Device and method for clot engagement
A clot removal device may include a tubular clot capture element having a first internal diameter and a clot engaging element having a second external diameter. The first diameter and the second diameter may be selected to permit the clot engaging element to be rotated within the tubular clot capture element. A method of removing a clot from a blood vessel may including delivering the tubular clot capture element and clot engaging element to a clot site such that the clot engaging element may rotate within the tubular clot engaging element.
1. A clot removal device, comprising:
a tubular clot capture element having a first internal diameter; and
a clot engaging element including a helix having an open end on a distal side thereof configured, in an expanded state, to encircle a clot from a proximal side of a clot location, with a terminal end of the clot engaging element being located substantially at the expanded open end of the helix and aligned with a circumference of the helix, to define a substantially unobstructed channel for encircling the clot, wherein the helix has a second external diameter in the expanded state, and wherein the first internal diameter and the second external diameter are selected to permit the clot engaging element to be rotated within the tubular clot capture element;
wherein the first internal diameter and the second external diameter are selected to permit the clot engaging element to longitudinally move within the clot capture element; and
further comprising a first shaft that extends from a proximal end of the clot capture element, and a second shaft that extends from a proximal end of the clot engaging element, and wherein the second shaft is configured to rotate within the first shaft.
2. The device of claim 1 , wherein the tubular clot capture element includes a mesh-like structure.
3. The device of claim 1 , wherein the tubular clot capture element includes a mesh-like structure and wherein the helix is configured to be rotated about the exterior of the clot and the mesh-like structure is configured to contain the helix and the clot.
4. The device of claim 1 , wherein the first internal diameter and the second external diameter are chosen such that an outer surface area of the clot engaging element contacts an inner surface area of the clot capture element.
5. The device of claim 1 , further comprising a locking mechanism locking the clot engaging element within the clot capture element.
6. The device of claim 1 , wherein the first internal diameter and the second external diameter are selected to permit the clot engaging element to fully expand within the clot capture element.