US2020315788A1PendingUtilityA1

Device and Method for Temporary or Permanent Suspension of an Implantable Scaffolding Containing an Orifice for Placement of a Prosthetic or Bio-Prosthetic Valve

Assignee: ANNEST LON SUTHERLANDPriority: Apr 10, 2009Filed: Oct 28, 2019Published: Oct 8, 2020
Est. expiryApr 10, 2029(~2.7 yrs left)· nominal 20-yr term from priority
Inventors:Lon S. Annest
A61F 2250/0006A61F 2/2466A61F 2/2445A61F 2/2427A61F 2/246A61F 2/2457A61B 2017/0441A61B 2017/0427A61B 2017/0409A61B 2017/00243A61F 2220/0016A61F 2250/006A61F 2/2436A61F 2220/0008A61F 2/2418A61F 2/2409A61F 2/2439A61F 2/2412A61B 2017/00349A61B 17/0469A61F 2250/0003A61B 2017/003
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Claims

Abstract

In a surgical method for improving cardiac function, an implantable scaffold or valve support device is inserted inside a patient's heart and attached to the heart in a region adjacent to a natural mitral or other heart valve. The scaffold or valve support device defines an orifice and, after the attaching of the scaffold or valve support device to the heart, or temporary support while native valve leaflets and/or subvalvular structures are captured, a prosthetic or bio-prosthetic valve seated in the orifice, and the native valve may be retracted into the scaffold/replacement assembly to create a gasket for sealing the complex.

Claims

exact text as granted — not AI-modified
1 - 52 . (canceled) 
     
     
         53 . A surgical method for use in heart repair in a subject, comprising:
 providing an implantable scaffold including:   a seating structure configured for receiving or seating a prosthetic or bio-prosthetic valve, and   a flexible outer margin element surrounding said seating structure, said outer margin element and said seating structure being different from one another and spaced in their entireties from one another, said outer margin element and said seating structure being connected to one another by at least one flexible coupling member;   disposing said scaffold in an expanded non-deformed pre-attachment configuration inside a vascular system of a patient;   maneuvering said scaffold into position near a natural or native valve of the vascular system of the patient, the maneuvering of said expanded scaffold including manipulating a plurality of tethers or wires extending to said outer margin element, said manipulator tethers or wires being detachably connected at their distal ends directly to said outer margin element;   individually or independently manipulating said manipulator tethers or wires to deform said outer margin element so as to conform said outer margin element to an irregular internal wall surface of said vascular system, said at least one flexible coupling member being deformable to accommodate deforming of said outer margin element;   attaching said outer margin element to said internal wall surface, the attaching of said outer margin element including applying at least one fastener or fixation mechanism to said outer margin element and said internal wall surface so that said outer margin element conforms to said internal wall surface; and   upon the attaching of said outer margin element, detaching said manipulator tethers or wires from said outer margin element and concomitantly from said scaffold.   
     
     
         54 . The method of  claim 53  wherein the disposing of said scaffold includes:
 inserting a catheter into a vascular system of a patient, said scaffold being disposed in a collapsed configuration in said catheter; and 
 thereafter ejecting said scaffold from a distal end of said catheter, said scaffold expanding from said collapsed configuration to said expanded non-deformed pre-attachment configuration; 
 
     
     
         55 . The method of  claim 54  wherein said manipulator tethers or wires extend within said delivery catheter. 
     
     
         56 . The method of  claim 53  wherein said at least one fastener or fixation mechanism includes a plurality of fasteners at mutually spaced locations about or along said outer margin element, the applying of said fasteners creating a continuous or near continuous contact between said internal tissue surface and said scaffold all along said outer margin element. 
     
     
         57 . The method of  claim 53  wherein said at least one fastener or fixation mechanism includes an element taken from the group consisting of an expandable stent-like framework, an inflatable ring-component, springs, tissue adhesive, magnets, penetrating hooks, and barbs. 
     
     
         58 . The method of  claim 53  wherein said at least one flexible coupling member includes a membrane extending between said outer margin element and said seating structure. 
     
     
         59 . The method of  claim 58  wherein said membrane tents away from one side of said scaffold, to provide a space between said scaffold and a native valve. 
     
     
         60 . The method of  claim 53 , further comprising disposing a prosthetic valve within said seating structure so that said prosthetic valve is attached to said scaffold. 
     
     
         61 . The method of  claim 60 , further comprising coupling said scaffold to sub-valvular apparatus of a native heart valve, the coupling including clamping a tether between said prosthetic valve and said seating structure, said tether being attached to said sub-valvular apparatus. 
     
     
         62 . The method of  claim 53 , further comprising securing said scaffold to cordae tendenae of the patient's heart, the securing including threading at least one tether element about the cordae tendenae, drawing said at least one tether element said through an orifice of said scaffold defined by said seating structure, and seating a prosthetic or bio-prosthetic valve in said orifice so that so that said at least one tether element is clamped between said seating structure and said prosthetic or bio-prosthetic valve. 
     
     
         63 . A surgical method for use in heart repair in a subject, comprising:
 providing an implantable scaffold including:   a seating structure defining an orifice for receiving or seating a prosthetic or bio-prosthetic valve, and   a flexible outer margin element surrounding said seating structure, said outer margin element and said seating structure being different from one another and spaced in their entireties from one another, said outer margin element and said seating structure being connected to one another by at least one flexible coupling member;   inserting a catheter into a vascular system of a patient, said scaffold being disposed in a collapsed configuration in said catheter;   thereafter ejecting said scaffold from a distal end of said catheter, said scaffold expanding from said collapsed configuration to an expanded non-deformed pre-attachment configuration;   maneuvering the expanded scaffold into position near a natural or native valve of the vascular system of the patient, the maneuvering of said expanded scaffold including manipulating a plurality of tethers or wires extending through said catheter to said outer margin element, said manipulator tethers or wires being detachably connected at their distal ends directly to said outer margin element;   individually or independently manipulating said manipulator tethers or wires to deform said outer margin element so as to conform said outer margin element to an irregular internal wall surface of said vascular system, said at least one flexible coupling member being deformable to accommodate deforming of said outer margin element;   attaching said outer margin element in a conforming configuration to said internal wall surface, the attaching of said outer margin element including applying a plurality of fasteners at spaced locations about said outer margin element; and   upon the attaching of said outer margin element, detaching said manipulator tethers or wires from said outer margin element and concomitantly from said scaffold.   
     
     
         64 . The method of  claim 63  wherein said fasteners each include an element taken from the group consisting of an expandable stent-like framework, an inflatable ring-component, springs, tissue adhesive, magnets, penetrating hooks, and barbs. 
     
     
         65 . The method of  claim 63  wherein said scaffold includes a membrane extending between said outer margin element and said seating structure. 
     
     
         66 . The method of  claim 65  wherein said membrane tents away from one side of said scaffold, to provide a space between said scaffold and a native valve. 
     
     
         67 . The method of  claim 63 , further comprising disposing a prosthetic valve within said seating structure so that said prosthetic valve is attached to said scaffold. 
     
     
         68 . The method of  claim 67 , further comprising coupling said scaffold to sub-valvular apparatus of a native heart valve, the coupling including clamping a tether between said prosthetic valve and said seating structure, said tether being attached to said sub-valvular apparatus. 
     
     
         69 . The method of  claim 63 , further comprising securing said scaffold to cordae tendenae of the patient's heart, the securing including threading at least one tether element about the cordae tendenae, drawing said at least one tether element through said orifice defined by said seating structure, and seating a prosthetic or bio-prosthetic valve in said orifice so that so that said at least one tether element is clamped between said seating structure and said prosthetic or bio-prosthetic valve.

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