Systems, devices, and methods for mapping organ profiles
Devices, systems, and methods for the localization of body lumen junctions and other intraluminal structure are disclosed. Various embodiments permit clinicians to identify and locate lesions and/or anatomical structures within a lumen and accurately place leads and/or devices within a lumen, through determining the intralumen conductance and/or cross-sectional area at a plurality of locations within the body lumen.
1. A medical method, comprising:
obtaining a catheter including an electrode positioned along an insertable portion of the catheter;
coupling the electrode to a processor;
introducing the insertable portion of the catheter into a body lumen;
detecting conductance data at a plurality of locations along the body lumen via the electrode when the electrode is immersed in a fluid within the body lumen;
transmitting the conductance data detected by the electrode to the processor;
determining, via the processor, a target location in the body lumen based upon the conductance data obtained at the plurality of locations;
identifying a first spike and a second spike in the conductance data;
responsive to determining that the first spike is greater than a predefined threshold limit, eliminating the first spike from the conductance data to generate a first modified conductance data;
responsive to determining that the second spike is due to a bifurcation in the body lumen, applying a smoothing algorithm to the first modified conductance data to eliminate the second spike to generate a second modified conductance data; and
generating a lumen profile based on the second modified conductance data.
2. The method according to claim 1 , wherein the conductance data at each of the plurality of locations includes a value, the method further comprising displaying relative values of the conductance data compared between the plurality of locations within the body lumen.
3. The method according to claim 2 , wherein the value is a cross-sectional area value, and wherein the displayed conductance data represents a profile of relative cross-sectional area values compared between the plurality of locations within the body lumen.
4. The method according to claim 3 , further comprising monitoring the profile of relative cross-sectional area values to determine an anatomical structure of the body lumen.
5. The method according to claim 1 , wherein the body lumen comprises at least a portion of an atrium, a coronary sinus, an aorta, a pulmonary vein-atrial junction, a blood vessel, a biliary tract, or an esophagus.
6. The method according to claim 1 , wherein the plurality of locations are chosen to create a conductance profile to locate the target location.
7. The method according to claim 6 , wherein the target location is determined based on a relative increase in the conductance profile compared between the plurality of locations within the body lumen.
8. The method according to claim 1 , wherein the smoothing algorithm includes one of linear interpolation and cubic spline interpolation.