生物材料

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  • biomaterial
生物材料生物材料
  1. CO2热泵干燥生物材料性能的研究

    The Study on CO_2 Heat Pump Drying Biomaterial Performance

  2. HA(ZrO2)/316L不锈钢纤维对称功能梯度生物材料

    Researches on HA ( ZrO_2 ) / 316L stainless steel fibre symmetrical functionally graded biomaterial

  3. 生物材料可以遮光,因为它们含有能吸收特定颜色光的色素。

    Living materials can stop light because they contain pigments that absorb specific colors of light .

  4. 分形(Fractal):生物材料的一种新模型

    Fractal : A new Model for Biomaterials

  5. MARK,建立人工椎间盘及L4~5运动节段的三维模型,并赋予各自生物材料特性,然后模拟腰椎节段的运动,研究人工椎间盘的应力分布。

    MARK . While L4-5 motion segment from young healthy cadaver was created to give the models biomaterial characters .

  6. 抗RNA病毒相关生物材料

    Anti RNA Viruses Related Biomaterials

  7. 根据P(HB-co-HH)P(HB-co-HO)的理化及生物学性质,这两种新型生物材料在医学组织工程有着良好的应用前景。

    Due to the physical and biologic property of P ( HB-HH ) and P ( HB-HO ), they provide a wide prospect of application in medical tissue engineering .

  8. 羟基磷灰石(HAP)材料在生物材料中的研究与开发

    The Research and Development of Hydroxyapatite in the Bioceramics

  9. 几种不同高分子生物材料吸附FG与单克隆抗体M1结合亲合力的研究

    Fibrinogen adsorbed to different polymer biomaterials and studying on monoclonal antibody M1 binding affinity

  10. 新型n-HA增强复合生物材料的结构与性能

    Structure and properties of the new n-HA reinforced composite biomaterial

  11. 新型CFRC生物材料研究及应用前景

    Review of research on new CFRC biomaterial

  12. 在血液与生物材料的相互作用中,血浆蛋白特别是纤维蛋白原(Fibrinogen,FG)的吸附起着重要的作用。

    Protein adsorption , especially , fibrinogen ( FG ) adsorption played a very important part in the action of blood with biomaterials .

  13. 利用微生物合成具有高附加值生物材料PHA是当前的研究热点。然而PHA合成过程中原料成本居高不下一直制约其发展。

    It is a hotspot that value-added utilization of PHA from biosynthesis , however the high cost of raw materials has restricted its development .

  14. FD-1冷冻干燥机的研制及生物材料的冷冻干燥

    Development of a Freezing Drier for Lyophilization of Biomaterials

  15. 这套基于SPR技术的系统,可以原位、实时、非标记的表征蛋白质在生物材料表面的动态吸附行为。

    This system which base on SPR technology can monitor the kinetic behavior of the protein adsorption onto the biomaterial surfaces in situ , in real-time and without labelling .

  16. 将CAD/CAM技术应用于人工关节和人造骨的外形以及微观仿生设计、制造和模拟生物材料在生物体内的降解过程,使得个性化人工关节的设计、制造以及应用成为现实。

    We apply the CAD & CAM technology into the bionic design and manufacture of artificial to make the individualized artificial joint design and manufacture into reality . By doing that , the artificial can match the patient 's anatomical structure accurately ;

  17. 本文介绍用于评价牙科和生物材料细胞毒性的~(125)IUdR释放法。

    The 125 I-UdR-releasing method which evaluating the cytotoxin of dental materials and biomaterials is introduced in this article .

  18. 离子束合成Ti-O薄膜对热解碳生物材料表面改性的研究

    SURFACE MODIFICATION OF LTI CARBON BY TITANIUM OXIDE COATING SYNTHESISED BY ION BEAM Effect of Anti-HBV of The Thin Titanium Oxide Plate Photocatalyst The biocompatibility and bioactivity of titanium oxide films

  19. 聚乳酸(PLA)是目前组织工程研究和应用最广泛的合成高分子材料之一,但是由于其具有表面亲水性差,缺乏天然分子识别位点等缺点大大的限制了其作为生物材料的应用。

    Polylactic Acid ( PLA ) is one of the synthetic polymer materials which is widely used in the research and application of tissue engineering . But because of its bad surface hydrophilicity and absence of natural molecule acting point , its application as biomaterials was limited .

  20. 纳米羟基磷灰石粉末(n-HA),作为填充在高分子基生物材料中的无机相,能够有效改善PLLA植入材料的刚度、生物活性和降解速率以及减少因酸性降解产物而引起的炎症反应。

    Nano-hydroxyapatite powders ( n-HA ), as the inorganic filler in polymer-based biomaterials , can improve the stiffness , biological activity and degradation rate of the PLLA-based implant material , and reduce the inflammation response caused by the acid degradation products .

  21. 研究了低能离子辐照等效生物材料丙氨酸的质量损失和Mylar膜的α粒子透射能谱,并结合理论分析揭示了低能离子能够通过多种作用方式刻蚀生物样品。

    The mass loss of alanine and α particle transmission spectra for Mylar foils have been studied . Based on the experimental results and theoretical analysis , the etching process of biological materials by low energy ions was disclosed .

  22. 微球堆积法制备多孔磷酸钙生物材料

    Fabrication of Calcium Phosphate Porous Biomaterials Prepared by Close-packed with Microspheres

  23. 生物材料复合人工食管的设计、制备与动物实验研究

    Experimental study on a novel esophageal prosthesis made of composite biomaterials

  24. 丝素蛋白在生物材料方面有非常广阔的应用前景。

    Fibroin protein will have a extensively wide uses on biomaterial .

  25. 国外农业生物材料研究中的力学试验

    The Mechanics Experiments in Study on Agrobiological Material of Foreign Countries

  26. 组织工程中生物材料表面修饰的研究

    The study of the surface modification of biomaterials in tissue engineering

  27. 生物材料低温保存过程及最新进展

    The processes and the recently progression of the cryopreservation of biological materials

  28. 生物材料制备新方法&超临界流体技术

    A Novel Method for Preparing Biomaterials & Supercritical Fluid Technology

  29. 体内及体外磷酸钙与蛋白质生物材料相互作用

    The Interaction of Calcium Phosphate Biomaterials with Proteins in Vitro and Vivo

  30. 纳米材料的诞生,为医用生物材料赋予了新的特性。

    Recent developments in nano-biomaterials make medical biomaterials new properties .