• 它们可以起源于软骨内或者内的间充质细胞脑膜成骨或者软组织

    They can also arise in endochondral bone; or primitive mesenchymal cells in the brain, meninges, membranous bone, or soft tissue.

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  • 目的探讨基于快速成型技术(RP)组织工程化人工修复骨干缺损成骨性能修复效果可能的修复机制

    Objective To investigate the ability of osteogenesis, repaired effect and possible mechanism of massive tissue engineered bone via RP technique to repair a segmental defect of long bone.

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  • 目的观察自体骨髓移植在缺损瘢痕组织成骨作用。

    Objective to observe osteogenesis of percutaneous autogenous bone marrow into cicatrix of bone defect.

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  • 结论人脱细胞骨复合经诱导骨髓基质细胞体外具有有效成骨功能一种较为理想组织工程材料

    Conclusion HAB loaded with induced BMSCs has an excellent osteogenic function in vitro and presents an effective potential to be a good bone tissue engineering material.

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  • 结论恒定磁场促进组织成骨作用,抑制分解,治疗骨质疏松良好效果的部分机制

    Conclusions Permanent-magnetic field could accelerate bone formation and inhibit bone absorption, thus being the partial mechanism for osteoporosis management.

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  • 目的:建立成骨细胞-脱钙支架复合物观察诱导成骨能力,从而探寻组织工程化体外构建方法

    Objiective to probe into the methods of tissue-engineering bone construction in vitro by building osteoblasts-decalcification bone scaffolds complex and observing its ability of inducing osteogenesis.

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  • 目的了解延长假性生长及其成骨方式组织特点

    Objective:To study the histological characteristics of osteoblast mode of pseudo growth plate in bone lengthening area.

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  • 结论:人脱细胞骨复合经诱导骨髓基质细胞体外具有有效成骨功能一种较为理想组织工程材料

    CONCLUSION: HAB loaded with induced BMSCs has an excellent osteogenic function in vitro and shows an effective potential as a good bone tissue engineering material.

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  • 通过大体观察X线及电生理检查、组织观察等了解下颌骨成骨神经再生情况。

    X-ray, electrophysiological and histological observations were performed to evaluate the qualities of the regenerate bone and inferior alveolar nerve.

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  • 组织学可见实验早期软骨形成软骨内成骨,只是4以后不再有软骨形成及软骨成骨

    Cartilage formation and endochondral ossification were found in test sides at an earlier stage, which stopped after 4 weeks postoperatively.

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  • 王芳葛少华甲状旁腺激素成骨机制及其颌面牙周组织再生研究进展[J]。

    WANG Fang, GE Shao-Hua. Research progress on the osteogenic mechanisms of parathyroid hormone and its effect on craniomaxillofacial and periodontal tissue regeneration[J].

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  • 目的观察鸵鸟转化多相陶瓷支架用于组织工程支架修复颅骨缺损成骨性能

    Objective To observe the osteogenesis of multiphasic calcium phosphate ceramic transformed by ostrich bone loaded with bone marrow stromal cells (BMSCs) in a calvarial defect model.

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  • 物质设计支持机体其它组织构建修复再生增加

    The material is designed to support the constructions, repair, regeneration or augmentation of bone and other tissues of the body.

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  • 结论同种异体msc移植长期存活骨髓组织保存成骨特性

    Conclusion After transplantation, allogeneic MSCs have a long-term surviving in marrow and new bone tissue and maintain the characteristic of ossification.

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  • 结果单纯n, O - CMCS可见少量诱导成骨现象,但成骨作用不明显,并见大量纤维组织修复。

    Results: in pure n, O-CMCS group (group a) there were a little of new bones formation with plenty fibrous tissues ingrowthed.

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  • 其骨组织显微结构分析指出成岩作用业已严重破坏了骨骼哈佛系统结构。

    SEM indicated that the microstructure of Haversian system was destroyed under the impact of bone diagenesis.

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  • 结果单纯n, O - CMCS可见少量诱导成骨现象,但成骨作用不明显,并见大量纤维组织修复

    In pure n, O-CMCS group (group a) there were a little of new bones formation with plenty fibrous tissues ingrowthed.

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  • 通过茜素ARS染色MTT其他组织化学方法来研究RCCS培养14天时力学环境成骨细胞功能状态的影响及其三维培养的研究的成骨潜能

    The osteogenic potential of the cell-CHA scaffold constructs cultured in RCCS were investigated by Alizarin Red S(ARS) staining, MTT method and histochemistry at 14th .

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  • 多糖组织沉积可致成骨发育障碍变形,在关节沉积可引起关节硬化

    Deposition of mucopolysaccharides in bone tissue causes disorder in bone development and deformation of bone; in joint causes hardened joint;

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  • 骨髓间质干细胞可以促进异体移植后成骨作用,在增多成骨同时不影响组织发育

    Bone marrow stem cell can enhance the osteogenesis of bone allograft after transplantation, which increases the bone formation without affecting the development of bone tissue.

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  • 骨髓间质干细胞可以促进异体移植后成骨作用,在增多成骨同时不影响组织发育

    Bone marrow stem cell can enhance the osteogenesis of bone allograft after transplantation, which increases the bone formation without affecting the development of bone tissue.

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