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    • 1. 发明授权
    • Stretch resistant vaso-occlusive coils
    • 抗拉伸血管闭塞线圈
    • US5833705A
    • 1998-11-10
    • US717285
    • 1996-09-20
    • Christopher G. M. KenSon M. GiaErik T. Engelson
    • Christopher G. M. KenSon M. GiaErik T. Engelson
    • A61B17/00A61B17/12A61B19/00A61F2/00A61F2/84A61M29/00
    • A61B17/12022A61B17/12113A61B17/12145A61B17/1215A61B17/12154A61B2017/00867A61B2017/12063A61B2090/3937A61F2002/30093A61F2210/0019
    • This is an implantable vaso-occlusive device. It is typically a vaso-occlusive coil comprised of a primary helically wound coil which may then be wound into a secondary shape. Central to the invention is the use of a stretch-resisting member fixedly attached within at least a portion of the primary coil. The stretch-resisting member may be formed into coil tips at the ends of the coil by melting the polymeric fibers or alloys or by attaching the fibers with a glue. This stretch-resisting member is for the primary purpose of preventing stretching of the coil during movement of that coil, e.g., by retrieval or repositioning after deployment. The device typically has a self-forming secondary shape made from a pre-formed primary linear helically wound coil, although it need not have the secondary form. External fibers may be attached to the device and affixed to the pre-formed linear member to increase. The vaso-occlusive member may be also be covered with a fibrous braid. The device is typically introduced into the body through a catheter. The device is passed axially through the catheter sheath and assumes its secondary form upon exiting the catheter.
    • 这是一种植入式血管闭塞装置。 通常是由初级螺旋缠绕线圈组成的血管闭塞线圈,然后可以将其卷绕成次级形状。 本发明的中心是使用固定地附接在初级线圈的至少一部分中的拉伸抵抗构件。 拉伸阻力构件可以通过熔化聚合物纤维或合金或通过用胶粘附纤维而在线圈的端部形成线圈尖端。 该抗拉伸构件的主要目的是防止在线圈移动过程中线圈的拉伸,例如通过在展开后的取回或重新定位。 该装置通常具有由预先形成的初级线性螺旋缠绕线圈制成的自成形次级形状,尽管它不需要具有二次形式。 外部纤维可以附接到装置并固定到预先形成的线性构件上以增加。 血管闭塞性构件也可以用纤维编织物覆盖。 该装置通常通过导管引入身体。 该装置轴向穿过导管护套,并在离开导管时呈现其次级形式。
    • 2. 发明授权
    • Multiple layered vaso-occlusive coils
    • 多层血管闭塞线圈
    • US6033423A
    • 2000-03-07
    • US974275
    • 1997-11-19
    • Christopher G. M. KenErik T. Engelson
    • Christopher G. M. KenErik T. Engelson
    • A61F2/82A61B17/12A61B17/00
    • A61B17/12022A61B17/12113A61B17/12145A61B17/1215A61B17/12154A61B2017/00526
    • This is an implantable vaso-occlusive device. It is a complex, helically wound coil having multiple secondary layers of primary windings. The final shape is often chunky in nature and may be used in the approximate shape of an anatomical cavity. It may be deployed in the approximate shape of a sphere, an ovoid, or other distorted spherical shape. The device is a self-forming shape made from a pre-formed linear vaso-occlusion member. Fibers may be introduced onto the device and affixed to the pre-formed linear member. The constituent member may be also be covered with a fibrous braid. The device is typically introduced through a catheter. The device is passed axially through the catheter sheath and assumes its form upon exiting the catheter without further action. The invention also includes methods of winding the anatomically shaped vaso-occlusive device into appropriately shaped forms and annealing them to form various devices.
    • 这是一种植入式血管闭塞装置。 它是具有多个初级绕组次级层的复杂的螺旋卷绕线圈。 最终形状本质上通常是块状的,并且可以以解剖腔的近似形状使用。 它可以以球体,卵球形或其他变形的球形的近似形状部署。 该装置是由预先形成的线性血管闭塞构件制成的自形成形状。 纤维可以引入到装置上并固定到预成形的线性构件上。 构成部件也可以用纤维编织物覆盖。 该装置通常通过导管引入。 该装置轴向穿过导管护套,并且在离开导管时采取其形式,而无需进一步的动作。 本发明还包括将解剖形状的血管闭塞装置卷绕成适当形状的形状并将其退火以形成各种装置的方法。
    • 3. 发明授权
    • Stretch resistant vaso-occlusive coils
    • 抗拉伸血管闭塞线圈
    • US6004338A
    • 1999-12-21
    • US132117
    • 1998-08-11
    • Christopher G. M. KenSon M. GiaErik T. Engelson
    • Christopher G. M. KenSon M. GiaErik T. Engelson
    • A61B17/00A61B17/12A61B19/00A61F2/00A61F2/84A61M29/00
    • A61B17/12022A61B17/12113A61B17/12145A61B17/1215A61B17/12154A61B2017/00867A61B2017/12063A61B2090/3937A61F2002/30093A61F2210/0019
    • This is an implantable vaso-occlusive device. It is typically a vaso-occlusive coil comprised of a primary helically wound coil which may then be wound into a secondary shape. Central to the invention is the use of a stretch-resisting member fixedly attached within at least a portion of the primary coil. The stretch-resisting member may be formed into coil tips at the ends of the coil by melting the polymeric fibers or alloys or by attaching the fibers with a glue. This stretch-resisting member is for the primary purpose of preventing stretching of the coil during movement of that coil, e.g., by retrieval or repositioning after deployment. The device typically has a self-forming secondary shape made from a pre-formed primary linear helically wound coil, although it need not have the secondary form. External fibers may be attached to the device and affixed to the pre-formed linear member to increase . The vaso-occlusive member may be also be covered with a fibrous braid. The device is typically introduced into the body through a catheter. The device is passed axially through the catheter sheath and assumes its secondary form upon exiting the catheter.
    • 这是一种植入式血管闭塞装置。 通常是由初级螺旋缠绕线圈组成的血管闭塞线圈,然后可以将其卷绕成次级形状。 本发明的中心是使用固定地附接在初级线圈的至少一部分中的拉伸抵抗构件。 拉伸阻力构件可以通过熔化聚合物纤维或合金或通过用胶粘附纤维而在线圈的端部形成线圈尖端。 该抗拉伸构件的主要目的是防止在线圈移动过程中线圈的拉伸,例如通过在展开后的取回或重新定位。 该装置通常具有由预先形成的初级线性螺旋缠绕线圈制成的自成形次级形状,尽管它不需要具有二次形式。 外部纤维可以附接到装置并固定到预先形成的线性构件上以增加。 血管闭塞性构件也可以用纤维编织物覆盖。 该装置通常通过导管引入身体。 该装置轴向穿过导管护套,并在离开导管时呈现其次级形式。
    • 5. 发明授权
    • High performance braided catheter
    • 高性能编织导管
    • US06824553B1
    • 2004-11-30
    • US09648378
    • 2000-08-25
    • Gene SamsonUriel Hiram CheeKim NguyenEdward J. SnyderErik T. Engelson
    • Gene SamsonUriel Hiram CheeKim NguyenEdward J. SnyderErik T. Engelson
    • A61M2900
    • A61M25/005A61M25/0053A61M25/0054A61M2025/0081
    • This is a catheter assembly and a section of that catheter assembly. That catheter assembly may be used in accessing a tissue target within the body, typically a target which is accessible through the vascular system. Central to the invention is the use of a braided metallic reinforcing member, typically of super-elastic alloy ribbon, situated within the catheter body in such a way to create a catheter having an exceptionally thin wall, controlled stiffness, high resistance to kinking, and complete recovery in vivo from kinking situations. The braid may have a single pitch or may vary in pitch along the axis of the catheter or catheter section. The braided ribbon reinforcing member typically is placed between a flexible outer tubing member and an inner tubing member to produce a catheter section which is very flexible but highly kink resistant. The catheter sections made according to this invention may be used alone or in conjunction with other catheter sections either made using the concepts shown herein or made in other ways. The more proximal sections of the catheter assembly are often substantially stiffer than the more distal sections due to the presence of stiff polymeric tubing or metallic tubing or composited materials in the stiffer section.
    • 这是导管组件和导管组件的一部分。 该导管组件可用于进入体内的组织靶,通常是通过血管系统可接近的靶。 本发明的中心是使用位于导管主体内的编织金属加强构件,通常为超弹性合金带,以形成具有特别薄壁,受控刚度,高抗扭结性的导管,以及 从扭结情况完全恢复体内。 编织物可以具有单个间距,或者可以沿着导管或导管部分的轴线变化。 编织带加强构件通常放置在柔性外管构件和内管构件之间以产生非常柔性但高度扭结的导管部分。 根据本发明制造的导管部分可以单独使用或与使用本文所示的概念或以其他方式制成的其它导管部分结合使用。 由于在刚性部分中存在刚性聚合物管或金属管或合成材料,所以导管组件的近端部分通常比较远的部分更坚硬。