Device for cardiac ablation designed for automatic electronic control of the esophageal catheter position
This invention concerns a device ( 1 ) for detecting and monitoring the temperature of the esophagus (E) during cardiac ablation treatments, which makes it possible to continuously and automatically monitor the correct positioning of the temperature sensors ( 3 a, 3 b, 3 c, 3 d, 3 e ).
1. A device ( 1 ) for detecting a temperature of an esophagus (E) during cardiac ablation treatments by means of heat transfer or heat removal,
comprising an esophageal catheter ( 2 ) which can be inserted in a patient's esophagus, and
comprising three or more temperature sensors ( 3 a , 3 b , 3 c , 3 d , 3 e ) designed to detect a temperature of respective portions of the esophagus,
each of the three or more temperature sensors being configured to generate, at successive time points, respective detection signals (r) indicating a temperature of the respective portion of the esophagus,
wherein the three or more temperature sensors are positioned on the esophageal catheter and distributed along a development direction of the esophageal catheter between a first temperature sensor ( 3 a ) and a last temperature sensor ( 3 e ),
wherein the device also comprises a control unit (C) configured to be connected to the esophageal catheter when in use and configured to receive the detection signals coming from each of the three or more temperature sensors, characterized in that the control unit is configured to compare, for each of the time points, all the detection signals generated by the three or more temperature sensors ( 3 a , 3 b , 3 c , 3 d , 3 e ) with each other, and wherein the control unit is configured to generate at least one alarm signal (S 1 ), intended for a case of ablation by heat transfer, when a maximum temperature from among the temperatures detected by each of the three or more temperature sensors and associated with a same time point is detected only by at least one of the first temperature sensor and the last temperature sensor, or configured to generate at least one alarm signal (S 1 ), intended for a case of ablation by heat removal, when the minimum temperature from among the temperatures detected by each of the three or more temperature sensors and associated with the same time point is detected only by at least one of the first temperature sensor and the last temperature sensor.
2. The device according to claim 1 , wherein the device comprises at least one acoustic or luminous indicator ( 4 ) connected to the control unit and designed to be activated by the at least one alarm signal generated by the control unit.
3. The device according to claim 2 , wherein the control unit is configured to generate at least one further alarm signal (S 2 ) when at least one temperature detected by at least one of the three or more temperature sensors is equal to or higher than or equal to or lower than a respective preset maximum or minimum limit value, the at least one acoustic or luminous indicator being designed to be activated also by the at least one further alarm signal.
4. The device according to claim 1 , wherein the three or more temperature sensors are aligned in such a way as to form at least one row of sensors along the esophageal catheter development direction.
5. The device according to claim 1 , wherein all the three or more temperature sensors are equidistant along the development direction.
6. The device according to claim 5 , wherein a distance between one sensor and a next sensor, along the development direction, is between 0.5 cm and 2 cm, the three or more temperature sensors not necessarily being equidistant.
7. The device according to claim 1 , wherein a distance between the first and the last sensor, along the development direction, is between 3 and 8 cm.
8. The device according to claim 1 , wherein the esophageal catheter is not equipped with ablation elements.
9. The device according to claim 1 , wherein each of the three or more temperature sensors is associated with at least one transducer to generate at least the detection signals.