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    • 1. 发明授权
    • Intraluminal visualization system with deflectable mechanism
    • 具有偏转机制的管腔内可视化系统
    • US06743227B2
    • 2004-06-01
    • US09822678
    • 2001-03-30
    • Mahmoud K. SerajEric ChanJames F. Kelley
    • Mahmoud K. SerajEric ChanJames F. Kelley
    • A61B1818
    • A61M25/0668A61B18/1492A61B2017/22038A61M25/0051A61M25/0054A61M25/0138A61M25/0147A61M2025/0042A61M2025/0047A61M2025/0081A61M2025/0161A61M2025/0681A61M2025/1052A61M2025/1079A61N1/056A61N2001/0578A61N2001/0585
    • This is a combination method and system for intravascularly accessing and visualizing a body structure. A system is disclosed comprising a sheath, a balloon catheter, and a catheter deflection mechanism. A micro-deflection mechanism, which may be placed into the lumen of devices such as cardiac leads or electrophysiology catheters, is also provided for accurate guidance and placement of such devices to their target location. In one embodiment, a procedure for a lead or catheter placement is described in which a combination deflection mechanism, balloon catheter, and sheath assembly access the coronary sinus ostium via a superior approach. A distal balloon on the catheter is inflated and an occlusive venogram is obtained under fluoroscopic guidance to visualize the coronary veins. The sheath is advanced into the coronary sinus ostium and the balloon is deflated. The catheter and deflection mechanism are then removed. Next, a micro-deflection mechanism that has been inserted into the lumen of a cardiac lead is deployed through the sheath, allowing the lead to deflect with a high degree of accuracy and control as it is placed in the selected location.
    • 这是用于血管内访问和可视化身体结构的组合方法和系统。 公开了一种包括护套,球囊导管和导管偏转机构的系统。 还可以提供可以放置在诸如心脏引线或电生理学导管的装置的内腔中的微偏转机构,用于将这些装置精确地引导和放置到其目标位置。 在一个实施例中,描述了用于引导或导管放置的过程,其中组合偏转机构,球囊导管和护套组件通过优异的方法进入冠状窦口。 导管上的远端气球被充气,并且在荧光镜引导下获得闭塞静脉图以使冠状静脉可视化。 鞘进入冠状窦口,气囊放气。 然后取出导管和偏转机构。 接下来,已经插入到心脏引线的内腔中的微偏转机构通过护套展开,从而允许引线在被放置在所选择的位置时以高度的精度和控制偏转。
    • 8. 发明授权
    • Method of making ultrasonically welded, staked of swaged components in an implantable medical device
    • 在可植入医疗器械中超声波焊接,锻压组件的方法
    • US06205358B1
    • 2001-03-20
    • US09159119
    • 1998-09-23
    • Daniel C. HaegCraig L. WiklundJames F. Kelley
    • Daniel C. HaegCraig L. WiklundJames F. Kelley
    • A61N1362
    • A61N1/375Y10T29/49174
    • The present invention generally relates to implantable medical devices and more particularly to various means for ultrasonically welding, swaging or staking various components in an implantable medical device, most preferably by employing appropriately configured covers or lids. Covers or lids are attached to header or connector modules mounted on an hermetically enclosed and sealed enclosure, where the connector or header module and enclosure comprise an implantable medical device. The covers or lids preferably trap or otherwise secure any of a number of various connector or header module components within the header or connector modules. Examples of such trapped or secured components include grommets, set screw connector blocks, seals, feedthrough wires, multi-beam contacts, electrical contacts, antennas, radio-opaque markers, connector ribbons and the like.
    • 本发明总体上涉及可植入医疗装置,更具体地说,涉及用于在植入式医疗装置中超声波焊接,锻压或铆接各种部件的各种装置,最优选地采用适当配置的盖子或盖子。 盖子或盖子连接到安装在密封和密封的外壳上的插头或连接器模块,其中连接器或插头模块和外壳包括可植入的医疗装置。 盖子或盖子优选地捕获或以其他方式固定头部或连接器模块内的多个连接器或头部模块组件中的任何一个。 这种被捕获或固定部件的实例包括垫圈,固定螺钉连接器块,密封件,馈通线,多梁接触件,电触头,天线,不透射线的标记,连接器带等。
    • 9. 发明授权
    • Polyetherimide resin/polyester resin blends having improved properties
    • 具有改进性能的聚醚酰亚胺树脂/聚酯树脂共混物
    • US6150473A
    • 2000-11-21
    • US211304
    • 1998-12-14
    • Sterling Bruce BrownYimin JinJames F. KelleyJun LiaoMichael Teruki TakemoriRaymond Lee Utley
    • Sterling Bruce BrownYimin JinJames F. KelleyJun LiaoMichael Teruki TakemoriRaymond Lee Utley
    • C08K5/00C08K5/1515C08L63/00C08L67/02C08L79/08
    • C08L67/02C08K5/005C08K5/1515C08L79/08
    • The present invention is directed to a thermoplastic resin composition comprising one or more polyetherimide resins; one or more polyester resins; at least one epoxy compound having one or more epoxy functional groups per molecule in an amount effective to improve at least one of impact resistance, hydrolytic resistance, and tab-bending performance of a molded specimen of the composition; and optionally, at least one catalyst in an amount effective to improve at least one of impact resistance, hydrolytic resistance, and tab-bending performance of a molded specimen of the composition as compared to the same composition not containing the catalyst. It was unexpectedly found that the compositions exhibited enhanced heat, impact, hydrolytic resistance, and/or enhanced tab-bending performance over other compositions known in the art. In a preferred embodiment, the epoxy compound contains 3,4-epoxycyclohexylmethyl-3,4-epoxycyclohexanecarboxylate and the catalyst contains sodium stearate.
    • 本发明涉及一种包含一种或多种聚醚酰亚胺树脂的热塑性树脂组合物; 一种或多种聚酯树脂; 至少一种每分子具有一个或多个环氧官能团的环氧化合物,其量可以有效地改善组合物的模制样品的抗冲击性,抗水解性和弯曲弯曲性能中的至少一种; 和任选的至少一种催化剂,其量可以有效地改善与不含催化剂的相同组合物相比,该组合物的模塑试样的耐冲击性,耐水解性和弯曲弯曲性能中的至少一种。 意外地发现,与本领域已知的其它组合物相比,组合物显示出增强的热,冲击,抗水解性和/或增强的弯片弯曲性能。 在优选的实施方案中,环氧化合物含有3,4-环氧环己基甲基-3,4-环氧环己烷羧酸酯,催化剂含有硬脂酸钠。