Methods and devices for cutting tissue at a vascular location
A device for re-entering a lumen during an endovascular procedure when in a subintimal space includes a rotating cutter extending within a first lumen used for cutting tissue, and an energy emitter which emits energy through a window to locate a lumen when in a subintimal space adjacent to the lumen. The cutter is movable to a cutting position which exposes part of the cutter through a first opening so that the cutter may create a path from the subintimal space to the lumen. The cutter is movable distally relative to the elongate body to move the cutter to the cutting position and deflect the distal body portion relative to the main body portion.
1. A device for re-entering a lumen during an endovascular procedure when in a subintimal space, comprising:
an elongate body including a main body portion and a distal body portion at a distal end of the main portion, the elongate body having first and second lumens, a distal end of the first lumen opening from the body at a first opening, a distal end of the second lumen opening from the body at a second opening, the second lumen being sized to receive a guidewire;
a window in the body between the first lumen and an exterior of the body, the window being spaced from the first opening;
a rotating cutter extending within the first lumen used for cutting tissue; and
an energy emitter which emits energy through the window to locate a lumen when in a subintimal space adjacent to the lumen;
the rotating cutter being movable to a cutting position which exposes part of the rotating cutter through the first opening so that the rotating cutter may create a path from the subintimal space to the lumen,
wherein the rotating cutter is movable distally relative to the elongate body to move the rotating cutter to the cutting position and deflect the distal body portion relative to the main body portion.
2. The device of claim 1 , wherein: the energy emitter is coupled to the rotating cutter, the rotating cutter and energy emitter being coupled to a torque transmitting element which rotates the rotating cutter and the energy emitter together.
3. The device of claim 1 , wherein: the rotating cutter is gradually exposable through the first opening so that the amount of exposure may be varied in the cutting position.
4. The device of claim 1 , wherein: the rotating cutter is exposed over 180 degrees relative to an axis of rotation when in the cutting position.
5. The device of claim 1 , wherein: the rotating cutter is exposed over 270 degrees relative to the axis of rotation when in the cutting position.
6. The device of claim 1 , wherein: the distal body portion is bendable relative to the main body portion when the rotating cutter is moved distally relative to the elongate body.
7. The device of claim 1 , wherein: the energy emitter is an ultrasound emitting element.
8. The device of claim 1 , wherein: the elongate body is wider along a portion adjacent to the rotating cutter to urge tissue toward the cutting element.
9. The device of claim 1 , wherein: the elongate body is configured to move within the subintimal space to move the rotating cutter when the rotating cutter creates the path back into the lumen.
10. The device of claim 1 wherein: the window comprises a third opening in a sidewall of the elongate body.
11. The device of claim 1 wherein: the first opening is at a distal end of the elongate body.
12. The device of claim 1 wherein: the first opening is distal of the window.
13. The device of claim 1 , further comprising a lip on the distal body portion, wherein the rotating cutter has a surface engaging the lip and configured to cause the distal body portion to deflect when the rotating cutter is moved distally relative to the elongate body.