Figure 9 - 1 : Degenerated articular cartilage and torn meniscus of the knee.
图9-1:膝关节退化的软骨和撕裂的半月板.
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As a result, the infernal circle finally lead to articular cartilage cataplasia.
以至形成恶性循环, 最终导致关节软骨退变.
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Articular cartilage also can be cryopreserved in this manner.
关节软骨也可用类似方法冻存.
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Pluronic group : 25 % Pluronic F - 127 was poured into the articular cartilage defects.
单纯支架组只将 25%Pluronic F-127注入股骨内髁软骨缺损区.
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Objective Investigate the relationship of menisci rupture and articular cartilage injury.
目的探讨关节软骨损伤与半月板破裂的关系.
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Osteoarthritis is due to wear and tear with loss of articular cartilage.
骨关节炎源于关节软骨的磨损破坏甚至丧失.
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MRI can delineate normal meniscus and articular cartilage.
MRI显示正常半月板及关节软骨的外形、信号强度.
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After injury , articular cartilage has limited self - repair ability. The injury tissue cannot form normal hyaline cartilage.
关节软骨损伤后 自我 修复能力有限, 不能形成正常透明软骨.
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Damaged articular cartilage a limited intrinsic capacity to heal itself a clinical challenge.
关节软骨损伤、退变或其他病变时均可导致软骨面的缺损,缺损后依靠自身修复的能力很低.
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Conclusion: Manipulation can improve SOD activity of DOA and alleviative degeneration of articular cartilage.
结论: 手法可提高兔膝关节骨性关节炎滑膜组织中SOD活性及减缓关节软骨退变.
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The development of tissue - engineered technique provide a new way for the repair of articular cartilage defect.
组织工程技术的兴起,为关节软骨缺损修复提供一条新的途径.
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Based on the reference materials of ten years , author summarized the machanism of articular cartilage injury.
采用文献资料综述的方法,从生物力学、生物化学、分子生物学等方面阐述了关节软骨损伤的机理.
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Eventually, the necrotic bone collapses, distorting the overlying articular cartilage and producing secondary osteoarthritis.
最后, 坏死骨塌陷, 扭曲叠压关节软骨从而产生继发性骨关节炎.
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To investigate the new development of repairing articular cartilage defect with free autogenous periosteal graft.
探讨自体骨膜游离移植修复关节软骨缺损的研究进展.
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