人工骨

  • 网络Artificial bone;CPC;Osteoset
人工骨人工骨
  1. 结果:内皮细胞在人工骨材料表面呈片状生长,细胞形状呈梭形。

    RESULTS : There were flaky VECs growing adherent to the surface of CPC scaffold in a shape of fusiform in the field of vision .

  2. 纳米磷酸三钙复合人工骨的程序外DNA合成试验

    UDS test of nano - β - tricalcium phosphate / collagen artificial bone

  3. 多孔HA人工骨的制备及其生物活性测试

    Preparation and Bioactivity Testing of Porous Artificial Bone HA

  4. EH型复合人工骨材料动物体内植入研究

    EH composite artificial bone implant research in animal

  5. RPM技术在生物陶瓷人工骨制备过程中的应用

    Application of Rapid Prototyping Manufacturing in the Preparation of Bioceramic Artificial Bone

  6. β-Ca3(PO4)2陶瓷人工骨的组成与结构特征

    Composition and Microstructure Feature of β - Ca_3 ( PO_4 ) _2 Ceramic Artificial Bone

  7. Cem-Ostetic~(TM)人工骨浆修复掌骨缺损

    Clinical Application of Cem-Ostetic ~ ( TM ) Artifical Bone Graft in the Repair of Metacarpal Bone Defects

  8. 随访观察的结果表明,HA微粒人工骨隆鼻术手术效果良好。

    The observations show that HA is stable and the long term results of augmentation rhinoplasty with HA are very good .

  9. 颗粒状羟基磷灰石与纤维蛋白凝胶复合人工骨的可塑性和生物相容性的实验研究HLA组织相容性系

    The Research of Ductility and Biocompatibility of Artificial Bone Composed of Granulo-hydroxyapatite and Fibrin Glue ; HLA histocompatibility system

  10. 基于RPM的炭/炭复合材料人工骨预制体成型技术研究

    Study on molding technology of carbon / carbon Composites Artificial Bone Based on RPM

  11. 磷酸钙陶瓷如磷酸三钙(TCP)和羟基磷灰石(HA)是常用人工骨替代材料。

    Calcium phosphate ceramics , such as tricalcium phosphate ( TCP ) and hydroxyapatite ( HA ) are commonly used as bone substitutes .

  12. 成功体外构建BMP-2基因强化的组织工程仿生人工骨。

    Successful constrction BMP-2 gene enhanced tissue engineering biomimetic artificial bone in vitro .

  13. 为寻找一种替代骨移植进行骨缺损修复的材料,应用多孔磷酸三钙(TCP)陶瓷人工骨修复儿童骨缺损。

    This is a preliminary report of the use of porous tricalcium phosphate ( TCP ) ceramics artificial bone in filling bony defects in children .

  14. 目的探讨使用钢缆式线锯(TSaw线锯)及人工骨CHA作间隔物行颈椎棘突纵割式椎管扩大成形术的优点及疗效。

    Objective To assess the efficacy of using T-saw and coralline hydroxyapatite ( CHA ) spacer in the cervical spinous process-splitting laminoplasty .

  15. RP技术制备PDLLA/TCP人工骨载体与LD-PTH成骨效应相容性的体外实验

    Biocompatibility of RP manufactured PDLLA / TCP tissue engineered bone scaffolds in low dose PTH-induced bone anabolism in vitro

  16. BMP复合仿生人工骨填塞犬股骨假体周围髓腔骨缺损的实验研究

    PLGA / TCP scaffold with bovine BMP were implanted in femur medullary cavity bone defects peri-prosthesis of Canine

  17. 目的自固化磷酸钙(CPC)为非陶瓷型羟基磷灰石类人工骨材料,应用CPC进行临床四肢骨缺损修复。

    Objective To investigate the clinical application of self setting calcium phosphate cement ( CPC ) in bone defect repair of extremities .

  18. 鉴于BMSCs具有定向成骨分化的潜能,骨髓间充质干细胞也成为人工骨材料的主要来源之一。

    In view of their potential of osteoblast differentiation , BMSCs become the main source for artificial bone material .

  19. BAM人工骨用于治疗根尖周病3年临床疗效与体会

    Clinic effects on treating serious apical disease with BAM artificial bone in 3 years

  20. Ⅳ型11足,采用AO跟骨板及髂骨(或人工骨)植骨进行有限坚强内固定。

    We made limited rigid internal fixation with AO calcaneal anatomic plate and iliac ( or artificial bone ) graft .

  21. 研究结果表明:β-TCP/BMP是一种可降解、具有较强骨诱导能力、生物相容性较好的人工骨。

    The conclusion is that β - TCP / BMP is a degradable biocompatible artificial bone material which has the ability of osteoinduction .

  22. 腭板HA复合人工骨植骨术对上颌骨生长发育的相关研究

    The effect of artificial bone implantation in cleft palate on the development of maxilla An Experimental Research on the Correction of Articulation Defects Resulted from Cleft Palate

  23. 结果BMP/PCC人工骨内新骨形成量明显多于PCC人工骨。

    Results Bone formation of BMP / PCC artificial bone were significantly higher than that of PCC group .

  24. 应用可塑性医用树脂和羟基磷灰石(EH)微粒按一定比例混合而成的复合人工骨和自体肋骨,进行眶壁缺损修复和眼球内陷复位的比较研究。

    Late reconstruction of orbit and repositioning of globe were performed on 21 patients using autogenous rib bone and EH composite artificial bone .

  25. 目的:探讨一种从CT图像反求建模,制造带有双循环系统(微管循环和微孔循环)的人工骨。

    Objective : To discuss a method of reverse engineering ( RE ) from computed tomography ( CT ), then make artificial bone with double circulated system ( microcosmic pipeline cycle and microcosmic hole cycle ) .

  26. 结论:羟基磷灰石人工骨材料具有一定的可降解性,材料降解引起材料压缩强度和pH值的显著变化。

    Conclusion : HA artificial bone can be degraded in PBS solution , and the degradation can cause noticeable changes of the compressive strength of the material and pH value of the immersion solution .

  27. 目的分别以胶原-羟基磷灰石(hydroxyapatite,HA)和胶原-HA-硫酸软骨素(ChondroitinSulfate,CS)为支架构建两类人工骨,并比较其生物学性能。

    Objective To construct artificial bone with collagen-hydroxyapatite ( HA ) or collagen-HA-chondroitin sulfate ( CS ) as the scaffolds , and observe their biological properties .

  28. 羟基磷灰石(Hydroxyapatite,简称HAP)因其良好的生物相容性和骨传导性而成为重要的人工骨移植材料。

    Hydroxyapatite ( HAP ) has become one of the most important artificial bone transplant materials because of its excellent biocompatibility and osteophony .

  29. BMP的人工骨和局部基因疗法研究为修复骨缺损提供了新途经。

    The research on bone morphogenic protein and its combined human bone and local gene therapy afford new ways for bone defect repairing .

  30. Ca-P仿生人工骨材料的设计与制备

    Design and preparation of Ca-P biomimetic artificial bone materials