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    • 21. 发明申请
    • FASTENER HAVING TORQUE OPTIMIZED HEAD
    • 具有扭矩优化头的紧固件
    • US20110137320A1
    • 2011-06-09
    • US12852326
    • 2010-08-06
    • Randolf von Oepen
    • Randolf von Oepen
    • A61B17/58
    • A61B17/888A61B17/8615A61B17/864A61B2017/00004
    • Disclosed is a medical fastener that can be mounted to a bone of a patient. The medical fastener can include a head portion comprising a recess having a first portion, a second tapered portion extending from the first portion, and a third cylindrical portion extending from the second tapered portion. A threaded body portion can extend from the head portion. The first portion and the second portion can have a Torx geometry or star-shaped configuration. Also disclosed is a driver usable to mount the medical fastener to the bone. The driver can include a tip that is complementary to the recess and an end that enables the driver to mount to a drill or other device that can rotate the driver.
    • 公开了可以安装到患者的骨骼上的医疗紧固件。 医疗紧固件可以包括头部,头部包括具有第一部分的凹部,从第一部分延伸的第二锥形部分和从第二锥形部分延伸的第三圆柱形部分。 螺纹体部分可以从头部延伸。 第一部分和第二部分可以具有Torx几何形状或星形配置。 还公开了可用于将医疗紧固件安装到骨头的驱动器。 驱动器可以包括与凹部互补的尖端和使得驱动器能够安装到能够旋转驱动器的钻孔或其他装置的端部。
    • 23. 发明授权
    • Polymeric plate bendable without thermal energy and methods of manufacture
    • 不含热能的聚合物板可弯曲和制造方法
    • US07717946B2
    • 2010-05-18
    • US11146454
    • 2005-06-06
    • Randolf von OepenAlexander Tschakaloff
    • Randolf von OepenAlexander Tschakaloff
    • A61B17/80
    • A61B17/8085A61B2017/00004A61B2017/00526Y10S606/907
    • An implantable plate for providing support to a bone of a subject when affixed thereto includes a polymeric body of a biocompatible polymer having a desired amount of polymer molecule orientation in a first direction so that the plate can be bent to conform with a contour of the bone of the subject. The polymeric body includes a top surface, a bottom surface, and at least one fastener portion. The fastener portion includes a recess and a fastener hold that is configured for receiving a fastener when affixed to the bone of the subject. A method of manufacturing the implantable plate includes: (1) injection molding a biocompatible polymeric composition into a polymeric body within an injection mold; (2) removing the polymeric body from the injection mold; and (3) forming at least one fastener hole within polymeric body.
    • 用于向被检体的骨骼提供支撑的可植入板,当固定在其上时包括具有在第一方向上具有所需量的聚合物分子取向的生物相容性聚合物的聚合体,使得该板能够弯曲以符合骨骼的轮廓 的主题。 聚合物主体包括顶表面,底表面和至少一个紧固件部分。 紧固件部分包括凹部和紧固件保持件,其被构造成在固定到被检体的骨骼上时接收紧固件。 制造可植入板的方法包括:(1)将生物相容性聚合物组合物注塑成注射模具内的聚合体; (2)从注射模具中取出聚合体; 和(3)在聚合物体内形成至少一个紧固件孔。
    • 28. 发明申请
    • Methods and apparatus for localized administration of inhibitory moieties to a patient
    • 局部给予患者抑制性部位的方法和装置
    • US20060078493A1
    • 2006-04-13
    • US10015274
    • 2001-12-11
    • Randolf von Oepen
    • Randolf von Oepen
    • A61K51/00
    • A61F2/82A61F2210/0095A61K47/6957A61L31/16A61L31/18A61L2300/416A61L2300/44A61N5/1002
    • Methods and devices are provided for the localized administration to a patient of moieties effective for inhibiting unwanted cellular growth, including restenosis of an artery treated with a stent implant for blockage of blood flow by an atherosclerotic lesion. After implantation of a medical device capable of moiety-binding, moieties effective at inhibiting unwanted cellular growth are administered locally to a patient. In this manner the deleterious side-effects of systemic administration of moieties are avoided. Upon localized administration, the moieties bind the medical device, rendering the medical device itself capable of inhibiting unwanted cellular growth. According to an embodiment, after implantation of a stent, radioactive moieties specific for receptors immobilized on the stent surface are locally administered using a balloon perfusion catheter. The moieties bind specifically the receptors, becoming immobilized thereto, thereby rendering the stent radioactive and effective for inhibiting restenosis.
    • 提供了方法和装置,用于局部给予患者有效抑制不想要的细胞生长的部分,包括用支架植入物治疗的动脉再狭窄,以通过动脉粥样硬化病变阻塞血流。 在植入能够进行部分结合的医疗器械后,有效地抑制不想要的细胞生长的部位在局部给予患者。 以这种方式,避免了全身给药部分的有害副作用。 局部给药后,该部分结合医疗装置,使医疗装置本身能够抑制不需要的细胞生长。 根据一个实施方案,在植入支架后,使用球囊灌注导管局部施用对固定在支架表面上的受体特异的放射性部分。 这些部分特异性地结合受体,变得固定在其上,从而使支架放射性并且有效地抑制再狭窄。