Surgical cutting device and method for its use
A surgical endoscopic cutting device includes cutting elements fitted in a protective tube. The device has an inlet for fluid, a discharge outlet for tissue and fluid, and a further outlet that discharges most of the fluid.
1. A method for removal of fibroid tissue from a uterus, comprising:
transcervically inserting first and second discrete channels into the uterus, the first discrete channel having a first end in communication with an inlet valve such that a physiological salt solution is able to flow from the inlet valve into and through the first discrete channel and out of a second opposing end of the first discrete channel into the uterus, and the second discrete channel having an observation mechanism at a first end thereof and a lens adjacent to a second opposing end thereof, the second discrete channel being sealed from the first discrete channel to prevent the physiological salt solution from the inlet valve from entering the uterus through the second discrete channel;
after the transcervically inserting of the first and the second discrete channels into the uterus, delivering the physiological salt solution into the uterus through the first discrete channel to distend the uterus;
inserting a motor driven cutter into the first discrete channel such that a cutting region of the motor driven cutter extends past the second opposing end of the first discrete channel into the uterus, the motor driven cutter including an outer tube defining a cutting window and an inner tube received within the outer tube, the inner tube defining a lumen;
energizing an electric motor;
after the delivering the physiological salt solution into the uterus, cutting and detaching the fibroid tissue from the uterus using the energized motor driven cutter; and
aspirating the cut and detached fibroid tissue and at least a portion of the a physiological salt solution from the uterus through the lumen of the inner tube of the motor driven cutter.
2. The method of claim 1 , wherein the transcervically inserting the first and second discrete channels occurs prior to the inserting the motor driven cutter.
3. The method of claim 2 , wherein the delivering the physiological salt solution occurs prior to the energizing the electric motor.
4. The method of claim 1 , wherein the second discrete channel is a light channel.
5. The method of claim 4 , further comprising coupling a light source to the light channel to provide light at the lens.
6. The method of claim 1 , wherein the energizing causes the inner tube to rotate relative to the outer tube to cut and detach the fibroid tissue.
7. The method of claim 6 , wherein the inner tube has a cutting element at a distal region thereof that cuts and detaches the fibroid tissue at the cutting window.
8. The method of claim 7 , wherein the cutting element includes teeth.
9. The method of claim 1 , wherein the transcervically inserting the first and second discrete channels into the uterus includes (i) transcervically inserting an insertion tube coupled with an insertion mandrel into the uterus, (ii) removing the insertion mandrel from the insertion tube, and (iii) inserting the first and second discrete channels into the insertion tube.
10. A method for removal of fibroid tissue from a uterus, comprising:
transcervically inserting first and second discrete channels into the uterus, the first discrete channel having a straight, central longitudinal axis extending from a port to an opening at a distal tip of the first discrete channel, the port for receiving a motor driven cutter therethrough, and the second discrete channel having an observation mechanism at a proximal end thereof and a lens adjacent to a distal end thereof;
after the transcervically inserting of the first and the second discrete channels into the uterus, introducing a physiological salt solution into the uterus;
inserting the motor driven cutter into the first discrete channel through the port, the motor driven cutter including an outer tube defining a cutting window and an inner tube received within the outer tube, the inner tube defining a lumen;
after the delivering the physiological salt solution into the uterus, cutting and detaching the fibroid tissue from the uterus using the motor driven cutter; and
aspirating at least a portion of the a physiological salt solution with the cut and detached fibroid tissue from the uterus through the lumen of the inner tube of the motor driven cutter.
11. The method of claim 10 , wherein the second discrete channel is a light channel.
12. The method of claim 11 , further comprising coupling a light source to the light channel to provide light at the lens.
13. The method of claim 10 , wherein the cutting and detaching the fibroid tissue includes rotating the inner tube relative to the outer tube.
14. The method of claim 13 , wherein the inner tube has a cutting element at a distal region thereof that cuts and detaches the tissue at the cutting window.
15. The method of claim 14 , wherein the cutting element includes teeth.
16. The method of claim 10 , wherein the transcervically inserting the first and second discrete channels into the uterus includes (i) transcervically inserting an insertion tube coupled with an insertion mandrel into the uterus, (ii) removing the insertion mandrel from the insertion tube, and (iii) inserting the first and second discrete channels into the insertion tube.
17. The method of claim 10 , wherein the transcervically inserting the first and second discrete channels occurs prior to the inserting the motor driven cutter.
18. The method of claim 10 , wherein the second discrete channel is sealed from the first discrete channel to prevent the physiological salt solution from entering the uterus through the second discrete channel.
19. The method of claim 10 , wherein the introducing the physiological salt solution into the uterus distends the uterus.