Radiopaque coating for biomedical devices
    1.
    发明申请
    Radiopaque coating for biomedical devices 审中-公开
    用于生物医学装置的不透射线涂层

    公开(公告)号:US20050288773A1

    公开(公告)日:2005-12-29

    申请号:US11151583

    申请日:2005-06-13

    CPC classification number: A61F2/82 A61F2250/0098

    Abstract: A medical device has a porous radiopaque coating that can withstand the high strains inherent in the use of such devices without delamination. A coating of Ta is applied to a medical device, such as a stent, by vapor deposition so that the thermomechanical properties of the stent are not adversely affected. The coating preferable has high emissivity. The coating is applied via a generally oblique coating flux or a low energy coating flux.

    Abstract translation: 医疗装置具有多孔的不透射线涂层,可以承受使用这种装置固有的高应变而不会分层。 通过气相沉积将Ta的涂层施加到诸如支架的医疗装置上,使得支架的热机械性能不受不利影响。 该涂层优选具有高发射率。 通过大体上倾斜的涂层焊剂或低能量涂层焊剂施加涂层。

    Device compatible with magnetic resonance imaging
    2.
    发明申请
    Device compatible with magnetic resonance imaging 审中-公开
    器件兼容磁共振成像

    公开(公告)号:US20060105016A1

    公开(公告)日:2006-05-18

    申请号:US11132469

    申请日:2005-05-19

    Abstract: A plurality of coated layers is disposed on an implanted device. The materials and electrical parameters of the coated layers are chosen and the geometry of the coated layers is arranged so that incident electromagnetic radiation induces currents in the coated layers that have a predetermined phase and amplitude relationship with the current induced in the implanted device.

    Abstract translation: 多个涂层设置在植入装置上。 选择涂层的材料和电参数,并且布置涂层的几何形状,使得入射的电磁辐射在涂覆层中引起与植入装置中感应的电流具有预定相位和幅度关系的电流。

    Porous coatings for biomedical implants
    3.
    发明申请
    Porous coatings for biomedical implants 有权
    用于生物医学植入物的多孔涂层

    公开(公告)号:US20060004466A1

    公开(公告)日:2006-01-05

    申请号:US11168050

    申请日:2005-06-28

    Abstract: A medical implant has a microscopically rough outer coating that serves to bond the implant to animal tissue. The coating is applied to the implant by physical vapor deposition. The coating preferable is applied via a generally oblique coating flux or a low energy coating flux. In some embodiments, the coating has pores. The pores can contain a drug, which can diffuse over a period of time. The coating may be partially nonporous to protect the implant from corrosion. The coating can have an outer porous layer that can bond with animal tissue easily.

    Abstract translation: 医疗植入物具有微观粗糙的外涂层,其用于将植入物结合到动物组织。 通过物理气相沉积将涂层施加到植入物上。 优选的涂层通过大体上倾斜的涂层焊剂或低能量涂层焊剂施加。 在一些实施方案中,涂层具有孔。 毛孔可以含有药物,其可以在一段时间内扩散。 涂层可能是部分无孔的,以保护植入物免受腐蚀。 涂层可以具有能够容易地与动物组织结合的外部多孔层。

    Porous coatings on electrodes for biomedical implants
    5.
    发明申请
    Porous coatings on electrodes for biomedical implants 审中-公开
    用于生物医学植入物的电极上的多孔涂层

    公开(公告)号:US20060015026A1

    公开(公告)日:2006-01-19

    申请号:US11180183

    申请日:2005-07-13

    CPC classification number: A61N1/0568 A61B5/042

    Abstract: An implantable electrode has a biomedically compatible, microscopically rough, metal coating that creates a high double-layer capacitance. The coating is applied to the implant by physical vapor deposition. The coating preferably is applied via a generally oblique coating flux or a low energy coating flux. In some embodiments, the coating has pores. The pores can contain a drug, which can diffuse over a period of time. The coating may be partially nonporous to protect the implant from corrosion.

    Abstract translation: 可植入电极具有生物相容性,显微镜粗糙的金属涂层,产生高的双层电容。 通过物理气相沉积将涂层施加到植入物上。 涂层优选通过大体上倾斜的涂层焊剂或低能量涂层焊剂施加。 在一些实施方案中,涂层具有孔。 毛孔可以含有药物,其可以在一段时间内扩散。 涂层可能是部分无孔的,以保护植入物免受腐蚀。

    In-situ plasma cleaning device for cylindrical surfaces
    6.
    发明授权
    In-situ plasma cleaning device for cylindrical surfaces 失效
    用于圆柱形表面的原位等离子体清洗装置

    公开(公告)号:US07320331B1

    公开(公告)日:2008-01-22

    申请号:US10605432

    申请日:2003-09-30

    CPC classification number: C23C14/564 B08B7/00 B08B9/027 H01J37/32862

    Abstract: An in-situ plasma cleaning device (PCD) performs an atomic surface cleaning process to remove contaminants and/or to modify the cylindrical surfaces of both the target and substrate. The atomic cleaning process utilizes a plasma generated locally within the in-situ plasma cleaning device with suitable properties to clean both the target and substrate cylindrical surfaces either concurrently or separately. Moreover, the in-situ plasma cleaning device is designed to traverse the length of the target and the substrate cylindrical surfaces during the cleaning process.

    Abstract translation: 原位等离子体清洁装置(PCD)执行原子表面清洁工艺以去除污染物和/或改变靶材和基材的圆柱形表面。 原子清洁过程利用在原位等离子体清洗装置内局部产生的等离子体,其具有合适的性质以同时或分开地清洁目标和底物圆柱形表面。 此外,原位等离子体清洁装置被设计成在清洁过程中横穿目标和基板圆柱形表面的长度。

    Radiopaque coating for biomedical devices
    7.
    发明申请
    Radiopaque coating for biomedical devices 审中-公开
    用于生物医学装置的不透射线涂层

    公开(公告)号:US20070106374A1

    公开(公告)日:2007-05-10

    申请号:US11586836

    申请日:2006-10-26

    CPC classification number: A61L31/088 A61F2/86 A61L31/18 C23C30/00

    Abstract: A medical device has a porous metallic coating that can withstand the high strains inherent in the use of such devices without delamination. A coating of the metal is applied to a medical device, such as a stent, by vapor deposition so that the thermomechanical properties of the stent are not adversely affected. The coating preferable has high emissivity. The coating is applied via a generally oblique coating flux or a low energy coating flux.

    Abstract translation: 医疗装置具有多孔金属涂层,可以承受使用这种装置固有的高应变而不发生分层。 通过气相沉积将金属涂层施加到诸如支架的医疗装置上,使得支架的热机械性能不受不利影响。 该涂层优选具有高发射率。 通过大体上倾斜的涂层焊剂或低能量涂层焊剂施加涂层。

    MULTI-LAYER COATING SYSTEM AND METHOD
    8.
    发明申请
    MULTI-LAYER COATING SYSTEM AND METHOD 审中-公开
    多层涂层系统及方法

    公开(公告)号:US20060263512A1

    公开(公告)日:2006-11-23

    申请号:US11419038

    申请日:2006-05-18

    Applicant: David Glocker

    Inventor: David Glocker

    CPC classification number: G01R33/286

    Abstract: A system and method for coating implantable medical devices so that they do not interfere with MR imaging are described. Using any of the coating processes well known to those skilled in the art, e.g., physical vapor deposition such as evaporation, sputtering, or cathode arc, or chemical vapor deposition, spraying, plasma polymerization, plasma enhanced chemical vapor deposition and the like, multiple sources, including at least one source of an electrically insulating material and at least one source of an electrically conducting material, are oriented and shielded so as to coat separate sections of the implantable medical device. The object being coated is then rotated so that overlapping spiral coatings of the materials from the different coating sources are produced on the object.

    Abstract translation: 描述了用于涂覆可植入医疗装置以使它们不干扰MR成像的系统和方法。 使用本领域技术人员熟知的任何涂覆方法,例如物理气相沉积如蒸发,溅射或阴极电弧,或化学气相沉积,喷涂,等离子体聚合,等离子体增强化学气相沉积等,多重 包括电绝缘材料的至少一个源和至少一个导电材料源的源被定向和屏蔽以便涂覆可植入医疗装置的分开的部分。 然后旋转被涂覆的物体,使得在物体上产生来自不同涂层源的材料的重叠螺旋涂层。

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