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    • 6. 发明申请
    • Multi-exchange catheter guide member with improved seal
    • 多重交换导管导向件具有改进的密封
    • US20060135948A1
    • 2006-06-22
    • US11015272
    • 2004-12-16
    • Ashish Varma
    • Ashish Varma
    • A61M25/00
    • A61M25/09041A61M25/0029A61M25/0032A61M2025/09116A61M2025/09125
    • A catheter and a guidewire exchange system includes a catheter and a guide member. The catheter includes a lumen extending through the shaft and sized to receive the guidewire, and a longitudinal guideway enabling transverse access from the shaft exterior surface to the lumen. The guide member includes a housing, a catheter passageway extending through the housing and adapted to slidably receive the catheter, a guidewire passageway extending from one end of the housing into the catheter passageway and including a tube adapted to merge the guidewire transversely through the guideway and into the first lumen, and a user-activated device positioned in the guidewire passageway and including a clamping body adapted to clamp the guidewire and thereby secure the guidewire in the guidewire passageway.
    • 导管和导丝交换系统包括导管和引导构件。 导管包括延伸穿过轴并且尺寸适于接纳导丝的腔,以及能够从轴外表面到内腔的横向进入的纵向导轨。 引导构件包括壳体,延伸穿过壳体并适于滑动地容纳导管的导管通道,从壳体的一端延伸到导管通道中并且包括适于将导丝横穿导轨并入导管的导管, 以及位于导丝通道中的用户激活的装置,并且包括适于夹紧导丝的夹持主体,从而将导丝固定在导丝通道中。
    • 7. 发明申请
    • Hyper-elastic, high strength dilatation balloon made from multi-block copolymers
    • 由多嵌段共聚物制成的超弹性高强度膨胀球囊
    • US20050118370A1
    • 2005-06-02
    • US10920457
    • 2004-08-18
    • Ashish VarmaKimberly Chaffin
    • Ashish VarmaKimberly Chaffin
    • A61L29/00A61L29/04A61M25/00B29C47/00B29C55/04B29C55/12B29C71/00B65D1/00
    • A61L29/04A61L29/049C08L53/00Y10T428/1352
    • A self-wrapping dilatation balloon comprising a multiblock copolymer having high elasticity and elastic recovery from nominal strains greater than about 30% is described. Also described herein, is a polymeric extrudate for making a dilatation balloon comprising a multiblock copolymer having tensile strength in the range of about 50 MPa to about 450 MPa, strain at break in the range of about 50% to about 600% and substantially complete elastic recovery from nominal strains of at least about 30%. The extrudate has phase-separated microdomains that are macroscopically aligned in parallel, perpendicular, transverse or a combination thereof. Also described herein is a process for producing a polymeric extrudate for use as a dilatation balloon. The process comprises extruding a multiblock copolymer mixture or composition to form an extrudate. The extruding is done such that the extrudate has phase-separated microdomains that are macroscopically aligned in parallel, perpendicular, transverse or a combination thereof. After extrusion, the process optionally comprises the steps of drawing and coagulating the extrudate.
    • 描述了包含具有高于约30%的标称应变的高弹性和弹性恢复的多嵌段共聚物的自包裹膨胀气球。 本文还描述了一种用于制造膨胀气囊的聚合物挤出物,其包含具有约50MPa至约450MPa范围内的拉伸强度,约50%至约600%范围内的拉伸应变和基本上完全弹性的多嵌段共聚物 从名义菌株中恢复至少约30%。 挤出物具有相分离的微区域,它们在宏观上对齐,平行,垂直,横向或其组合。 本文还描述了用于生产用作膨胀气球的聚合物挤出物的方法。 该方法包括挤出多嵌段共聚物混合物或组合物以形成挤出物。 进行挤出使得挤出物具有相互分离的微区域,其宏观地对准在平行,垂直,横向或其组合。 挤出后,该方法任选地包括拉伸和凝结挤出物的步骤。
    • 9. 发明申请
    • Process for Producing a Hyper-Elastic, High Strength Dilatation Balloon made from Multi-Block Copolymers
    • 用于生产由多嵌段共聚物制成的超弹性,高强度膨胀气球的方法
    • US20090140449A1
    • 2009-06-04
    • US12261090
    • 2008-10-30
    • Ashish VarmaKimberly A. ChaffinFrank BatesMarc HillmyerLisa LimTamotsu Harada
    • Ashish VarmaKimberly A. ChaffinFrank BatesMarc HillmyerLisa LimTamotsu Harada
    • B29C47/00
    • A61L29/04A61L29/049C08L53/00Y10T428/1352
    • A self-wrapping dilatation balloon comprising a multiblock copolymer having high elasticity and elastic recovery from nominal strains greater than about 30% is described. Also described herein, is a polymeric extrudate for making a dilatation balloon comprising a multiblock copolymer having tensile strength in the range of about 50 MPa to about 450 MPa, strain at break in the range of about 50% to about 600% and substantially complete elastic recovery from nominal strains of at least about 30%. The extrudate has phase-separated microdomains that are macroscopically aligned in parallel, perpendicular, transverse or a combination thereof. Also described herein is a process for producing a polymeric extrudate for use as a dilatation balloon. The process comprises extruding a multiblock copolymer mixture or composition to form an extrudate. The extruding is done such that the extrudate has phase-separated microdomains that are macroscopically aligned in parallel, perpendicular, transverse or a combination thereof. After extrusion, the process optionally comprises the steps of drawing and coagulating the extrudate.
    • 描述了包含具有高于约30%的标称应变的高弹性和弹性恢复的多嵌段共聚物的自包裹膨胀气球。 本文还描述了一种用于制造膨胀气囊的聚合物挤出物,其包含具有约50MPa至约450MPa范围内的拉伸强度,约50%至约600%范围内的拉伸应变和基本上完全弹性的多嵌段共聚物 从名义菌株中恢复至少约30%。 挤出物具有相分离的微区域,它们在宏观上对齐,平行,垂直,横向或其组合。 本文还描述了用于生产用作膨胀气球的聚合物挤出物的方法。 该方法包括挤出多嵌段共聚物混合物或组合物以形成挤出物。 进行挤出使得挤出物具有相互分离的微区域,其宏观地对准在平行,垂直,横向或其组合。 挤出后,该方法任选地包括拉伸和凝结挤出物的步骤。
    • 10. 发明申请
    • Minimal injury resorbable stent
    • 最小损伤可吸收支架
    • US20050149172A1
    • 2005-07-07
    • US10740805
    • 2003-12-22
    • Ashish Varma
    • Ashish Varma
    • A61F2/02A61F2/06A61L31/14D01F4/00D01F6/62
    • A61F2/06A61F2210/0004A61L31/148D01F4/00D01F6/62D01F6/625
    • A minimal injury resorbable stent comprising an oriented resorbable material drawn to a ratio about 7-350 is disclosed. The drawn materials of the present invention have tensile strength of about 50-500 MPa and Young's modulus of about 2-300 GPa. The bioresorbable stents can have cylindrical shape and optionally further comprise one or more of a solvent, plasticizer, biologically active agent and modifier. Also disclosed is a method for manufacturing a minimal injury resorbable stent. The process comprises contacting a resorbable polymer with a solvent to form a polymer mixture, extruding said polymer mixture to form an extrudate, drawing said extrudate to a draw ratio in the range of about 7-350 to form a drawn extrudate and forming said stent from said drawn extrudate. The process optionally further comprises coagulating the extrudate and annealing the extrudate and/or stent.
    • 公开了一种最小损伤可再吸收支架,其包括被拉伸至约7-350的比例的定向可再吸收材料。 本发明的拉伸材料具有约50-500MPa的拉伸强度和约2-300GPa的杨氏模量。 生物可再吸收支架可以具有圆柱形形状,并且任选地还包含一种或多种溶剂,增塑剂,生物活性剂和改性剂。 还公开了一种用于制造最小损伤可再吸收支架的方法。 该方法包括使可再吸收的聚合物与溶剂接触以形成聚合物混合物,挤出所述聚合物混合物以形成挤出物,将所述挤出物拉伸至约7-350范围内的拉伸比,以形成拉伸挤出物并形成所述支架 所述拉伸挤出物。 该方法任选还包括使挤出物凝结并使挤出物和/或支架退火。