Laser device for vascular and intrabody surgery and method of use
A laser atherectomy device includes a light delivery catheter equipped with sensors for monitoring physical characteristics at a laser application site. An integrated control unit utilizing data from said sensors is provided to optimally adjust laser energy parameters and to provide for safe and efficacious ablation of the blood vessel occlusion.
1. A laser atherectomy device, comprising:
a laser light delivery catheter extending between proximal and distal ends thereof, the catheter comprising an outer surface and a central passageway defining an opening;
multiple optical fibers extending along the opening;
a laser configured to transmit light through the optical fibers to an occlusion;
a vacuum pump configured to generate suction within the opening to form a low-pressure zone at the distal end;
an expandable arrangement, formed at the distal end, configured to increase an outer diameter of the catheter and to increase an area of contact between the occlusion and the catheter in an activated condition thereof, the expandable arrangement comprising a balloon-type internal cavity outwardly expandable by increasing an internal pressure within the cavity, wherein in the activated condition spaces are formed between adjacent optical fibers, said spaces and the catheter configured to be filled at least partially with a liquid to serve as a medium to transfer a laser light to the occlusion; and
multiple pairs of opposed blades spaced from each other and disposed at the distal end inside the opening, each of said blades comprising a base connected to an inner surface of the opening and a sharpened exterior edge, each pair of opposed blades is separated by a gap so that a continuous unrestricted area is formed between the multiple pairs of opposed blades along a longitudinal axis of the catheter, the blades are arranged to facilitate destruction of occlusion materials developed during a laser-based procedure and to facilitate evacuation of said materials through the continuous unrestricted area due to said suction.
2. The laser atherectomy device according to claim 1 , wherein the balloon-type internal cavity comprises at least two spaces separated from each other by a barrier, each of said spaces containing a predetermined chemical, said wherein the barrier separating the spaces is configured to be destroyed to combine the chemicals together to generate an increased volume of pressurized gas that expands the balloon cavity to a required size.
3. The laser atherectomy device according to claim 2 , wherein the device is configured to induce an electric current within the barrier to generate heat capable of destroying the barrier.
4. The laser atherectomy device according to claim 2 , wherein the barrier is configured to be destroyed by an electric current provided in the catheter.
5. The laser atherectomy device according to claim 2 , wherein said chemicals are gaseous type chemicals.
6. The laser atherectomy device according to claim 1 , further comprising one or more sensors provided at the distal end to analyze physical characteristics of the occlusion and a surrounding area.
7. The laser atherectomy device according to claim 6 , further comprising a control unit for controlling and managing characteristics of the laser based on signals from the sensors delivered to the control unit.
8. The laser atherectomy device according to claim 1 , wherein each of said blades is disposed at an acute angle relative to the inner surface of the opening with the sharpened edge facing the distal end.
9. The laser atherectomy device according to claim 1 , wherein each of said blades comprises a triangular cross section with a base and two sides meeting at the sharpened edge.