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    • 2. 发明授权
    • Medical device for intraluminal endovascular stenting
    • 用于管腔内血管内支架术的医疗装置
    • US06918928B2
    • 2005-07-19
    • US10377392
    • 2003-02-28
    • Lone WolinskyAmir David LoshakoveArvi PennerOffer NativGil NaorNiall Duffy
    • Lone WolinskyAmir David LoshakoveArvi PennerOffer NativGil NaorNiall Duffy
    • A61F2/84A61F2/00A61F2/06A61F2/90
    • A61F2/91A61F2/915A61F2002/91525A61F2002/91533A61F2002/91583A61F2230/0054A61F2250/0098
    • A medical device includes a catheter and a stent mounted on the catheter, the stent having a hollow, cylindrical body made with a plurality of rings. The rings each extend circumferentially around the cylindrical body and include an undulating series of peaks and valleys. The rings are joined together by a series of links which are shaped and arranged to promote longitudinal flexibility as the stent is delivered on the catheter and effective scaffolding after deployment. In one aspect of the invention, the rings are provided with inflection points on some portions of the rings which extend in a generally circumferential direction for a short distance. A link is joined at one end at the inflection point on one ring and also joined at a second end at a second inflection point on an adjacent ring. This construction allows the crimped stent to flex longitudinally when it is subjected to bending forces such as those encountered during delivery of the stent and catheter through a tortuous coronary artery.
    • 医疗装置包括导管和安装在导管上的支架,支架具有由多个环制成的中空的圆筒体。 这些环各自围绕圆柱体圆周延伸并且包括起伏的一系列峰和谷。 这些环通过一系列连接件连接在一起,这些连接件成形和布置成当支架在导管上被输送并且在部署之后有效的脚手架时促进纵向柔性。 在本发明的一个方面中,环在环的某些部分上设置有拐点,所述拐点在大致圆周方向上延伸短距离。 连杆在一个环的拐点的一端连接,并且在相邻环上的第二拐点处的第二端处连接。 这种结构允许卷曲的支架在受到弯曲力时纵向弯曲,例如在通过曲折冠状动脉输送支架和导管期间遇到的弯曲力。
    • 3. 发明授权
    • Medical device for intraluminal endovascular stenting
    • 用于管腔内血管内支架术的医疗装置
    • US06730116B1
    • 2004-05-04
    • US09292991
    • 1999-04-16
    • Lone WolinskyAmir David LoshakoveArvi PennerOffer NativGil NaorNiall Duffy
    • Lone WolinskyAmir David LoshakoveArvi PennerOffer NativGil NaorNiall Duffy
    • A61F206
    • A61F2/91A61F2/915A61F2002/91525A61F2002/91533A61F2002/91583A61F2230/0054A61F2250/0098
    • A medical device includes a catheter and a stent mounted on the catheter, the stent having a hollow, cylindrical body made with a plurality of rings. The rings each extend circumferentially around the cylindrical body and include an undulating series of peaks and valleys. The rings are joined together by a series of links which are shaped and arranged to promote longitudinal flexibility as the stent is delivered on the catheter and effective scaffolding after deployment. In one aspect of the invention, the rings are provided with inflection points on some portions of the rings which extend in a generally circumferential direction for a short distance. A link is joined at one end at the inflection point on one ring and also joined at a second end at a second inflection point on an adjacent ring. This construction allows the crimped stent to flex longitudinally when it is subjected to bending forces such as those encountered during delivery of the stent and catheter through a tortuous coronary artery.
    • 医疗装置包括导管和安装在导管上的支架,支架具有由多个环制成的中空的圆筒体。 这些环各自围绕圆柱体圆周延伸并且包括起伏的一系列峰和谷。 这些环通过一系列连接件连接在一起,这些连接件成形和布置成当支架在导管上被输送并且在部署之后有效的脚手架时促进纵向柔性。 在本发明的一个方面中,环在环的某些部分上设置有拐点,所述拐点在大致圆周方向上延伸短距离。 连杆在一个环的拐点的一端连接,并且在相邻环上的第二拐点处的第二端处连接。 这种结构允许卷曲的支架在受到弯曲力时纵向弯曲,例如在通过曲折冠状动脉输送支架和导管期间遇到的弯曲力。
    • 6. 发明授权
    • Methods and apparatus for deploying and implantable biosensor
    • 用于部署和植入生物传感器的方法和装置
    • US06699186B1
    • 2004-03-02
    • US09523414
    • 2000-03-10
    • Lone WolinskyAvi Penner
    • Lone WolinskyAvi Penner
    • A61B500
    • A61B5/6876A61B1/00147A61B5/02014A61B5/0215A61B5/026A61B5/076A61B5/11A61B5/14546A61B5/6862
    • An implantation device for delivering a biosensor to an implantation site in a patient's body comprises an elongate catheter equipped with a distally located cavity sized to house a biosensor. Once the distal end of the catheter is positioned adjacent the implantation site, the biosensor is released through an opening from the cavity into the site. A removable cover, such as a thin adhesive film, may be used to retain the biosensor in the cavity, while the catheter is guided through the body to the implantation site. The implantation device may include an actuator for displacing the biosensor from the cavity into the implantation site. By way of one example, the actuator may be a piston inserted through a lumen of the catheter.
    • 用于将生物传感器递送到患者体内的植入部位的植入装置包括:细长导管,其具有设置成容纳生物传感器的位于远侧的腔。 一旦导管的远端位于植入位置附近,生物传感器通过从空腔的开口释放到现场。 可以使用诸如薄的粘合剂膜的可移除的盖子将生物传感器保持在空腔中,同时导管被引导穿过身体到植入部位。 植入装置可以包括用于将生物传感器从腔体移位到植入部位的致动器。 作为一个示例,致动器可以是穿过导管的内腔插入的活塞。
    • 9. 发明授权
    • Radially-expandable stent and delivery system
    • 径向扩张支架和输送系统
    • US06533807B2
    • 2003-03-18
    • US09019210
    • 1998-02-05
    • Lone WolinskyOfer NativAmir Loshakove
    • Lone WolinskyOfer NativAmir Loshakove
    • A61F206
    • A61F2/91A61F2/915A61F2/95A61F2/966A61F2002/91533A61F2002/91583A61F2230/0054A61F2250/0037
    • The present invention provides radially-expandable stents that, in various embodiments, may reduce the bending stresses/strains associated with the compressed state of self-expanding stents and/or may prevent longitudinal expansion/contraction of radially expandable stents between the compressed and expanded states. In addition, stents according to the present invention preferably exhibit increased longitudinal flexibility in both the compressed and expanded states. The present invention also includes delivery systems in which threading of the guidewire through the delivery system may be simplified. In addition, the delivery systems according to the present invention may also incorporate a balloon to assist in radially expanding the stent and/or seating of the stent in the lumen during deployment without removing the stent delivery catheter. Further, the delivery systems may also include a support tube at the proximal end to assist in fixing the position of the stent relative to a guide catheter during deployment of the stent.
    • 本发明提供径向可扩张的支架,其在各种实施例中可以减少与自膨胀支架的压缩状态相关联的弯曲应力/应变和/或可以防止在压缩和膨胀状态之间的径向可扩张支架的纵向膨胀/收缩 。 此外,根据本发明的支架优选在压缩和膨胀状态下显示出增加的纵向柔性。 本发明还包括可以简化通过输送系统的导丝的穿线的输送系统。 此外,根据本发明的输送系统还可以包括气囊,以在展开期间辅助径向膨胀支架和/或将支架置于内腔中,而不需要移除支架输送导管。 此外,输送系统还可以包括在近端处的支撑管,以有助于在展开支架期间相对于导向导管固定支架的位置。