CLOT RETRIEVAL SYSTEM WITH EXPANDABLE CLOT ENGAGING FRAMEWORK
20210393275 · 2021-12-23
Assignee
Inventors
Cpc classification
A61B17/221
HUMAN NECESSITIES
A61B2017/2217
HUMAN NECESSITIES
International classification
Abstract
A clot removal device for removing a clot from a body vessel is presented. The device can facilitate clot retrieval by expanding in such a way as to engage the clot over a significant surface area. The clot can have at least one firm portion and at least one soft portion. At least one firm portion of the clot can be pinched by a proximal portion of the device while at least one soft portion of the clot can be retained by the distal portion of the device upon extraction. However, dislodgement and removal of the clot can cause softer portions the clot to shear or break, resulting in small floating fragments of clot in the vessel no longer attached to the main clot. This device can also capture and retain sheared or expanded distal portions of the clot upon removal of the clot from a vessel.
Claims
1. A clot removal device for removing a clot from a body vessel, the clot removal device comprising: a clot engagement framework comprising a collapsed delivery configuration, a clot-engaging deployed configuration, and a clot-pinching configuration such that at least a portion of the clot engagement framework is configured to engage a clot in the deployed configuration and to pinch a clot on movement from the deployed configuration to the clot-pinching configuration; a hypotube comprising a proximal end and a distal end at least partially surrounded by the clot engagement framework approximate the hypotube's distal end; and a distal emboli protection system movable from a collapsed delivery configuration within the hypotube to an expanded deployed configuration distal to the hypotube's distal end.
2. The device of claim 1 wherein the hypotube further comprises a clot-gripping outer surface.
3. The device of claim 1 wherein at least a portion of the clot engagement portion encircles the hypotube in a spiral configuration.
4. The device of claim 1 wherein the hypotube is configured to cross the clot.
5. The device of claim 1 wherein the distal emboli protection system in the expanded deployed configuration is sized to travel through a retrieval catheter.
6. A clot removal device for removing a clot from a body vessel, the clot removal device delivered to the vessel via a catheter and comprising: a pull wire; and a stentriever comprising a proximal spiral section and a distal cylindrical body section, the distal cylindrical body section configured to expand from a collapsed delivery configuration to a pinching configuration and an expanded configuration, in the collapsed delivery configuration, the stentriever and pull wire are inside the catheter, in the pinching configuration the stentriever and a portion of the pull wire are outside the catheter and the stentriever comprises a first diameter, and in the expanded configuration, a proximal end of the clot contacts a distal end of catheter and upon movement of the pull wire in relation to the stentriever, the stentriever moves to a second diameter.
7. The device of claim 6 wherein when the pull wire is retracted proximally in relation to the stentriever, the diameter of the cylindrical body section radially expands to be greater than the diameter of the cylindrical body section in the pinching configuration.
8. The device of claim 6 wherein the pull wire is affixed to the stentriever approximate a distal end of the stentriever.
9. The device of claim 6 wherein at least a portion of the spiral section encircles the pull wire.
10. A method of treating a patient with an occluded vessel, the occlusion comprising a clot and the method comprising the steps of: delivering a clot engagement framework positioned within a microcatheter; delivering with the clot engagement framework a hypotube comprising a distal emboli protection system therein to the occluded vessel; deploying the clot engagement framework to contact at least a portion of the clot; crossing the clot with the hypotube; advancing the microcatheter over a proximal portion of the clot engagement framework, thereby pinching the clot; deploying the distal emboli protection system; and withdrawing the clot engagement framework, the distal emboli protection system and clot from the patient.
11. The method of claim 10 further comprising: withdrawing the clot engagement framework, and the distal emboli protection system into the microcatheter; and removing the clot engagement framework, the distal emboli protection system, and clot from the patient.
12. The method of claim 10 further comprising: withdrawing the clot, clot engagement framework, and distal emboli protection system in unison.
13. The method of claim 10 further comprising: gripping the clot with an outer surface of the hypotube.
14. The method of claim 10, further comprising: capturing clot fragments with the distal emboli protection system.
15. The method of claim 10 wherein the clot engagement portion at least partially encircles the hypotube in a spiral configuration.
16. A method of treating a patient with an occluded vessel, the occlusion comprising a clot and the method comprising the steps of: delivering a device comprising a stentriever and pull wire to the occluded vessel through a microcatheter; deploying the stentriever to contact at least a portion of the clot such that a proximal spiral portion of the stentriever forms a spiral and a distal cylindrical portion of the stentriever forms a cylindrical body; pinching at least a portion of the clot with the spiral portion of the stentriever; retracting the pull wire to radially expand the cylindrical portion of the stentriever; withdrawing in unison from the vessel the microcatheter and the device; and removing the device, microcatheter, and clot from the patient.
17. The method of claim 16 wherein the step of pinching at least a portion of the clot with the spiral portion further comprises moving a first portion of the spiral portion proximally towards the microcatheter, thereby causing a second portion of the spiral portion to collapse and pinch the clot.
18. The method of claim 16 further comprising collecting at least a portion of the clot within a distal cone of the stentriever.
19. The method of claim 18, further comprising: retracting the pull wire to radially expand the distal cone.
20. The method of claim 16, further comprising: positioning the device such that at least a portion of the spiral section portion the pull wire.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The invention will be more clearly understood from the following description of some embodiments thereof, given by way of example only, with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
[0020] Specific embodiments of the present invention are now described in detail with reference to the Figures, wherein identical reference numbers indicate identical or functionally similar elements. The terms “distal” and “proximal” are used in the following description with respect to a position or direction relative to the treating physician. “Distal” or “distally” are a position distant from or in a direction away from the physician. “Proximal” or “proximally” or “proximate” are a position near or in a direction toward the physician.
[0021] Accessing cerebral, coronary, and pulmonary vessels involves the use of a number of commercially available products and conventional procedural steps. Access products such as guidewires, guide catheters, angiographic catheters and microcatheters are described elsewhere and are regularly used in catheter lab procedures. It is assumed in the descriptions below that these products and methods are employed in conjunction with the device and methods of this invention and do not need to be described in detail.
[0022] The following detailed description is merely explanatory in nature and is not intended to limit the invention or the application and uses of the invention. Although the description of the invention is in many cases in the context of treatment of intercranial arteries, the invention may also be used in other body passageways as previously described.
[0023] The expandable members of the designs disclosed are desirably made from a material capable of recovering its shape automatically once released from a highly strained delivery configuration. A superelastic material such as Nitinol or an alloy of similar properties is particularly suitable. The material could be in many forms such as wire or strip or sheet or tube. A particularly suitable manufacturing process is to laser cut a Nitinol tube and then heat set and electropolish the resultant structure to create a framework of struts and connecting elements. This framework can be any of a huge range of shapes as disclosed herein and may be rendered visible under fluoroscopy through the addition of alloying elements (such as platinum) or through a variety of other coatings or marker bands.
[0024] When used herein, the terms “tubular” and “tube” are to be construed broadly and are not limited to a structure that is a right cylinder or strictly circumferential in cross-section or of a uniform cross-section throughout its length. For example, the tubular structure or system is generally illustrated as a substantially right cylindrical structure. However, the tubular system may have a tapered or curved outer surface without departing from the scope of the present invention.
[0025] This device is intended to facilitate clot retrieval by expanding in such a way as to engage the clot over a significant surface area. A portion of the clot can be pinched between the tip of the catheter and the nitinol struts of the device. The clot can have at least one firm portion and at least one soft portion. At least one firm portion of the clot can be pinched by proximal portion of the device while at least one soft portion of the clot can be retained by the distal portion of the device upon extraction. The pinch can be achieved by forwarding a microcatheter or intermediate catheter over the device until a portion of the clot is compressed between the tip of the catheter and a crown or strut on the device. This pinch facilitates removal of the clot as it increases the grip of the device on the clot, particularly fibrin rich clots. It may also elongate the clot reducing the dislodgement force by pulling the clot away from the vessel wall during the dislodgement process. However, dislodgement and removal of the clot can cause soft portions of the clot to shear or break, resulting in small floating fragments of clot in the vessel no longer attached to the main clot. This device is also intended to capture and retain soft, sheared, or expanded distal portions of the clot upon removal of the clot from a vessel.
[0026]
[0027] In
[0028] As further illustrated in
[0029] In
[0030] In
[0031] In
[0032]
[0033] In
[0034] As depicted in
[0035] In
[0036] Other examples can include the distal emboli protection system, as illustrated previously. The distal emboli protection system 115 can serve as a catch-all mechanism to retain these clots upon removal of the device. The protection system 115 can create a barrier between the clot fragments 101b and distal portions of the vessel to prevent the clot fragments 101b from re-entering the vessel and ensuring they are removed with the rest of the clot 101. However, note that this example can capture stray emboli 101b with or without the distal emboli protection system 115.
[0037]
[0038] In the method 300, the clot engagement portion can at least partially encircle the hypotube in a spiral configuration. The method 300 can further include withdrawing the clot engagement framework and the distal emboli protection system into the microcatheter, and removing the clot engagement framework, the distal emboli protection system, and clot from the patient. The method 300 can also include withdrawing the clot, clot engagement framework, and distal emboli protection system in unison. The method 300 can further include gripping the clot with an outer surface of the hypotube (370). The method 300 can also include capturing clot fragments with the distal emboli protection system (380).
[0039]
[0040] The step 430 of pinching at least a portion of the clot with the spiral portion can further include moving a first portion of the spiral portion proximally towards the microcatheter, thereby causing a second portion of the spiral portion to collapse and pinch the clot. The method 400 can further include collecting at least a portion of the clot within a distal cone of the stentriever (460). The step 460 of collecting at least a portion of the clot within the distal cone can further include retracting the pull wire to radially expand the distal cone. The method 400 can further include positioning the device such that at least a portion of the spiral section encircles the pull wire.
[0041] The descriptions contained herein are examples of embodiments of the invention and are not intended in any way to limit the scope of the invention. Modifications apparent to one of ordinary skill in the art following the teachings of this disclosure are intended to be within the scope of the claims which follow.