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首页> 外文期刊>Journal of biomedical materials research, Part A >Analytical Technique for Quantification of Selected Resorbable Calcium Phosphate Bone Void Fillers with the Use of Polarized-Light Microscopy
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Analytical Technique for Quantification of Selected Resorbable Calcium Phosphate Bone Void Fillers with the Use of Polarized-Light Microscopy

机译:偏光显微镜定量分析可吸收的磷酸钙骨空隙填充物的分析技术

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摘要

Synthetic calcium phosphate bone void fillers promote varying rates of bone formation and material resorption depending on chemistry, porosity, pore structure, and implant site. The objective of this study was to quantify the resorption of a novel ultraporous beta-tricalcium phosphate cancelious bone void filler with simultaneous quantification of bone formation in a canine humerus model. Potential measurement error involved in conventional histomorphometry using Von Kossa stains inspired the development of a new technique. This technique utilizes bright-field and polarized-light microscopy in conjunction with image analysis software, allowing more accurate histomorphometry. This technique was validated with two separate controlled experiments. Scanning electron microscopy further supported the results. The findings suggest that the use of polarized-light microscopy combined with image analysis software can be an effective tool in simultaneously quantifying calcium phosphate resorption and bone formation.
机译:合成磷酸钙骨空隙填充剂根据化学性质,孔隙率,孔结构和植入部位的不同,促进骨形成和材料吸收的速率不同。这项研究的目的是量化一种新型的超多孔β-磷酸三钙消除性骨空隙填充剂的吸收,同时定量犬肱骨模型中的骨形成。使用冯·科萨(Von Kossa)染色剂进行常规组织形态测定法所涉及的潜在测量误差激发了新技术的发展。该技术结合图像分析软件,利用了明场和偏光显微镜,可以进行更精确的组织形态测定。这项技术已通过两个独立的对照实验验证。扫描电子显微镜进一步证实了该结果。研究结果表明,将偏振光显微镜与图像分析软件结合使用可以有效地同时量化磷酸钙的吸收和骨形成。

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