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公开(公告)号:US20100249927A1
公开(公告)日:2010-09-30
申请号:US12731848
申请日:2010-03-25
申请人: Chunlin Yang , Ying Sun , Frank R. Cichocki, JR. , Saumen N. Bar , James E. Hauschild , Uri Herzberg , Yufu Li , Xintian Ming , Wei Kong
发明人: Chunlin Yang , Ying Sun , Frank R. Cichocki, JR. , Saumen N. Bar , James E. Hauschild , Uri Herzberg , Yufu Li , Xintian Ming , Wei Kong
CPC分类号: A61L27/306 , A61L27/52 , A61L27/54 , A61L29/106 , A61L29/14 , A61L29/16 , A61L31/088 , A61L31/145 , A61L31/16 , A61L2300/102 , A61L2300/104 , A61L2300/404 , A61L2300/41 , A61L2300/45 , A61L2300/606 , A61L2300/622 , A61L2420/04 , Y10T428/256
摘要: Implantable medical devices having galvanic particulates are disclosed. The particulates may be coated onto at least part of a surface of the medical device. In addition, the galvanic particulates may be contained in the material used to manufacture the antimicrobial medical devices, or may be embedded into the surface of the medical devices. The present invention also provides novel coating methods and processing methods. The devices may have advantageous characteristics and effects including anti-microbial, anti-inflammatory, and tissue regeneration promoting.
摘要翻译: 公开了具有电偶颗粒的可植入医疗装置。 颗粒可以涂覆在医疗装置的表面的至少一部分上。 此外,电化学颗粒可以包含在用于制造抗微生物医疗装置的材料中,或者可以嵌入医疗装置的表面中。 本发明还提供了新的涂布方法和加工方法。 该装置可具有促进抗微生物,消炎和组织再生的有利特征和作用。
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公开(公告)号:US20100268335A1
公开(公告)日:2010-10-21
申请号:US12761601
申请日:2010-04-16
申请人: Chunlin Yang , Ying Sun , Frank R. Cichocki, JR. , Saumen N. Bar , James E. Hauschild , Uri Herzberg , Yufu Li , Xintian Ming , Wei Kong , Jeannette Chantalat , Michael Southall
发明人: Chunlin Yang , Ying Sun , Frank R. Cichocki, JR. , Saumen N. Bar , James E. Hauschild , Uri Herzberg , Yufu Li , Xintian Ming , Wei Kong , Jeannette Chantalat , Michael Southall
CPC分类号: A61L15/18 , A61B17/06066 , A61B17/06166 , A61B17/064 , A61B2017/00884 , A61B2017/00889 , A61L15/42 , A61L26/0004 , A61L26/0066 , A61L27/306 , A61L27/50 , A61L29/106 , A61L29/14 , A61L31/088 , A61L31/14 , A61L2300/404 , A61N1/205 , A61N1/303 , Y10T428/256 , Y10T428/2982
摘要: Implantable medical devices having galvanic particulates are disclosed. The particulates may be coated onto at least part of a surface of the medical device. In addition, the galvanic particulates may be contained in the material used to manufacture the antimicrobial medical devices, or may be embedded into the surface of the medical devices. The present invention also provides novel coating methods and processing methods. The devices may have advantageous characteristics and effects including anti-microbial, anti-inflammatory, and tissue regeneration promoting.
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公开(公告)号:US20080308523A1
公开(公告)日:2008-12-18
申请号:US12138147
申请日:2008-06-12
IPC分类号: B44C1/22
CPC分类号: A61M5/158 , A61M5/3275 , A61M5/329 , A61M25/0009 , A61M25/0068 , A61M25/007 , A61M2005/1585 , A61M2005/1587 , A61M2205/0266
摘要: A method for manufacturing a flexible medical device conduit includes forming an elongated framework of flexible material (e.g., Nitinol), and creating a sharp head on a distal end of the elongated strip using, for example, an isotropic etching technique, a stamping technique and/or a coining technique. The method also includes the step of jacketing the elongated framework with a flexible tube such that the flexible tube and the elongated framework define at least one conduit therebetween.
摘要翻译: 用于制造柔性医疗器械导管的方法包括形成细长的柔性材料框架(例如镍钛诺蛋白),以及使用例如各向同性蚀刻技术,冲压技术和在长条的远端上形成尖锐的头部 /或压印技术。 该方法还包括用柔性管夹套细长框架的步骤,使得柔性管和细长框架在其间限定至少一个导管。
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