Flow rate monitor for fluid cooled microwave ablation probe
A microwave ablation system includes an antenna assembly configured to deliver microwave energy from a power source to tissue and a coolant source operably coupled to the power source and configured to selectively provide fluid to the antenna assembly via a fluid path. The system also includes a controller operably coupled to the power source and a sensor operably coupled to the fluid path and the controller. The sensor is configured to detect fluid flow through the fluid path and the controller is configured to control the energy source based on the detected fluid flow.
1. A microwave ablation system comprising:
a power source configured to generate microwave energy;
an antenna assembly coupled to the power source;
a coolant source coupled to the antenna assembly and configured to supply a fluid through a fluid path to the antenna assembly;
a sensor coupled to the fluid path and configured to generate an electrical signal indicative of a flow of the fluid through the fluid path;
a signal processing circuit coupled to the sensor and configured to detect at least one peak of the electrical signal being indicative of an interruption in the flow of the fluid through the fluid path; and
a controller configured to automatically adjust output of the microwave energy from the power source based on the detected peak.
2. The microwave ablation system according to claim 1 , wherein the sensor is an electro-mechanical switch and the electrical signal is generated based on a position of the electro-mechanical switch.
3. The microwave ablation system according to claim 1 , wherein the sensor is a capacitive device and the electrical signal is generated based on a capacitance of the capacitive device.
4. The microwave ablation system according to claim 3 , wherein the capacitive device comprises a dielectric disposed between a pair of parallel capacitive plates.
5. The microwave ablation system according to claim 4 , wherein the capacitance of the capacitive device is based on a permittivity of the dielectric disposed between the capacitive plates.
6. The microwave ablation system according to claim 1 , wherein the antenna assembly is coupled to the power source by a feedline and the antenna assembly includes radiating section connected to the feedline.
7. The microwave ablation system according to claim 6 , wherein the antenna assembly further includes:
an inlet fluid port and an output fluid port coupled to the coolant source through the fluid path; and
a sheath in fluid communication with the inlet fluid port and the output fluid port, the sheath enclosing the radiating section and the feedline and defining a chamber for circulating the fluid.