Methods and systems for intraoperatively confirming location of tissue structures

US2016235482A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016235482-A1
Application numberUS-201415023120-A
CountryUS
Kind codeA1
Filing dateSep 15, 2014
Priority dateMar 15, 2013
Publication dateAug 18, 2016
Grant date

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Abstract

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Systems, methods and devices are provided for intraoperatively confirming location of tissue structures during medical procedures. Preoperative image data of a patient's skeletal structure in a vicinity of an anatomical part undergoing a medical procedure is acquired. During the procedure, after exposing tissue intraoperative image data is acquired by scanning a selected region of tissue, in a vicinity of the skeletal structure using Polarization Sensitive-Optical Coherence Tomography (PS-OCT). Regions of tissue exhibiting structural organization in the vicinity of the skeletal structure are identified from the intraoperative (PS-OCT) image data. Geometrically correlating and registering the intraoperative (PS-OCT) image data with the preoperative image data of the skeletal structure in the vicinity of the anatomical part is then performed using a priori known anatomical information about the regions of tissue exhibiting structural information.

First claim

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1 . A computer implemented method of intraoperatively confirming location of organized tissue structures in relation to a patient's skeletal structure, comprising: acquiring preoperative image data of a patient's skeletal structure in a vicinity of an anatomical part; after exposing tissue during a medical procedure in the anatomical part, acquiring intraoperative image data by scanning a selected region of tissue, in a vicinity of the skeletal structure in the anatomical part undergoing the medical procedure using Polarization Sensitive-Optical Coherence Tomography (PS-OCT); identifying, from the intraoperative (PS-OCT) image data, regions of tissue exhibiting structural organization in the vicinity of the skeletal structure; and using a priori known anatomical information about the regions of tissue exhibiting structural information for geometrically correlating and registering the intraoperative (PS-OCT) image data with the preoperative image data of the skeletal structure in the vicinity of the anatomical part. 2 . The method according to claim 1 , wherein the pre-operative image data of the skeletal structure in a vicinity of an anatomical part is acquired using any one of computed tomography (CT), magnetic resonance imaging (MRI) and optical coherence tomography (OCT). 3 . The method according to claim 2 , wherein the magnetic resonance imaging is T1 magnetic resonance imaging (T1 MRI). 4 . The method according to claim 1 , wherein the tissue exhibiting structural organization includes, ligaments, tendons, muscle, cartilage, connective membranes, nerves, retina, blood vessel walls, some bone structures, trachea, esophagus, tongue, teeth and other connective tissues. 5 . The method according to claim 1 , wherein the a priori known anatomical information about the regions of tissue exhibiting structural information include attachment points of tissue exhibiting structural information to the skeletal structure relative to landmark positions on the skeletal structure. 6 . A method, comprising the steps of: a) intraoperatively confirming location of organized tissue structures in relation to a patient's skeletal structure during a medical procedure, by: acquiring preoperative image data of a patient's skeletal structure in a vicinity of an anatomical part undergoing a medical procedure; after exposing tissue during a medical procedure in the anatomical part, acquiring intraoperative image data by scanning a selected region of tissue, in a vicinity of the skeletal structure in the anatomical part undergoing the medical procedure using Polarization Sensitive-Optical Coherence Tomography (PS-OCT); identifying, from the intraoperative (PS-OCT) image data, regions of tissue exhibiting structural organization in the vicinity of the skeletal structure; and using a priori known anatomical information about the regions of tissue biting structural information for geometrically correlating and registering the intraoperative (PS-OCT) image data with the preoperative image data of the skeletal structure in the vicinity of the anatomical part; and b) using the registered intraoperative (PS-OCT) image data with the preoperative image data of the skeletal structure in the vicinity of the anatomical part to plan a surgical trajectory to avoid selected regions of the tissue exhibiting structural information. 7 . The method according to claim 6 , wherein the pre-operative image data of the skeletal structure in a vicinity of an anatomical part undergoing a medical procedure is acquired using any one of computed tomography (ct), magnetic resonance imaging (MRI) and optical coherence tomography (OCT). 8 . The method according to claim 7 , wherein the magnetic resonance imaging is T1 magnetic resonance imaging (T1 MRI). 9 . The method according to claim 6 , wherein the tissue exhibiting structural organization includes, ligaments, tendons, muscle, cartilage, connective membranes, nerves, retina, blood vessel walls, some bone structures, trachea, esophagus, tongue, teeth and other connective tissues. 10 . The method according to claim 6 , wherein the a priori known anatomical information about the regions of tissue exhibiting structural information include attachment points of tissue exhibiting structural information to the skeletal structure relative to landmark positions on the skeletal structure. 11 . A computer implemented system for intraoperatively confirming location of organized tissue structures in relation to a patient's skeletal structure, comprising: a Polarization Sensitive-Optical Coherence Tomography (PS-OCT) apparatus configured to scan a selected region of tissue to acquire intraoperative image data of the selected region of tissue; a computer processor having a memory storage, said Polarization Sensitive-Optical Coherence Tomography being connected to the computer processor, said memory storage having stored therein preoperative image data of a patient's skeletal structure in a vicinity of an anatomical part, said memory storage having stored therein a priori known anatomical information about the regions of tissue exhibiting structural information; said computer processor being programmed with instructions to a) identify, from the intraoperative (PS-OCT) image data, regions of tissue exhibiting structural organization in the vicinity of the skeletal structure; and b) use the stored priori known anatomical information about the regions of tissue exhibiting structural information to geometrically correlate and register the intraoperative (PS-OCT) image data with the preoperative image data of the skeletal structure in the vicinity of the anatomical part. 12 . A computer implemented method of intraoperatively confirming location of vasculature structures located below a surface tissue during a medical procedure, comprising: acquiring global preoperative image data of tissue in anatomical part undergoing a medical procedure using contrast based magnetic resonance imaging and identifying, from the image data, a global vascular structure within the tissue; after exposing tissue during a medical procedure in the anatomical part, acquiring intraoperative image data by scanning, using hyperspectral imaging, a selected local region of the tissue in the anatomical part undergoing the medical procedure; identifying, from the intraoperative hyperspectral image data, a local vascular structure in the selected local region of the tissue; and searching the global vascular image data for identifying and locating a portion of the global vascular structure geometrically matching the local vascular structure, and upon identifying and locating matching vascular structure, geometrically correlating and registering the local vascular structure in the selected local region of the tissue with the a global vascular structure within the tissue for confirming location of the local vasculature structures. 13 . The method according to claim 12 wherein the contrast agent is a Gadolinium contrast agent. 14 . A method, comprising the steps of: acquiring global preoperative image data of tissue in an anatomical part undergoing a medical procedure using contrast based magnetic resonance imaging and identifying, from the image data, a global vascular structure within the tissue; after exposing tissue during a medical procedure in the anatomical part, acquiring intraoperative image data by scanning, using hyperspectral imaging, a selected local region of the tissue in the anatomical part undergoing the medical procedure; identifying, from the intraoperative hyperspectral image data, a local vascular structure in the selected local region of the tiss

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Classifications

  • for processing medical images, e.g. editing · CPC title

  • Specific aspects of physiological measurement analysis (specific diagnostics methods using bioelectric or biomagnetic signals A61B5/316) · CPC title

  • A61B1/043Primary

    for fluorescence imaging · CPC title

  • Absorption spectrometry; Double beam spectrometry; Flicker spectrometry; Reflection spectrometry (beam switching arrangements G01J3/08) · CPC title

  • Magnifying glass · CPC title

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What does patent US2016235482A1 cover?
Systems, methods and devices are provided for intraoperatively confirming location of tissue structures during medical procedures. Preoperative image data of a patient's skeletal structure in a vicinity of an anatomical part undergoing a medical procedure is acquired. During the procedure, after exposing tissue intraoperative image data is acquired by scanning a selected region of tissue, in a …
Who is the assignee on this patent?
WOOD Micheal, Piron Cameron, Yuwaraj Murugathas, and 3 more
What technology area does this patent fall under?
Primary CPC classification A61B1/043. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Aug 18 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).