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    • 2. 发明申请
    • Medical devices with machined layers for controlled communications with underlying regions
    • 具有加工层的医疗设备,用于与底层区域进行控制通信
    • US20070038176A1
    • 2007-02-15
    • US11174821
    • 2005-07-05
    • Jan WeberThomas Holman
    • Jan WeberThomas Holman
    • A61M31/00A61M37/00
    • A61L27/50
    • According to an aspect of the present invention, implantable or insertable medical devices (also referred to as internal medical devices) are provided. These medical devices include at least one machined layer, at least a portion of which is disposed over at least one underlying region (e.g., a therapeutic agent containing region, a catalytic region, etc.). The at least one machined layer contains a plurality of excavated regions which promote the transport of molecular species across the machined layer. An advantage of the present invention is that medical devices are provided, in which the transport of species into the medical device, out of the medical device, or both are controlled, and may be customized, as desired.
    • 根据本发明的一个方面,提供了可植入或可插入的医疗装置(也称为内部医疗装置)。 这些医疗装置包括至少一个加工层,其至少一部分设置在至少一个下部区域(例如,治疗剂容纳区域,催化区域等)上。 所述至少一个加工层包含多个挖掘区域,其促进分子物质跨过加工层的运输。 本发明的一个优点是提供了医疗装置,其中可以根据需要将物种运送到医疗装置,医疗装置或两者中进行控制,并且可以被定制。
    • 9. 发明授权
    • Laser shock peening of medical devices
    • 医疗器械的激光冲击硬化
    • US08049137B2
    • 2011-11-01
    • US10778841
    • 2004-02-13
    • Thomas HolmanJan Weber
    • Thomas HolmanJan Weber
    • B23K26/00
    • C21D10/005A61F2/91A61F2250/0068
    • A laser shock peening process for producing one or more compressive residual stress regions in a medical device is disclosed. A high-energy laser apparatus can be utilized to direct an intense laser beam through a confining medium and onto the target surface of a workpiece. An absorption overlay disposed on the target surface of the workpiece absorbs the laser beam, inducing a pressure shock wave that forms a compressive residual stress region deep within the workpiece. Medical devices such as stents and guidewires having one or more of these compressive residual stress regions are also disclosed.
    • 公开了一种用于在医疗装置中产生一个或多个压缩残余应力区域的激光冲击硬化方法。 可以使用高能激光装置将强激光束引导通过约束介质和工件的目标表面。 设置在工件的目标表面上的吸收层吸收激光束,引起在工件内部形成压缩残余应力区域的压力冲击波。 还公开了具有这些压缩残余应力区域中的一个或多个的支架和导线的医疗装置。