IP Library Granted Patent US 11,849,995
Granted Patent B2
US 11,849,995 · App. 17/179,254 · Granted Dec 26, 2023

Detection of balloon catheter tissue contact using optical measurement

Inventor: Assaf Govari (Haifa, IL)
Assignee: Biosense Webster (Israel) Ltd.
A61B18/1492A61B2018/00577A61B2018/00982
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Quick Facts
Patent No.
US 11,849,995
App. No.
17/179,254
Granted
Dec 26, 2023
Kind
B2
Abstract

A medical system includes a catheter, a light source, a detector, a circulator, and a processor. The catheter includes a distal-end assembly for performing a medical operation on tissue in a cavity of an organ of a patient, the distal-end assembly including an optical fiber configured to guide transmitted light to interact with the tissue of the cavity, and to guide returned light that interacted with the tissue. The light source is configured to produce the transmitted light. The detector is configured to measure the returned light. The circulator is configured to couple the transmitted light from the light source to the optical fiber, and to couple the returned light from the optical fiber to the detector. The processor is configured to identify a contact of the distal-end assembly with the tissue based on the returned light measured by the detector, and to indicate the identified contact to a user.

Claims (26)

1. A medical system, comprising:

a catheter, comprising a distal-end assembly for performing a medical operation on tissue in a cavity of an organ of a patient, the distal-end assembly comprising an optical fiber configured to guide transmitted light to interact with the tissue of the cavity, and to guide returned light that interacted with the tissue;

a light source configured to produce the transmitted light;

a detector configured to measure the returned light;

a circulator configured to couple the transmitted light from the light source to the optical fiber, and to couple the returned light from the optical fiber to the detector; and

a processor, configured to establish a reference value for an intensity of the returned light while the distal-end assembly is not in contact with the tissue and to identify a contact of the distal-end assembly with the tissue based on a change in the intensity of the returned light relative to the reference value.

2. The medical system according to claim 1 , wherein the processor is configured to identify the contact based on a change in measured intensity of the returned light.

3. The medical system according to claim 1 , wherein the light source, the detector and the circulator are fitted at the distal-end assembly.

4. The medical system according to claim 1 , wherein the light source is a Light Emitting Diode (LED).

5. The medical system according to claim 1 , wherein the processor is configured to measure an intensity.

6. The medical system according to claim 1 , wherein a distal end of the fiber comprises one of an optical diffusive element and an optical diffractive element, configured to couple the transmitted light from the fiber and couple the returned light that interacted with the tissue into the fiber.

7. The medical system according to claim 6 , wherein the distal end of the fiber comprises an opaque ending of the fiber.

8. The medical system according to claim 6 , wherein the optical diffractive element comprises an optical grating coupler.

9. The medical system according to claim 8 , wherein a distal end of the optical fiber, comprising the optical grating coupler, is disposed inside an expandable transparent membrane.

10. The medical system according to claim 1 , wherein the distal-end assembly comprises an expandable transparent membrane.

11. The medical system according to claim 10 , wherein the transparent membrane comprises multiple ablation electrodes disposed thereon, and wherein the processor is configured to output a recommendation to perform the medical operation with the electrodes based on identifying the contact with the tissue.

12. The medical system according to claim 10 , wherein the light source, the detector, and the circulator are each disposed inside the expandable transparent membrane.

13. A method, comprising:

inserting a distal-end assembly of a catheter into a cavity of an organ of a patient, for performing a medical operation on tissue in the cavity;

guiding transmitted light in an optical fiber inside the distal-end assembly, to interact with the tissue of the cavity;

guiding via the same optical fiber returned light that interacted with the tissue;

establishing a reference value for an intensity of the returned light while the distal-end assembly is not in contact with the tissue; and

identifying a contact of the distal-end assembly with the tissue based on a change in the intensity of the returned light measured by a detector relative to the reference value, and

indicating the identified contact to a user.

14. The method according to claim 13 , wherein identifying the contact comprises identifying a change in measured intensity of the returned light.

15. The method according to claim 13 , further comprising coupling the transmitted light from a distal end of the fiber, and coupling the returned light that interacted with the tissue into the distal end of the fiber, using one of an optical diffusive element and an optical diffractive element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2022
From: GOVARI, ASSAF
To: BIOSENSE WEBSTER (ISRAEL) LTD.
Reel/Frame 060625/0333 →
Continuity (1)
Related Publication 20220257314A1 · Aug 18, 2022