Methods and systems for determining physiologic characteristics for treatment of the esophagus
A method and apparatus for treating abnormal mucosa in the esophagus is disclosed, such that the depth of the treated tissue is controlled. The depth of ablation is controlled by monitoring the tissue impedance and/or the tissue temperature. A desired ablation depth is also achieved by controlling the energy density or power density, and the amount of time required for energy delivery. A method and apparatus is disclosed for measuring an inner diameter of a body lumen, where a balloon is inflated inside the body lumen at a fixed pressure.
1. An apparatus for treating an esophagus, comprising:
a generator having a source of RF energy connected to an generator electrical connector and a pump connected to a generator pneumatic connector; and
a sizing and treatment catheter having a proximal end and a distal end, an electrical connector configured for attachment to the generator electrical connector and a pneumatic connector on the proximal end configured for attachment to the generator pneumatic connector and a balloon on the distal end of the catheter in communication with the pneumatic connector and an electrode array on an exterior surface of the balloon in communication with the electrical connector;
wherein, when the sizing and treatment catheter is connected to the generator electrical connector and the generator pneumatic connector, the generator is configured to: (i) determine a dimension of the esophagus by measuring an amount of expansion medium delivered to the balloon with a mass-flow meter; (ii) inflate the sizing and treatment catheter to a target pressure; and (iii) deliver sufficient energy to the electrode array for treatment of the esophagus based on the dimension of the esophagus determined by the generator.
2. An apparatus for treating an esophagus according to claim 1 , wherein the generator is further configured to deflate the sizing and treatment catheter after delivery of energy to the electrode array.
3. An apparatus for treating an esophagus according to claim 1 , wherein the target pressure is between about 1 psig and about 10 psig.
4. An apparatus for treating an esophagus according to claim 1 , wherein the target pressure is between about 4 psig and about 7 psig.
5. An apparatus for treating an esophagus according to claim 1 , wherein the target pressure is between about 2 and about 3 psig.
6. An apparatus for treating an esophagus according to claim 1 , wherein the generator is configured to use a target pressure that will inflate the sizing and treatment catheter to engage with and unfold the walls of the esophagus.
7. An apparatus for treating an esophagus according to claim 1 , wherein the generator is configured to deliver sufficient energy to the electrode array for treatment of the esophagus to accomplish ablation of mucosal or submucosal level esophageal tissue.
8. An apparatus for treating an esophagus according to claim 1 , wherein the generator is configured to deliver sufficient energy to the electrode array for treatment of the esophagus by delivering to different circumferential sections of the esophageal wall sequentially in less than 5 seconds.
9. An apparatus for treating an esophagus according to claim 1 wherein the generator is configured to deliver sufficient energy to the electrode array for treatment of the esophagus by activating the electrode array to deliver an energy density from 1 J/cm2 to 50 J/cm2.
10. An apparatus for treating an esophagus according to claim 1 wherein the generator is adapted to normalize the density of energy delivered to the tissue over time based on the dimension of the esophagus determined by the generator.
11. An apparatus for treating an esophagus according to claim 1 wherein the generator is configured to deliver sufficient energy to the electrode array for treatment of the esophagus in less than 5 seconds.