Patent classifications
A61M2025/1013
DOUBLE BALLOON VASCULAR OCCLUSION CATHETER
An apparatus and methods are provided for a double balloon vascular occlusion catheter. The double balloon vascular occlusion catheter includes a catheter for reaching an injury site within an artery. The catheter includes a central lumen for receiving a wire to guide the catheter to the injury site. A distal aspect of the double balloon vascular occlusion catheter includes proximal and distal balloons for being inflated on opposite sides of the injury site. A space between the balloons provides a blood occlusion segment of the catheter when the balloons are inflated. Inflation tubes and luer-locks at a proximal aspect of the double balloon vascular occlusion catheter enable inflation of the balloons. The double balloon vascular occlusion catheter may include a bidirectional lumen that causes unobstructed blood flow to bypass the blood occlusion segment.
Perfusion balloon with a selectively actuatable valve
An apparatus for performing a medical procedure and, in particular, an aortic valvuloplasty, in a vessel for transmitting a flow of fluid includes a first inflatable balloon, such a perfusion balloon with a plurality of cells in a single cross-section of the balloon for permitting the fluid flow in the vessel. An inflatable valve, which may take the form of a second inflatable balloon, may be provided for controlling the fluid, flow through the first balloon when inflated. Through selective movement of the second balloon when inflated via the flow rhythms created by the beating heart, a one way valve results that can be used to mimic the natural flow created by the valve under treatment.
Implantable nuclear prosthesis, kits, and related methods
The present disclosure includes devices, apparatuses, kits, and methods for replacing a nucleus pulposus of an intervertebral disc with an implantable nuclear prosthesis filled with a curable silicone material in situ. Configurations of the present spinal implant devices include a flexible body defining an outer fillable enclosure that defines an outer chamber, an inner fillable enclosure that defines an inner chamber, and a proximal plug configured to be coupled to the inner fillable enclosure.
Apparatus and methods for restoring tissue
An apparatus and methods tissue restoration are provided. The apparatus may include a catheter shaft extending from a proximal end to a distal tip, a plurality of serial balloons positioned on a translucent distal segment of the catheter shaft proximal to the distal tip and positioned inside of and concentric with a second distal balloon, the plurality of serial balloons in fluid communication with an inflation source via a first lumen, each of the plurality of serial balloons having a selectively expandable outermost radial surface. The plurality of serial balloons may include a translucent material, a series of isolated volumetric regions positioned between the plurality of serial balloons and recessed from the outermost radial surfaces of the serial balloons. The apparatus may include a distal balloon positioned around the plurality of serial balloons, and a light fiber positioned in the catheter shaft and extending through the translucent distal segment.
Delivery systems for prosthetic heart valve
Described herein are systems and methods from delivering prosthetic devices, such as prosthetic heart valves, through the body and into the heart for implantation therein. The prosthetic devices delivered with the delivery systems disclosed herein are, for example, radially expandable from a radially compressed state mounted on the delivery system to a radially expanded state for implantation using an inflatable balloon of the delivery system. Exemplary delivery routes through the body and into the heart include transfemoral routes, transapical routes, and transaortic routes, among others.
CLOT RETRIEVAL SYSTEM FOR REMOVING OCCLUSIVE CLOT FROM A BLOOD VESSEL
A clot capture catheter having an outer inflatable expansile member and an inner inflatable expansile member positioned within the outer inflatable expansile member at a distal end of a shaft of the catheter is presented herein. The inner and outer inflatable expansile members can have differing compliance than each other. Inflation of a higher compliance inner inflatable expansile member can cause a lower compliance outer inflatable expansile member to shorten and provide tension to the distal end of the shaft to case the distal end to open to a funnel shape. Inflation of a lower compliance inner inflatable expansile member can center the distal end of the shaft within a vessel, and inflation of a higher compliance outer inflatable member can provide atraumatic flow arrest to the vessel.
Double balloon catheter having a lobed inner balloon
An apparatus, including a flexible insertion tube having a distal end for insertion into a body cavity, and first and second conduits configured to deliver first and second fluids, respectively, to the distal end. The distal end includes a first balloon coupled to the first conduit so that the first fluid inflates the first balloon and is delivered, via one or more spray ports in the first balloon, to tissue in the body cavity, a second balloon contained within the first balloon and coupled to the second conduit so that the second fluid inflates the second balloon, and multiple splines including a flexible, resilient material and extending along a longitudinal axis of the distal end, and configured to constrain the second balloon so that inflation of the second balloon creates lobes that form, along the longitudinal axis between the lobes, channels that direct the first fluid to the spray ports.
Balloon catheter
In some examples, a catheter includes one or more balloons positioned between an inner wall and an outer wall of an elongated body of the catheter. The one or more balloons are configured to expand through one or more inner wall openings defined by the inner wall and into an inner lumen of the catheter, as well as through one or more outer wall openings defined by the outer wall, e.g., to extend radially away from an outer surface of the outer wall of the catheter. In some examples, the one or more balloons are configured to expand radially inward through the one or more inner wall openings and into the inner lumen of the catheter to contact (e.g., directly contact) a guidewire positioned within the inner lumen.
Apparatus and methods for accessing and sealing bodily vessels and cavities
Everting balloon systems and methods for using the same are disclosed herein. The systems can be configured to access and dilate body lumen and cavities. For example, the systems can be used to dilate the cervix and access the uterine cavity. The systems can also be used to occlude the cervix. The systems can also be used to occlude the urethra.
Systems and Methods for Treating Cardiovascular Tissue
Systems for imparting pulsatile energy to cardiovascular tissue are provided. Aspects of the systems include a console assembly comprising a potential source, a manifold assembly operably connected to an output of the console assembly, wherein the manifold assembly comprises an oscillator configured to generate pulse energy from energy transmitted from the potential source and a catheter assembly operably connected to an output of the manifold assembly. Catheter assemblies of the present invention include a connector operably connecting the catheter assembly to the manifold assembly and configured to transduce a first pulse energy generated by the manifold assembly to a second pulse energy, a catheter comprising a fluidic passage operably connected to the output of the connector and configured to transmit the second pulse energy and a heart-tissue-conforming element configured to receive the second pulse energy transmitted through the fluidic passage of the catheter to apply pulsatile energy to cardiovascular tissue. Also provided are methods for imparting pulsatile energy to cardiovascular tissue, e.g., deploying a system so that a heart-tissue-conforming element of the system is adjacent to cardiovascular tissue and engaging the system in a manner that the heart-tissue-conforming element imparts energy to the cardiovascular tissue. In addition, standalone catheter assemblies as well as kits comprising components of the systems described herein are provided. The systems, assemblies, methods and kits find use in a variety of different applications, including balloon angioplasty applications or other catheter-based therapies or treatments.