Abstract:
Systems for the delivery of endoluminal devices are disclosed. An illustrative system may include a delivery sheath having an inner sheath and an outer sheath. The delivery sheath may be configured to restrain a stent in a compressed delivery configuration. The outer sheath may cover the entire length of the stent and the inner sheath may cover a portion of the length of the stent.
Abstract:
Medical devices and methods and making and using medical devices are disclosed. An example medical device may include an elongate shaft having a distal region. An expandable member may be coupled to the distal region. The expandable member may be capable of shifting between a first configuration and an expanded configuration. The expandable member may have a distal portion, a proximal portion, and a body portion disposed between the distal portion and the proximal portion. The body portion may have a projection formed therein that projects radially outward from the body portion. A flexible electrode assembly may be coupled to the projection.
Abstract:
A guide catheter may include a tubular member having an inner layer defining a lumen extending therethrough, a reinforcing braid disposed about the inner layer, a plurality of steering wires interwoven through the reinforcing braid, and an outer layer disposed about the reinforcing braid. At least a portion of the reinforcing braid may be embedded within the outer layer. An introducer sleeve may be slidably disposed over the tubular member. A flush port element may be operably connected to the introducer sleeve.
Abstract:
Medical devices and methods for making and using medical devices are disclosed. An example medical device for sympathetic nerve ablation may include a catheter shaft. An expandable balloon may be coupled to the catheter shaft. The balloon may be capable of shifting between an unexpanded configuration and an expanded configuration. The balloon may include a first layer and a second layer. The first layer may include a convertible circuit. An electrode may be coupled to the balloon and may be in electrical contact with the convertible circuit.
Abstract:
A balloon for renal nerve modulation, the balloon comprising a polymer material forming a balloon wall having an interior surface and an exterior surface and flexible circuits adhesively bonded to the exterior surface of the balloon wall, wherein the exterior surface comprises laser induced microstructures on at least a portion of said exterior surface.
Abstract:
A renal nerve ablation device may include an elongate tubular member having a distal region. An expandable member may be coupled to the distal region. An electrode support may be coupled to the distal region of the elongate tubular member and extend over a body of the expandable member. The electrode support may be free of connection to the body of the expandable member. One or more electrodes may be coupled to the electrode support.
Abstract:
Systems for nerve modulation are disclosed. An example system for nerve modulation may include a catheter shaft having a proximal end, a distal end and lumen extending therebetween. An inflatable member may be fluidly connected to the lumen of the catheter shaft proximate the distal end of the catheter shaft. The inflatable member may have an outer wall defining a groove in an outer surface of the inflatable member. An electrode may be disposed in or under the groove.
Abstract:
System for nerve modulation and method for making and using the same are disclosed. An example system may include an elongate shaft having a proximal end region, a deflectable distal end region and a lumen extending to the deflectable distal end region. The deflectable distal end region may include an electrode surrounded by a permeable membrane. The permeable membrane may be fluidly connected to the lumen.
Abstract:
Medical devices and methods for making and using medical devices are disclosed. An example medical device may include a renal nerve modulation device. The renal nerve modulation device may include an elongate shaft having proximal region and a distal region. An ablation member may be coupled to the distal region. The distal region may have a distal inner diameter. The proximal region may have a proximal inner diameter that is smaller than the distal inner diameter. A ribbon may be disposed within the distal region of the shaft. The ribbon may have a proximal end and a distal end. The proximal end of the ribbon may extend into the proximal region of the shaft. The distal end of the ribbon may be disposed adjacent to or otherwise coupled to the ablation member.