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    • 6. 发明申请
    • Porous Coating Loaded with a Liquid or a Solid Substance
    • 用液体或固体物质加载的多孔涂层
    • US20090098178A1
    • 2009-04-16
    • US11991751
    • 2006-09-15
    • Heinrich HofmannFrederic NeftelLaurent-Dominique Piveteau
    • Heinrich HofmannFrederic NeftelLaurent-Dominique Piveteau
    • A61F2/28A61K9/00
    • A61L27/28A61L27/54A61L27/56A61L31/08A61L31/146A61L31/16A61L2300/00Y10T428/249978
    • The present invention relates to a process for manufacturing a porous coating with structures in the micro or nano-size domain characterized by the following steps: -providing a support having a surface, -depositing on said surface one mono-layer of temporary particles, -depositing a coating on said temporary particles in such a way that the thickness of said coating is less than the particle diameter, -eliminating said temporary particles and thereby obtaining a porous coating, the pores of said coating corresponding to the spaces previously occupied by the temporary particles and at least a pail of the pores communicating with the external environment, -applying a coating fixation step, characterized by the fact that it furthermore comprise a filling step where said pores are at least partially filled with a liquid or solid substance. The invention also concerns a coating and an object which can be obtained with this process.
    • 本发明涉及一种用于制造具有微米或纳米尺寸结构域的多孔涂层的方法,其特征在于以下步骤: - 提供具有表面的载体, - 在所述表面上沉积一个单层临时颗粒 - 在所述临时颗粒上沉积涂层,使得所述涂层的厚度小于颗粒直径, - 消除所述临时颗粒,从而获得多孔涂层,所述涂层的孔对应于先前由临时颗粒占据的空间 颗粒和至少一个与外部环境连通的孔的桶,使用涂层固定步骤,其特征在于,其还包括填充步骤,其中所述孔至少部分地填充有液体或固体物质。 本发明还涉及可以用该方法获得的涂层和物体。
    • 7. 发明授权
    • Reinforced porous coating
    • 增强多孔涂层
    • US07901727B2
    • 2011-03-08
    • US12066114
    • 2006-09-15
    • Heinrich HofmannFrederic NeftelLaurent-Dominique Piveteau
    • Heinrich HofmannFrederic NeftelLaurent-Dominique Piveteau
    • B05D1/00B05D3/12B05D1/36
    • A61L27/28A61L27/54A61L27/56A61L31/08A61L31/146A61L31/16A61L2300/00Y10T428/249978
    • The present invention relates to a process for manufacturing a porous coating with structures in the micro or nano-size domain characterized by the following steps: —providing a support having a surface, —depositing on said surface one mono-layer of temporary particles, —depositing a coating on said temporary particles in such a way that the thickness of said coating is less than the particle diameter, —eliminating said temporary particles and thereby obtaining a porous coating, the pores of said coating corresponding to the spaces previously occupied by the temporary particles and at least a part of the pores communicating with the external environment, —applying a coating fixation step, characterized by the fact that said temporary particles are deposited on said surface in such a way that, after particle deposition, more than 50% of the temporary particles are in contact with a maximum of two adjacent particles and otherwise are separated by an empty space. The invention also concerns a coating and an object which can be obtained with this process.
    • 本发明涉及一种用于制造具有微米或纳米尺寸结构域的多孔涂层的方法,其特征在于以下步骤: - 提供具有表面的载体, - 在所述表面上沉积一个单层临时颗粒 - 在所述临时颗粒上沉积涂层,使得所述涂层的厚度小于颗粒直径, - 消除所述临时颗粒,从而获得多孔涂层,所述涂层的孔对应于先前由临时颗粒占据的空间 颗粒和与外部环境连通的至少一部分孔,使用涂层固定步骤,其特征在于所述临时颗粒沉积在所述表面上,使得在颗粒沉积之后,超过50%的 临时颗粒与最多两个相邻的颗粒接触,否则由空的空间分开。 本发明还涉及可以用该方法获得的涂层和物体。
    • 8. 发明申请
    • Reinforced Porous Coating
    • 增强多孔涂层
    • US20080249616A1
    • 2008-10-09
    • US12066114
    • 2006-09-15
    • Heinrich HofmannFrederic NeftelLaurent-Dominique Piveteau
    • Heinrich HofmannFrederic NeftelLaurent-Dominique Piveteau
    • A61L27/28B32B3/26A61F2/82A61L31/08
    • A61L27/28A61L27/54A61L27/56A61L31/08A61L31/146A61L31/16A61L2300/00Y10T428/249978
    • The present invention relates to a process for manufacturing a porous coating with structures in the micro or nano-size domain characterized by the following steps: -providing a support having a surface, -depositing on said surface one mono-layer of temporary particles, -depositing a coating on said temporary particles in such a way that the thickness of said coating is less than the particle diameter, -eliminating said temporary particles and thereby obtaining a porous coating, the pores of said coating corresponding to the spaces previously occupied by the temporary particles and at least a part of the pores communicating with the external environment, -applying a coating fixation step, characterized by the fact that said temporary particles are deposited on said surface in such a way that, after particle deposition, more than 50% of the temporary particles are in contact with a maximum of two adjacent particles and otherwise are separated by an empty space. The invention also concerns a coating and an object which can be obtained with this process.
    • 本发明涉及一种用于制造具有微米或纳米尺寸结构域的多孔涂层的方法,其特征在于以下步骤: - 提供具有表面的载体, - 在所述表面上沉积一个单层临时颗粒 - 在所述临时颗粒上沉积涂层,使得所述涂层的厚度小于颗粒直径, - 消除所述临时颗粒,从而获得多孔涂层,所述涂层的孔对应于先前由临时颗粒占据的空间 颗粒和与外部环境连通的至少一部分孔,使用涂层固定步骤,其特征在于所述临时颗粒沉积在所述表面上,使得在颗粒沉积之后,超过50%的 临时颗粒与最多两个相邻的颗粒接触,否则由空的空间分开。 本发明还涉及可以用该方法获得的涂层和物体。
    • 9. 发明申请
    • System for performing fluid administration
    • 执行流体管理的系统
    • US20060189923A1
    • 2006-08-24
    • US10565782
    • 2004-08-02
    • Frederic NeftelFlorent JunodDidier Vecten
    • Frederic NeftelFlorent JunodDidier Vecten
    • A61M1/00
    • A61M1/28A61M5/44A61M2205/128F04B43/1253
    • The invention concerns a system and a method of use of said system for performing fluid administration on a patient, the system comprising: a liquid pump (1), a liquid distribution system (2) connected to said pump (1) in such a way that liquid can flow from the liquid distribution system (2) to the pump (1) and vice versa, liquid supply means (3) for supplying liquid to a patient (4) via said liquid distribution system (2) and said pump (1), a patient conduit (5) adapted for connecting said liquid distribution system (2) to a patient (4), the system being characterized by the fact that said liquid pump (1) is unidirectional and that said liquid distribution system (2) comprises switching means designed to alternatively connect the pump enter line (56) with the supply means (3) or with the patient conduit (5).
    • 本发明涉及一种用于对患者进行流体给药的系统和方法,该系统包括:液体泵(1),以这种方式连接到所述泵(1)的液体分配系统(2) 液体可以从液体分配系统(2)流到泵(1),反之亦然,液体供应装置(3)通过所述液体分配系统(2)和所述泵(1)向患者(4)供应液体 ),适于将所述液体分配系统(2)连接到患者(4)的患者导管(5),所述系统的特征在于所述液体泵(1)是单向的,并且所述液体分配系统(2) 包括设计成交替地将泵进入管线(56)与供应装置(3)或患者导管(5)连接的切换装置。
    • 10. 发明授权
    • Pump assembly for medical use
    • 泵组件用于医疗用途
    • US5480386A
    • 1996-01-02
    • US244028
    • 1994-07-06
    • Michael BrohyFrederic Neftel
    • Michael BrohyFrederic Neftel
    • A61M5/14A61M5/142A61M37/00
    • A61M5/142A61M5/1413A61M2205/12A61M5/14244
    • A portable pump assembly for medical uses, and more particularly a portable micropump designed for the parenteral administration of medicamentous solutions includes a first module (2) provided with a container (8) designed for cooperating with a second motor module (4), the functioning of the pump being ensured by the assembling of the two modules. The first module (2) is provided with a removable filtering and sterilizing device (3), fastened to the filling septum orifice (10) of the container and including a filtering sterile plug (25) and a needle (28) surrounded by a flexible sleeve (29). A support arm (33) includes a guiding part (34) for guiding the device (3) when piercing the septurn and an anchoring casing (40) closing the housing (39) for the second module (4). The first module (2) with the device (3) is provided in a sterile sealed pouch. The assembly is very easy to use, and aseptic conditions are guaranteed during the filling of the container (8).
    • PCT No.PCT / CH93 / 00222 Sec。 371日期:1994年7月6日 102(e)日期1994年7月6日PCT提交1993年9月14日PCT公布。 出版物WO94 / 06491 日期为1994年3月31日。用于医疗用途的便携式泵组件,更具体地,专门用于非肠道给药药物溶液的便携式微型泵,包括设置有容器(8)的第一模块(2),该容器设计成与第二电动机 模块(4),通过组装两个模块确保泵的功能。 第一模块(2)设置有可移除的过滤消毒装置(3),其紧固到容器的填充隔膜孔口(10),并且包括过滤无菌塞(25)和由柔性 袖子(29)。 支撑臂(33)包括用于在刺穿隔板时引导装置(3)的引导部分(34)和闭合用于第二模块(4)的壳体(39)的锚定壳体(40)。 具有装置(3)的第一模块(2)设置在无菌密封袋中。 该组件非常容易使用,并且在容器(8)的填充期间保证无菌条件。