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 surgical guide system for guiding a laser surgical instrument comprising:
a guide arrangement formed by a wall shaped as a truncated cone defining a hollow body extending between an input region and an output region, a cross-section of the input region being greater than a cross-section of the output region, an output opening provided at the output region, a cut out portion extending longitudinally through the wall of the body between the input and output regions, a top wall extending through the input region and having at least first and second apertures, a chamber formed within the hollow body, the first aperture guiding passage of a laser surgical instrument having a light delivery tip, a handle connected to the second aperture and extending outwardly from said top wall, a suction conduit connected to the chamber through the second aperture and passing through said handle, a proximal end of the suction conduit connected to a vacuum device creating a vacuum at a distal end thereof and within the chamber, and
wherein in use upon insertion of the laser surgical instrument through the first aperture into the chamber the light delivery tip through the output opening is positioned at a treatment site; wherein said vacuum causes evacuation of debris produced at the treatment site through the output opening, the chamber and the suction conduit.
2. A laser surgical guide system of claim 1 , further comprising additional devices provided at the suction conduit to prevent clogging of evacuation system.
3. A laser surgical guide system of claim 2 , wherein said additional devices are selected from the group comprising a filter, a screen, a mesh, a shield and other barriers associated with the conduit.
4. A surgical guide system of claim 1 , further comprising a viewing instrument provided at the output region.
5. A laser surgical guide system of claim 4 , wherein the laser surgical instrument is a laser transmitting rod, by manipulating the laser transmitting rod within the output opening the light delivery tip is positioned to an optimum angle at a patient's body lumens while being observed by the viewing instrument.
6. A surgical guide system of claim 1 , wherein said top wall is integral with the input region.