System and method for salivary stones removal and joint arthroscopy
A method and probe device are presented, suitable for use in joint arthroscopy. A beam of pulsed laser radiation of a wavelength range of about 2700-3000 nm and a predetermined frequency of pulses is produced, directed to a joint region inside a fluid medium and maintained substantially focused on a treatment target within the joint region during a predetermined time period. By this, a tissue within the treatment target is effected by the laser radiation.
1. A method for treating a target tissue within a body cavity filled with a fluid medium and comprising a joint, the method comprising:
producing a beam of pulsed laser radiation of a wavelength range of about 2700-3000 nm and a predetermined frequency of pulses;
directing said pulsed beam to a region of said joint within said fluid medium and maintaining said beam substantially focused on a treatment target within said joint region during a predetermined time period, thereby treating tissue within said treatment target by said laser radiation; and
wherein said directing of said pulsed beam includes:
providing a hollow wave-guide pipe made of a material reflective to said wavelength range, having a dielectric inner surface, and being sealed at a distal end thereof by a sapphire tip-like portion; and
placing the distal end of the pipe in contact or very near contact to the treatment target.
2. The method according to claim 1 , wherein said sapphire tip-like portion is located inside the pipe substantially not protruding therefrom.
3. The method according to claim 1 , wherein said sapphire tip-like portion is located inside the pipe slightly protruding therefrom.
4. The method according to claim 1 , wherein the region of said joint includes at least one of the following: a tissue or calcification in the temporomandibular joint, the knee, shoulder, ankle, fibrous scar tissue, torn, damaged meniscus, and calcified tendons.
5. The method according to claim 1 , further comprising endoscopic imaging of the joint region.
6. The method according to claim 1 , wherein the intensity of the laser beam is about 200-2000 millijoule.
7. The method according to claim 6 wherein the intensity parameters of the laser beam is about 500-1500 millijoule.
8. A method for delivering Erbium high-intensity laser light to a target inside a fluid filled bodily cavity comprising a joint, the method comprising: passing the laser light though a hollow wave-guide made of a material substantially reflective to wavelengths of about 2700-3000 nm, and being sealed at its distal end, by which it is brought to the cavity, by a tip portion made of a material substantially transparent to said wavelengths; and inserting said distal end into the fluid-filled cavity to irradiate the vicinity of the target by the laser light.