IP Library Patent Application 18937003
Patent Application
App. No. 18/937,003

SYSTEMS AND METHODS FOR REAL-TIME TRACKING OF A TARGET TISSUE USING IMAGING BEFORE AND DURING THERAPY DELIVERY

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Quick Facts
Patent No.
US None
App. No.
18/937,003
Abstract

Described herein are systems and methods for tracking a target tissue during therapy delivery. A system for identifying an anatomical structure and tracking the motion of the anatomical structure using imaging before and during delivery of a therapy to a patient includes an imaging module and a therapy module. In some cases, the imaging module is configured to identify a region of the anatomical structure in an image, and the therapy module is configured to deliver the therapy to a target tissue. A method for imaging during delivery of a therapy includes acquiring an image, identifying a region of an anatomical structure, tracking the region of the anatomical structure, integrating the tracking, generating a unique template library, determining if a pre-existing template matches the results or if the results should be updated as a new template, and delivering the therapy to the target tissue.

Claims (41)

1 - 69 . (canceled)

70 . A method of treating target tissue associated with a renal artery of a patient, the renal artery moving during the treating due to breathing and blood flow of the patient, comprising:

identifying the renal artery and the target tissue;

applying therapeutic energy to the target tissue;

tracking a location of the renal artery and a location of the target tissue during said applying; and

adjusting said applying based on said tracking to apply therapeutic energy to a tracked location of the target tissue.

71 . The method of claim 70 , wherein said tracking further comprises tracking blood flow through the renal artery during said applying.

72 . The method of claim 70 , further comprising catheterizing the patient with a catheter, and wherein said applying therapeutic energy is performed with said catheter, wherein the target tissue is a renal nerve.

73 . The method of claim 70 , wherein the therapeutic energy is ultrasound energy.

74 . The method of claim 70 , wherein said identifying and said monitoring are performed by ultrasound imaging.

75 . The method of claim 70 , wherein said applying, said monitoring, and said adjusting are repeated to form a plurality of lesions in the target tissue.

76 . The method of claim 75 , wherein:

said applying forms a plurality of lesions associated with the renal artery, and

each lesion is spaced within 5 mm from each adjacent lesion.

77 . The method of claim 75 , wherein:

said applying forms a plurality of lesions associated with the renal artery, and

each lesion is spaced within 1 mm from each adjacent lesion.

78 . The method of claim 75 , wherein:

said applying forms a plurality of lesions associated with the renal artery, and

each lesion is substantially continuous with each adjacent lesion.

79 . The method of claim 70 , wherein said identifying further comprises imaging the target with a two-dimensional array configured to acquire 3D ultrasound images inside the body of the patient; and wherein said tracking further comprises utilizing said imaging to obtain a substantially continuous position of the target tissue during the period of time of said applying.

80 . A method of treating a renal artery of a patient, where the renal artery moves during treatment due to respiration and blood flow pulsatility of the patient, comprising

identifying the renal artery;

applying therapeutic energy to the renal artery;

monitoring the location of the renal artery during said applying to generate feedback; and

utilizing said feedback to adjust said applying.

81 . The method of claim 80 , wherein said utilizing comprising utilizing said feedback to adjust at least one of a location and an output of said applying therapeutic energy.

82 . The method of claim 80 , wherein the therapeutic energy is ultrasound energy.

83 . The method of claim 80 , wherein:

said applying forms a plurality of lesions associated with the renal artery, and

each lesion is spaced within 5 mm from each adjacent lesion.

84 . The method of claim 80 , wherein:

said applying forms a plurality of lesions associated with the renal artery, and

each lesion is spaced within 1 mm from each adjacent lesion.

85 . A method of treating an anatomical structure associated with a renal artery of a patient, the renal artery moving during the treating due to breathing and blood flow of the patient, comprising:

imaging the renal artery in three dimensions;

applying therapeutic energy to the anatomical structure associated with the renal artery;

continuing said imaging the anatomical structure during said applying; and

adjusting a location of said applying based on said continuing.

86 . The method of claim 85 , wherein said imaging is performed by a two-dimensional array that acquires three-dimensional images of the anatomical structure.

87 . The method of claim 85 , wherein said anatomical structure moves with respiration and blood flow pulsatility of the patient; and wherein said continuing further comprises tracking a location of the anatomical structure in three dimensions.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2024
From: ZHANG, JIMIN; JING, SHAYIN
To: KONA MEDICAL, INC.
Reel/Frame 069311/0207 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2024
From: KONA MEDICAL, INC.
To: OTSUKA MEDICAL DEVICES CO., LTD.
Reel/Frame 069311/0249 →