + -41N *和控制PMMA; 132 + -71N **)。虽然拔出力的所有值3个月升高,CAP增强螺钉保持最大的值(CAP与对照; 387 + -109N *** VS 196 + -107N ***,PMMA与对照; 372 + -145N VS 242 + -100N)(*,**,***,p <0.05)。使用CAP增强的效果是与为PMMA相等。此外,CAP可促进并不会妨碍骨折愈合,因为它的骨传导性,低固化温度的。这些结果表明,CAP有用于临床适应症很好的潜力。

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