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    • 8. 发明授权
    • Method of cryogenically coating a device
    • 低温法涂覆器件的方法
    • US07326433B2
    • 2008-02-05
    • US10916105
    • 2004-08-10
    • Eric B. Stenzel
    • Eric B. Stenzel
    • B05D3/00
    • C23C8/02A61L31/10A61L31/14A61L31/16A61L2300/416A61L2300/606A61L2420/02B05D3/002B05D3/048C23C8/40C23C8/80
    • The present invention is directed to a method for coating a surface of a medical device with a coating composition. The method involves chilling the surface to be coated to below the freezing point of at least one solvent contained in the composition. This coating composition is applied to the chilled surface, and a portion of the coating composition is allowed to freeze onto the surface. The surface can then be heated (either by the application of heat from an external source, by allowing to heat by ambient air) to above the freezing point of the solvent in the coating composition to allow the solvent to thaw and be removed, thereby forming a smooth, uniform coating on the surface of the medical device.
    • 本发明涉及一种用涂料组合物涂覆医疗器械表面的方法。 该方法包括将待涂覆的表面冷却至组合物中所含的至少一种溶剂的凝固点以下。 将该涂料组合物施加到冷却的表面上,并使一部分涂料组合物冷冻到表面上。 然后可以将表面加热(通过外部来源的加热,通过环境空气加热)到涂料组合物中溶剂的凝固点以上,以使溶剂解冻并除去,从而形成 医疗装置表面上光滑均匀的涂层。
    • 9. 发明申请
    • Osseoinductive magnesium-titanate implant and method of manufacturing the same
    • 诱导性钛酸镁植入物及其制造方法
    • US20060161263A1
    • 2006-07-20
    • US10562925
    • 2004-03-04
    • Young-Taek Sul
    • Young-Taek Sul
    • A61F2/28B32B3/26C25D11/00B32B15/04B32B19/00
    • C25D11/26A61C8/0012A61C8/0015A61F2/30767A61F2/3094A61F2002/30929A61F2310/00023A61F2310/00598A61L27/06A61L27/306A61L27/50C23C8/40Y10T428/249953
    • The present invention relates to a magnesium titanate oxide film implant for insertion into a living body, utilized in medical fields such as dentistry, orthopedic surgery, maxillofacial surgery and plastic surgery, and a method for preparing the same. The magnesium titanate oxide film implant in accordance with the present invention is prepared by forming a titanium oxide film (a magnesium titanate oxide film) in which magnesium is incorporated into the surface of titanium or a titanium alloy. A process for preparing a magnesium titanate oxide film implant in accordance with the present invention comprises irradiating UV light on an implant body made of titanium or a titanium alloy in distilled water for more than 2 hours; dipping the UV light-irradiated implant body in an electrolyte solution containing magnesium; and coating a magnesium titanate oxide film on the dipped implant body by anodic oxidation at a voltage of 60 to 500 V. Therefore, the present invention can provide an implant having increased bioactivity of a titanium oxide film formed by anodic oxidation, and provides an optimum magnesium titanate oxide (TixMgyOz) thickness for successful osseointegration of the magnesium titanate (Tix,MgyOz) implant.
    • 本发明涉及一种用于插入生物体中的钛酸镁氧化膜植入物,其用于医学领域如牙科,矫形外科,颌面外科和整形手术,以及其制备方法。 根据本发明的钛酸镁氧化物膜植入物通过在钛或钛合金的表面中形成镁而形成氧化钛膜(钛酸镁氧化物膜)来制备。 根据本发明的制备钛酸镁氧化物膜植入物的方法包括:将紫外光照射在由钛或钛合金制成的植入体上,在蒸馏水中超过2小时; 将UV光照射的植入体浸入含镁的电解液中; 并且在60〜500V的电压下通过阳极氧化将钛酸镁氧化膜涂覆在浸渍的植入体上。因此,本发明可以提供具有增加的通过阳极氧化形成的氧化钛膜的生物活性的植入物,并提供最佳 用于使钛酸镁(Ti)的成骨整合的钛酸氧化钛(Ti x Mn y O y O z z z)厚度 ,Mg y O z z)植入物。