Energy delivery systems and uses thereof
The present invention relates to comprehensive systems, devices and methods for delivering energy to tissue for a wide variety of applications, including medical procedures (e.g., tissue ablation, resection, cautery, vascular thrombosis, treatment of cardiac arrhythmias and dysrhythmias, electrosurgery, tissue harvest, etc.). In certain embodiments, systems, devices, and methods are provided for delivering energy to difficult to access tissue regions (e.g. peripheral lung tissues), and/or reducing the amount of undesired heat given off during energy delivery.
1. A microwave energy delivery device,
wherein the microwave energy delivery device is of sufficient length to extend from the mouth of a human subject, through the trachea of the human subject, into the lung of the human subject and to the peripheral lung of the human subject,
wherein the diameter of the microwave energy delivery device is approximately 2 mm or less;
wherein the microwave energy delivery device is flexible;
the microwave energy delivery device having a proximal end and a distal end,
wherein the microwave energy delivery device comprises an inner conductor, an outer conductor, and a stylet tip,
the inner conductor is a conductor of microwave energy,
the outer conductor is a conductor of microwave energy,
the inner conductor having a proximal end and a distal end,
the outer conductor having a proximal end and a distal end,
the stylet tip having a proximal end and a distal end,
the stylet tip attached at the distal end of the microwave energy delivery device,
wherein the distal end of the microwave energy delivery device comprises an inflexible region positioned between flexible regions.
2. The microwave energy delivery device of claim 1 , wherein the microwave energy delivery device has therein one or more coolant channels for circulating and recirculating coolant, wherein the one or more coolant channels does not extend to the distal end of the stylet tip.
3. The microwave energy delivery device of claim 2 , wherein the microwave energy delivery device is configured to detect an undesired rise in temperature within the microwave energy delivery device and automatically or manually reduce such an undesired temperature rise through flowing of coolant through the one or more coolant channels.
4. The microwave energy delivery device of claim 1 ,
wherein the microwave energy delivery device has thereon a temperature sensor.
5. The microwave energy delivery device of claim 1 , wherein said microwave energy delivery device comprises a microwave ablation device.
6. The microwave energy delivery device of claim 1 , wherein a dielectric material is positioned between the inner conductor and the outer conductor.
7. The microwave energy delivery device of claim 1 , wherein the inner conductor and the outer conductor comprise air channels.
8. The microwave energy delivery device of claim 1 , wherein the microwave energy delivery device is a triaxial microwave probe.
9. The microwave energy delivery device of claim 8 , wherein the triaxial microwave probe comprises optimized tuning capabilities to reduce reflective heat loss.
10. The microwave energy delivery device of claim 9 , wherein the triaxial antenna comprises an inner conductor, a dielectric material, and an outer conductor, wherein the dielectric material is between the inner conductor and the outer conductor.