• 所有研究评价磷酸钙水泥治疗干骺端松质

    All of the studies evaluated the use of calcium phosphate cement for the treatment of metaphyseal fractures occurring primarily through trabecular, cancellous bone.

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  • 研究羟丙基甲基纤维素磷酸钙水泥可注射影响

    To study the influence of hydroxypropyl methyl cellulose (HPMC) on injectability of calcium phosphate cements (CPC).

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  • 目的研究复合抗生素磷酸钙水泥理化性质影响

    Objective:To study the effects of the physicochemical properties of calcium phosphate cement (CPC)mixed by antibiotics.

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  • 目的自已合成聚合磷酸钙水泥细胞毒性进行了研究。

    Aim: The cytotoxicity of polymeric calcium phosphate bone cement was studied.

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  • 磷酸钙水泥强化松动弓根螺钉固定生物力学测试结果

    Biomechanical testing results of CPC in the reinforcement of loose vertebral pedicle screw fixation.

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  • 磷酸钙水泥生物相容性易于塑型的特点使成为研究热点

    Attention is focused on the research of calcium phosphate bone cement because of its excellent biocompatibility and shapeability.

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  • 利用冷冻塑形法制具有定向孔隙结构的大孔磷酸钙水泥支架

    A macroporous calcium phosphate cement scaffold with oriented pore structure is prepared by freeze casting.

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  • 目的生物力学方面评价磷酸钙骨水泥弓根螺钉固定强化作用

    OBJECTIVE: To evaluate the reinforcing effect of CPC on vertebral pedicle screw fixation at biomechanical aspect.

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  • 失重检测表明,酸化羟基磷灰石水泥的失重率改变明显高于磷酸钙骨水泥

    In vitro test of the rate of weight losses demonstrated that the dissolution of carbonated hydroxyapatite cement was better than the calcium phosphate cement.

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  • 载药磷酸钙水泥一种修复局部药物缓释于一体的新型硬组织修复材料。

    Calcium phosphate cements (CPC) are used for bone defect filling and may also be used as delivery systems for active agents.

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  • 目的研究自制磷酸钙水泥生物相容性安全性其临床应用提供实验依据

    Objective: To provide experimental basis for clinical application through studying on the biocompatibility and security of homemade calcium phosphate cement.

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  • 目的本实验旨在周期试验方面证实磷酸钙水泥弓根螺钉固定强化作用。

    Objective To determine if calcium phosphate cement can enhance vertebral pedicle screw fixation in the osteoporotic spine through periodical anti-bending test.

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  • 目的:评价新型磷酸钙水泥生物相容性安全性,从而缺损修复领域中的临床运用提供依据。

    AIM: To study the biocompatibility and safety of strontium containing calcium phosphate cement for the clinical use in the bone reconstruction.

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  • 磷酸钙水泥具有良好的生物相容性、引导活性生物降解性,具有一定的强度一种较理想移植替代材料。

    With excellent biocompatibility, osteoconductive properties, biodegradation and a high compressive strength, CPC can be an ideal bone substitute, and its clinical use in future seems promising.

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  • 但是磷酸钙骨水泥作为组织工程应用支架材料强度不足,而且孔隙越高,孔径越大,强度越低,严重限制该类材料应用。

    The higher the porosity is, the bigger the pores are and the lower the strength is. Because of all of above the material cannot be used widely.

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  • 结果所制备磷酸钙骨水泥主要成分为低结晶度的羟基磷灰石(HA),对基质干细胞生存、增殖能力特性的保存影响

    Results the main component of CPC is hydroxyapatite (ha), which has no effect on the growth, proliferation, and capacity of bone forming of MSCs.

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  • 结果所制备磷酸钙骨水泥主要成分为低结晶度的羟基磷灰石(HA),对基质干细胞生存、增殖能力特性的保存影响

    Results the main component of CPC is hydroxyapatite (ha), which has no effect on the growth, proliferation, and capacity of bone forming of MSCs.

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