Reflectance-facilitated ultrasound treatment
View Patent ↗Apparatus is provided that includes an ultrasound ablation system, which includes a reflection-facilitation element, configured to be placed at an extramyocardial site of a subject, and to provide an extramyocardial reflective region. The system further includes an ultrasound tool, which comprises at least one ultrasound transducer configured to be positioned within a heart chamber of the subject, and to ablate myocardial tissue by applying ultrasound energy to the myocardial tissue such that at least a portion of the transmitted energy is reflected by the reflective region onto the myocardial tissue. Other embodiments are also described.
1. A method comprising:
advancing, into a heart chamber of a subject, an ultrasound tool that includes at least one ultrasound transducer;
providing a reflective region at an extramyocardial site of the subject; and
activating the ultrasound transducer to ablate myocardial tissue by applying ultrasound energy to the myocardial tissue such that at least a portion of the transmitted energy is reflected by the reflective region onto the myocardial tissue of the subject,
wherein the extramyocardial site is within a pericardial region of the subject that consists of one or more regions selected from the group consisting of: a region between a pericardium of a heart of the subject and a myocardium of the heart, a region between a visceral pericardium of the heart and a parietal pericardium of the heart, and a region outside the pericardium and in contact therewith, and wherein providing the reflective region comprises providing the reflective region within the pericardial region.
2. The method according to claim 1 , wherein advancing the ultrasound tool comprises temporarily stabilizing the ultrasound tool in the chamber using an anchoring element.
3. The method according to claim 1 , wherein providing the reflective region comprises delivering a gas to the extramyocardial site.
4. The method according to claim 1 , wherein providing the reflective region comprises inflating an inflatable element at the extramyocardial site with a fluid selected from the group consisting of: a gas, and a mixture of a liquid and a gas.
5. The method according to claim 4 , wherein the selected fluid is a gas, and wherein providing the reflective region comprises inflating the inflatable element at the extramyocardial site with the gas.
6. The method according to claim 1 , wherein providing the reflective region comprises delivering an acoustic reflector to the extramyocardial site.
7. The method according to claim 1 , wherein providing the reflective region comprises inserting a mechanical surgical retractor into the extramyocardial site.
8. The method according to claim 1 , wherein activating further comprises monitoring an ultrasonic parameter of the myocardial tissue.
9. The method according to claim 8 , wherein activating further comprises performing an analysis of the parameter, and, responsively to the analysis, ceasing ablating the myocardial tissue.
10. The method according to claim 8 , wherein the parameter is a time of flight of the ultrasound energy applied by the ultrasound transducer and reflected by the reflective region.
11. The method according to claim 10 , wherein monitoring comprises using signal processing to eliminate sinusoidal behavior exhibited by the time of flight due to atrial contractions.