Engagement and delivery catheter systems
Abstract
A system for engaging heart tissue includes an engagement catheter defining a first lumen therethrough and having a suction port at or near a distal end and a vacuum port at or near a proximal end, a delivery catheter defining a delivery catheter lumen therethrough and configured for slidable insertion into the first lumen of the engagement catheter, and an implantable device capable of insertion into the delivery catheter lumen such that at least part of the implantable device extends from a delivery catheter distal end upon implantation into a patient, where the suction port is operable to removably attach to a targeted tissue on an interior wall of a heart of the patient after the engagement catheter has been advanced through a blood vessel and into the heart, thereby forming a reversible seal with the targeted tissue when a vacuum source is operatively coupled to the vacuum port.
Claims
exact text as granted — not AI-modified1 . A system, comprising:
an engagement catheter extending from a distal end to a proximal end and defining a first lumen therethrough, the engagement catheter having a suction port at or near the distal end and a vacuum port at or near the proximal end; and a delivery catheter comprising an elongated tube extending from a delivery catheter distal end to a delivery catheter proximal end and defining a delivery catheter lumen therethrough, the delivery catheter configured for slidable insertion into the first lumen of the engagement catheter, wherein the delivery catheter lumen has a bend, relative to the elongated tube, at or near the delivery catheter distal end, and a bend outlet through the elongated tube.
2 . The system of claim 1 , wherein the suction port is configured to removably attach to a targeted tissue on an interior wall of a heart of a patient after the engagement catheter has been advanced through a blood vessel and into the heart, the suction port forming a reversible seal with the targeted tissue when a vacuum source is operatively coupled to the vacuum port.
3 . The system of claim 1 , further comprising:
an implantable device configured for insertion into the delivery catheter lumen and further configured so that at least part of the implantable device extends from the delivery catheter distal end upon implantation into the patient.
4 . The system of claim 3 , wherein the implantable device comprises a lead having a tip at a lead distal end, the lead tip configured for implantation into the patient.
5 . The system of claim 4 , wherein the tip of the lead has a substantially screw-like shape.
6 . The system of claim 3 , wherein the implantable device comprises an elongated shaft with a plug positioned thereon, the plug defining a hole extending from a plug distal end to a plug proximal end, wherein at least part of the elongated shaft is positioned within the hole.
7 . The system of claim 6 , wherein the plug is configured to close an aperture within the patient tissue after the plug distal end is positioned within the aperture.
8 . The system of claim 6 , wherein the plug distal end has a smaller diameter than the plug proximal end, and wherein the hole defined within the plug is self-sealing upon removal of the shaft from the hole.
9 . The system of claim 3 , wherein the implantable device comprises a closure member having a first cover and a second cover, the closure member configured to transition from a folded configuration from within the delivery catheter lumen to an expanded configuration outside of the delivery catheter lumen, the first cover and the second cover each configured for reversible attachment to a distal end of a delivery wire, the closure member configured to close an aperture within a patient tissue.
10 . The system of claim 9 , wherein when the first cover is positioned through the aperture and expanded on a first side of the patient tissue, and wherein when the second cover is expanded on the second side of the patient tissue at or near the aperture, the first cover and the second cover effectively closes the aperture.
11 . The system of claim 3 , wherein the implantable device comprises a closure member having a head and a plurality of arms extending from the head, the closure member configured to transition between an open position and a closed position, the closure member operable to close an aperture within a patient tissue.
12 . The system of claim 11 , wherein the closure member is operable to close the aperture by engaging the patient tissue using the plurality of arms and transitioning from the open position to the closed position.
13 . The system of claim 3 , wherein the delivery catheter is configured so that a portion of the implantable device can be delivered through the delivery catheter lumen, to the bend, and out of the bend outlet.
14 . The system of claim 3 , wherein the suction port is configured to removably attach to a targeted tissue on an interior wall of a heart of the patient after the engagement catheter has been advanced through a blood vessel and into the heart, the suction port forming a reversible seal with the targeted tissue when a vacuum source is operatively coupled to the vacuum port.
15 . The system of claim 1 , wherein the bend forms an angle that is approximately 90 degrees.
16 . A system, comprising:
an engagement catheter extending from a distal end to a proximal end and defining a first lumen therethrough, the engagement catheter having a suction port at or near the distal end and a vacuum port at or near the proximal end; a delivery catheter comprising an elongated tube extending from a delivery catheter distal end to a delivery catheter proximal end and defining a delivery catheter lumen therethrough, the delivery catheter configured for slidable insertion into the first lumen of the engagement catheter, wherein the delivery catheter lumen has a bend, relative to the elongated tube, at or near the delivery catheter distal end, and a bend outlet through the elongated tube; and an implantable device configured for insertion into the delivery catheter lumen and further configured so that at least part of the implantable device extends from the delivery catheter distal end upon implantation into a patient.
17 . The system of claim 16 , wherein the suction port of the engagement catheter is configured to removably attach to a targeted tissue on an interior wall of a heart of the patient, and wherein the delivery catheter further comprises a needle positioned upon or within the delivery catheter, the needle capable of piercing the targeted tissue to form a targeted tissue aperture for delivery of a guidewire or a substance through the targeted tissue aperture.
18 . The system of claim 16 , wherein the engagement catheter further comprises an injection channel having a distal end opening and configured for attachment to an external substance source, such that a substance can be delivered from the external substance source, through the injection channel, and into the targeted tissue.
19 . A system, comprising:
an engagement catheter extending from a distal end to a proximal end and defining a first lumen therethrough, the engagement catheter having a suction port at or near the distal end and a vacuum port at or near the proximal end; a delivery catheter comprising an elongated tube extending from a delivery catheter distal end to a delivery catheter proximal end and defining a delivery catheter lumen therethrough, the delivery catheter configured for slidable insertion into the first lumen of the engagement catheter, wherein the delivery catheter lumen has a bend, relative to the elongated tube, at or near the delivery catheter distal end, and a bend outlet through the elongated tube; and an implantable device configured for insertion into the delivery catheter lumen and further configured so that at least part of the implantable device extends from the delivery catheter distal end upon implantation into a patient; wherein the suction port of the engagement catheter is configured to removably attach to a targeted tissue on an interior wall of a heart of the patient after the engagement catheter has been advanced through a blood vessel and into the heart, the suction port forming a reversible seal with the targeted tissue when a vacuum source is operatively coupled to the vacuum port.
20 . The system of claim 19 , wherein:
the delivery catheter further comprises a steering channel extending from a proximal end of the tube to a distal end of the tube and a steering wire system at least partially located in the steering channel; and the steering wire system comprises a first steering wire, a second steering wire, and a controller, each of the first and second steering wires being attached to the wall of the tube within the steering channel and the controller being attached to a proximal end of each of the first and second steering wires.Join the waitlist — get patent alerts
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