SEGMENTED BALLOON LASER ABLATION CATHETER
First Claim
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1. A laser ablation catheter comprising:
- an inner sheath and an outer sheath;
a plurality of optical fibers, wherein the plurality of optical fibers comprise an area between the inner sheath and the outer sheath;
an inner lumen, wherein the inner sheath separates the inner lumen from the plurality of optical fibers;
a segmented balloon assembly comprising a plurality of balloons circumferentially aligned around the outer sheath at the distal end of the catheter;
at least one inflation source coupled to the segmented balloon assembly; and
a controller for controlling the inflation of the plurality of balloons according to a predetermined inflation sequence.
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Abstract
The present disclosure relates generally to medical devices, and, in particular, to a system for improved intraluminal positioning of a laser ablation catheter during the removal of material resulting from therapeutic treatment of occlusions within blood vessels. Given the challenges associated with delivering effective therapy for vascular blockages, there remains a need to provide a catheter that can maintain a consistent intraluminal position during the treatment, despite irregularities and inconsistencies within the vessel.
22 Citations
20 Claims
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1. A laser ablation catheter comprising:
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an inner sheath and an outer sheath; a plurality of optical fibers, wherein the plurality of optical fibers comprise an area between the inner sheath and the outer sheath; an inner lumen, wherein the inner sheath separates the inner lumen from the plurality of optical fibers; a segmented balloon assembly comprising a plurality of balloons circumferentially aligned around the outer sheath at the distal end of the catheter; at least one inflation source coupled to the segmented balloon assembly; and a controller for controlling the inflation of the plurality of balloons according to a predetermined inflation sequence. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A segmented balloon assembly for a laser ablation catheter comprising:
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a plurality of balloons circumferentially aligned around the distal end of the catheter, wherein the plurality of balloons are functionally engaged with each other and with at least one inflation source such that the plurality of balloons sequentially inflate and deflate during a laser ablation procedure to produce rotational movement. - View Dependent Claims (10, 11, 12, 13)
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14. A method of engaging an occlusion in a vessel using a segmented balloon assembly on the distal end of a laser ablation catheter, the method comprising:
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advancing a guidewire through a proximal entry port of an inner lumen of the catheter through a distal exit port of the inner lumen of the catheter, and into a region of the occlusion; advancing the distal end of the catheter to a working distance from the occlusion; establishing an intraluminal position within the vessel by inflating a plurality of balloons in the segmented balloon assembly simultaneously, wherein the plurality of balloons are circumferentially aligned around the distal end of the catheter; using a controller to activate a predetermined inflation sequence to sequentially deflate and inflate individual balloons within the segmented balloon assembly to move the catheter; and activating a plurality of optical fibers to transmit energy from the distal end of the catheter to ablate a region of the occlusion. - View Dependent Claims (15, 16, 17, 18, 19, 20)
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Specification