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Effects of Porosity Changes in Hydroxyapatite Ceramics Vertebral Spacer on Its Binding Capability to the Vertebral Body : An Experimental Sheep Study

机译:羟基磷灰石陶瓷椎骨间隔物孔隙率变化对其与椎体结合能力的影响:一项实验性绵羊研究

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摘要

OBJECT. The aim of this study was to evaluate the degree of bone ingrowth and bonding stiffness at the surface of hydroxyapatite ceramic (HAC) spacers with different porosities in an animal model and to discuss the ideal porous characteristics of these spacers for anterior spinal reconstruction. METHODS. Twenty-one adult sheep (age 1–2 years, mean weight 70 kg) were used in this experiment. Surgery consisted of anterior lumbar interbody fusion at L2–3 and L4–5, insertion of an HAC spacer (10 * 13 * 24 mm) with three different porosities (0, 3, and 15%), and single-rod anterior instrumentation. At 4 and 6 months postoperatively, the lumbar spines were harvested. Bonding conditions at the bone–HAC spacer interface were evaluated using neuroimages and biomechanically. A histological evaluation was also conducted to examine the state of bone ingrowth at the surface of the HAC spacer. Biomechanical testing showed that the bonding strength of HAC at 6 months postoperatively was 0.047 MPa in 0% porosity spacers, 0.39 MPa in 3%, and 0.49 MPa in 15% porosity spacers. The histological study showed that there was a soft-tissue layer at the surface of the HAC spacer with 0% porosity. Direct bonding was observed between bone and spacers with 3 or 15% porosity. Micro–computed tomography scans showed direct bonding between the bone and HAC with 3 or 15% porosity. No direct bonding was observed in HAC with 0% porosity. CONCLUSIONS. Dense (0%) HAC anterior vertebral spacers did not achieve direct bonding to the bone in the sheep model. The HAC vertebral spacers with 3 or 15% porosity showed proof of direct bonding to the bone at 6 months postoperatively. The higher porosity HAC spacer showed better bonding stiffness to the bone.
机译:宾语。这项研究的目的是评估在动物模型中具有不同孔隙率的羟基磷灰石陶瓷(HAC)垫片表面的骨向内生长程度和结合刚度,并讨论这些垫片对前路脊柱重建的理想多孔特性。方法。在该实验中使用了21只成年绵羊(1-2岁,平均体重70公斤)。手术包括在L2–3和L4–5处进行前腰椎椎体间融合术,插入具有三种不同孔隙率(0%,3%和15%)的HAC垫片(10 * 13 * 24 mm)以及单杆前器械。术后4个月和6个月,收获腰椎。使用神经图像和生物力学评估了骨-HAC间隔物界面的结合条件。还进行了组织学评估,以检查HAC垫片表面的骨向内生长状态。生物力学测试表明,术后6个月,HAC在0%孔隙度垫片中的粘合强度为0.047 MPa,在3%孔隙度垫片中为0.39 MPa,在15%孔隙度垫片中为0.49 MPa。组织学研究表明,HAC垫片的表面有一个软组织层,孔隙率为0%。观察到骨与间隔物之间​​的直接结合,孔隙率为3%或15%。微型计算机断层扫描显示骨骼与HAC之间直接结合,孔隙率为3%或15%。在孔隙率为0%的HAC中未观察到直接键合。结论。在绵羊模型中,致密(0%)的HAC前椎骨间隔物未实现与骨骼的直接结合。具有3%或15%孔隙率的HAC椎体间隔物在术后6个月时显示出直接粘合到骨骼的证据。孔隙率较高的HAC垫片显示出与骨骼更好的粘合刚度。

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