EP2863802A2

Flow-related image processing in luminal organs

Abstract

This record has no abstract on file.

Term

6.8 yearsto projected expiry

Projected expiry 26 June 2033, counted from filing; an application has no term until it is granted.

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167 claims: 36 independent, 131 dependent

  1. 1
    Claims of equivalent WO 2014002095 A2 CLAIMS 1. Apparatus for use with an imaging device configured to acquire a set of angiographic images of a lumen of a subject's body, and a display, the apparatus comprising:at least one processor, comprising: blood-velocity-determination functionality configured, via image processing, to determine blood velocity within the lumen, by: defining at least first and second regions of interest along the lumen in one of the angiographic images;identifying the regions of interest in at least some additional angiographic images belonging to the set of angiographic images;determining a distance between the regions of interest;determining that a presence of a contrast agent appears at the first region of interest in a first one of the angiographic images and that the presence of contrast agent appears at the second region of interest in a second one of the angiographic images;and determining the time that it took for the contrast agent to travel from the first region of interest to the second region of interest, based upon an interval between an acquisition of the first angiographic image and an acquisition of the second angiographic image;geometry-indication-receiving functionality configured to receive an indication of geometry of the lumen at a given location within the lumen;current-flow-related-parameter-determination functionality configured to determine a value of a current flow-related parameter at the location based upon the determined blood velocity and the geometry of the lumen in the vicinity of the location;flow-related-parameter-receiving functionality configured to receive an indication of a value of a second flow-related parameter of the subject;index-determination functionality configured to determine a value of a luminal-flow-related index of the subject at the location, by determining a relationship between the value of the current flow-related parameter and the value of the second flow-related parameter;and output-generation functionality configured to generate an output on the display in response to the determined value of the luminal-flow-related index.
  2. 14
    The apparatus according to any one of claims 1-13, wherein:the location includes a location in the vicinity of a stenosis;the flow-related-parameter-receiving functionality is configured to receive the indication of the value of the second flow-related parameter of the subject by receiving an indication of a value of blood pressure of the subject at a location that is upstream of the stenosis;the current-flow-related-parameter-determination functionality is configured to determine the value of the current flow-related parameter in the vicinity of the stenosis by determining a value of current blood pressure in the vicinity of the stenosis based upon the determined blood velocity and the geometry of the lumen in the vicinity of the stenosis;and the index-determination functionality is configured to determine the relationship between the value of the current flow-related parameter and the value of the second flow- related parameter by comparing the current blood pressure in the vicinity of the stenosis to the subject's blood pressure at the location that is upstream of the stenosis.
  3. 16
    The apparatus according to any one of claims 1-13, wherein the flow-related- parameter-receiving functionality is configured to receive the indication of the value of the second flow-related parameter of the subject by receiving the indication of the value of the second flow-related parameter of the subject, based upon patient history of the subject.
  4. 19
    The apparatus according to any one of claims 1-13, wherein the geometry-indication- receiving functionality is configured to determine geometry of the lumen at the location, based upon the received indication of the geometry of the lumen.
  5. 23
    The apparatus according to any one of claims 1-13, wherein the flow-related- parameter-receiving functionality is configured to receive the indication of a value of a second flow-related parameter of the subject by receiving an angiographic image of a second location within the lumen, and wherein the flow-related-parameter-receiving functionality is configured to determine geometry of the lumen at the second location within the lumen, by performing image processing on the angiographic image of the second location within the lumen.
  6. 28
    A method for use with a set of angiographic images of a lumen of a subject's body, the method comprising:via image processing, determining blood velocity within the lumen, by: defining at least first and second regions of interest along the lumen in one of the angiographic images;identifying the regions of interest in at least some additional angiographic images belonging to the set of angiographic images;determining a distance between the regions of interest;determining that a presence of a contrast agent appears at the first region of interest in a first one of the angiographic images and that the presence of contrast agent appears at the second region of interest in a second one of the angiographic images;and determining the time that it took for the contrast agent to travel from the first region of interest to the second region of interest, based upon an interval between an acquisition of the first angiographic image and an acquisition of the second angiographic image;receiving an indication of geometry of the lumen at a given location within the lumen;determining a value of a current flow-related parameter at the location based upon the determined blood velocity and the geometry of the lumen in the vicinity of the location;receiving an indication of a value of a second flow-related parameter of the subject;determining a value of a luminal-flow-related index of the subject at the location, by determining a relationship between the value of the current flow-related parameter and the value of the second flow-related parameter;and generating an output in response to the determined value of the luminal-flow-related index.
  7. 42
    The method according to any one of claims 28-41, wherein:the location includes a location in the vicinity of a stenosis;receiving the indication of the value of the second flow-related parameter of the subject comprises receiving an indication of a value of blood pressure of the subject at a location that is upstream of the stenosis;determining the value of the current flow-related parameter in the vicinity of the stenosis comprises determining a value of current blood pressure in the vicinity of the stenosis based upon the determined blood velocity and the geometry of the lumen in the vicinity of the stenosis;and determining the relationship between the value of the current flow-related parameter and the value of the second flow-related parameter comprises comparing the current blood pressure in the vicinity of the stenosis to the subject's blood pressure at the location that is upstream of the stenosis.
  8. 44
    The method according to any one of claims 28-41, wherein receiving the indication of the value of the second flow-related parameter of the subject comprises receiving the indication of the value of the second flow-related parameter of the subject, based upon patient history of the subject.
  9. 47
    The method according to any one of claims 28-41, wherein receiving the indication of geometry of the lumen at the location comprises receiving at least one of the set of angiographic images, the method further comprising determining geometry of the lumen at the location, based upon the received angiographic image.
  10. 51
    The method according to any one of claims 28-41, wherein receiving the indication of the value of the second flow-related parameter of the subject comprises receiving at least one angiographic image of a second location within the lumen, the method further comprising determining geometry of the lumen at the second location within the lumen, by performing image processing on the angiographic image of the second location within the lumen.
  11. 56
    Apparatus for use with an imaging device configured to acquire a set of angiographic images of a lumen of a subject's body, and a display, the apparatus comprising:at least one processor comprising: image -processing functionality configured to analyze temporal changes in a density of a contrast agent at a given location within the lumen;lumen-characterization functionality configured, in response to the analysis, to determine a characteristic of the lumen at the location, the characteristic being selected from the group consisting of: a presence of a stenosis in a vicinity of the location, and a value of a luminal-flow-related index of the subject at the location;and output-generation functionality configured to generate an output on the display in response to the determined characteristic of the lumen.
  12. 61
    The apparatus according to any one of claims 56-60, wherein the contrast agent includes contrast agent that is administered to the subject's lumen according to a given protocol, and wherein the lumen-characterization functionality is configured to determine the characteristic of the lumen at the location by determining the characteristic of the lumen at the location based upon the temporal changes in the density of the contrast agent at the given location within the lumen and the given protocol.
  13. 64
    A method for use with a set of angiographic images of a lumen of a subject's body, the method comprising:via image processing, analyzing temporal changes in a density of a contrast agent at a given location within the lumen;in response to the analysis, determining a characteristic of the lumen at the location, the characteristic being selected from the group consisting of: a presence of a stenosis in a vicinity of the location, and a value of a luminal-flow-related index of the subject at the location;and in response thereto, generating an output.
  14. 69
    The method according to any one of claims 64-68, wherein the contrast agent includes contrast agent that is administered to the subject's lumen according to a given protocol, and wherein determining the characteristic of the lumen at the location comprises determining the characteristic of the lumen at the location based upon the temporal changes in the density of the contrast agent at the given location within the lumen and the given protocol.
  15. 72
    Apparatus for use with an imaging device configured to acquire a set of two- dimensional angiographic images of a lumen of a subject's body, and a display, the apparatus comprising:at least one processor, comprising: blood-velocity-determination functionality configured, without generating a virtual three-dimensional model of the lumen, and by performing image processing on the two-dimensional angiographic images, to determine blood velocity within the lumen;geometry-indication-receiving functionality configured, without generating a virtual three-dimensional model of the lumen, and by performing image processing on the two-dimensional angiographic images, to determine geometry of the lumen at a given location within the lumen;current-flow-related-parameter-determination functionality configured to determine a value of a current flow-related parameter at the location based upon the determined blood velocity and the geometry of the lumen in the vicinity of the location;flow-related-parameter-receiving functionality configured to receive an indication of a value of a second flow-related parameter of the subject;index-determination functionality configured to determine a value of a luminal-flow-related index of the subject at the location, by determining a relationship between the value of the current flow-related parameter and the value of the second flow-related parameter;and output-generation functionality configured to generate an output on the display in response to the determined value of the luminal-flow-related index.
  16. 84
    The apparatus according to any one of claims 72-83, wherein:the location includes a location in the vicinity of a stenosis;the flow-related-parameter-receiving functionality is configured to receive the indication of the value of the second flow-related parameter of the subject by receiving an indication of a value of blood pressure of the subject at a location that is upstream of the stenosis;the current-flow-related-parameter-determination functionality is configured to determine the value of the current flow-related parameter in the vicinity of the stenosis by determining a value of current blood pressure in the vicinity of the stenosis based upon the determined blood velocity and the geometry of the lumen in the vicinity of the stenosis;and the index-determination functionality is configured to determine the relationship between the value of the current flow-related parameter and the value of the second flow- related parameter by comparing the current blood pressure in the vicinity of the stenosis to the subject's blood pressure at the location that is upstream of the stenosis.
  17. 86
    The apparatus according to claim any one of claims 72-83, wherein the flow-related- parameter-receiving functionality is configured to receive the indication of the value of the second flow-related parameter of the subject by receiving the indication of the value of the second flow-related parameter of the subject, based upon patient history of the subject.
  18. 89
    The apparatus according to any one of claims 72-83, wherein the flow-related- parameter-receiving functionality is configured to receive the indication of a value of a second flow-related parameter of the subject by receiving an angiographic image of a second location within the lumen, and wherein the flow-related-parameter-receiving functionality is configured to determine geometry of the lumen at the second location within the lumen, by performing image processing on the angiographic image of the second location within the lumen.
  19. 94
    A method for use with a set of two-dimensional angiographic images of a lumen of a subject's body, the method comprising:without generating a virtual three-dimensional model of the lumen, and by performing image processing on the two-dimensional angiographic images: determining blood velocity within the lumen;and determining geometry of the lumen at a given location within the lumen;determining a value of a current flow-related parameter at the location based upon the determined blood velocity and the geometry of the lumen at the location;receiving an indication of a value of a second flow-related parameter of the subject;determining a value of a luminal-flow-related index of the subject at the location, by determining a relationship between the value of the current flow-related parameter and the value of the second flow-related parameter;and generating an output in response to the determined value of the luminal-flow-related index.
  20. 106
    The method according to any one of claims 94-105, wherein:the location includes a location in a vicinity of a stenosis;receiving the indication of the value of the second flow-related parameter of the subject comprises receiving an indication of a value of blood pressure of the subject at a location that is upstream of the stenosis;determining the value of the current flow-related parameter in the vicinity of the stenosis comprises determining a value of current blood pressure in the vicinity of the stenosis based upon the determined blood velocity and the determined geometry of the lumen in the vicinity of the stenosis;and determining the relationship between the value of the current flow-related parameter and the value of the second flow-related parameter comprises comparing the value of the current blood pressure in the vicinity of the stenosis to the value of the subject's blood pressure at the location that is upstream of the stenosis.
  21. 108
    The method according to any one of claims 94-105, wherein receiving the indication of the value of the second flow-related parameter of the subject comprises receiving the indication of the value of the second flow-related parameter of the subject, based upon patient history of the subject.
  22. 111
    The method according to any one of claims 94-105, wherein receiving the indication of the value of the second flow-related parameter of the subject comprises receiving at least one angiographic image of a second location within the lumen, the method further comprising determining geometry of the lumen at the second location within the lumen, by performing image processing on the angiographic image of the second location within the lumen.
  23. 116
    Apparatus for use with a lumen of a subject, comprising:a pressure sensor configured to measure pressure of the lumen;a blood velocity sensor configured to measure blood velocity within the lumen;and at least one processor comprising: lumen-dimension-derivation functionality configured to derive a dimension of the lumen from the measured pressure and blood velocity;and output-generation functionality configured to generate an out output in response to the derived dimension.
  24. 121
    The apparatus according to any one of claims 116-120, wherein the lumen- dimension-derivation functionality is configured to derive the dimension of the lumen by deriving a diameter of the lumen.
  25. 123
    A method for use with a lumen of a subject, comprising:measuring pressure of the lumen;measuring blood velocity within the lumen;deriving from the measured pressure and blood velocity, a dimension of the lumen;and generating an output in response thereto.
  26. 128
    The method according to any one of claims 123-127, wherein deriving the dimension of the lumen comprises deriving a diameter of the lumen.
  27. 130
    Apparatus for use with (a) an endoluminal data-acquisition device configured to be moved through a lumen of a subject's body, and to acquire at least a first set of endoluminal data points of the lumen at a plurality of locations within the lumen, while being moved through the lumen, (b) and extraluminal imaging device configured to acquire an extraluminal image of the lumen, and (c) a display, the apparatus comprising:at least one processor, comprising: endoluminal-geometry-derivation-functionality configured, for at least some of the endoluminal data points, to derive from the endoluminal data point a value of a geometrical parameter of the lumen at a location within the lumen at which the endoluminal data point was acquired;extraluminal-geometry-derivation-functionality configured to derive values of the geometrical parameter of the lumen at a plurality of locations along the lumen, by performing image processing on the at least one extraluminal image of the lumen;co-registration functionality configured to co-register at least some of the endoluminal data points to locations along the lumen within the extraluminal image by correlating the values of the geometrical parameters corresponding to the endoluminal data points with the values of the geometrical parameter derived by performing image processing on the at least one extraluminal image;and output- generation functionality configured to generate an output on the display based upon the co-registration.
  28. 137
    The apparatus according to any one of claims 130-132, wherein:the endoluminal data-acquisition device includes an endoluminal data-acquisition device that is further configured to acquire a second set of endoluminal data points of the lumen at a plurality of locations within the lumen, while being moved through the lumen;the co-registration functionality is configured, based upon the co-registering of the first set of endoluminal data points to locations along the lumen within the extraluminal image, to co-register the second set of endoluminal data points to locations along the lumen within the extraluminal image;and the output- generation functionality is configured to generate the output by generating an output indicating that a given endoluminal data point belonging to the second set of endoluminal data points corresponds to a given location along the lumen.
  29. 140
    The apparatus according to any one of claims 130-136, wherein the co-registration functionality is configured to co-register at least some of the endoluminal data points to locations along the lumen within the extraluminal image by correlating a sequence of values of the geometrical parameters corresponding to the endoluminal data points with a sequence of values of the geometrical parameter derived by performing image processing on the at least one extraluminal image.
  30. 143
    A method for use with an endoluminal data-acquisition device configured to be moved through a lumen of a subject's body, the method comprising:while the endoluminal data-acquisition device is being moved through the lumen, acquiring at least a first set of endoluminal data points of the lumen at a plurality of locations within the lumen, using the endoluminal data-acquisition device;for at least some of the endoluminal data points, deriving from the endoluminal data point a value of a geometrical parameter of the lumen at a location within the lumen at which the endoluminal data point was acquired;acquiring at least one extraluminal image of the lumen;deriving values of the geometrical parameter of the lumen at a plurality of locations along the lumen, by performing image processing on the at least one extraluminal image of the lumen;co-registering at least some of the endoluminal data points to locations along the lumen within the extraluminal image by correlating the values of the geometrical parameters corresponding to the endoluminal data points with the values of the geometrical parameter derived by performing image processing on the at least one extraluminal image;and in response thereto, generating an output.
  31. 150
    The method according to any one of claims 143-145, further comprising:while the endoluminal data- acquisition device is being moved through the lumen, acquiring a second set of endoluminal data points of the lumen at a plurality of locations within the lumen, using the endoluminal data-acquisition device, based upon the co-registering of the first set of endoluminal data points to locations along the lumen within the extraluminal image, co-registering the second set of endoluminal data points to locations along the lumen within the extraluminal image, wherein generating the output comprises generating an output indicating that a given endoluminal data point belonging to the second set of endoluminal data points corresponds to a given location along the lumen.
  32. 153
    The method according to any one of claims 143-149, wherein co-registering at least some of the endoluminal data points to locations along the lumen within the extraluminal image comprises correlating a sequence of values of the geometrical parameters corresponding to the endoluminal data points with a sequence of values of the geometrical parameter derived by performing image processing on the at least one extraluminal image.
  33. 156
    Apparatus for use with (a) an endoluminal data-acquisition device configured to be moved through a lumen of a subject's body, and to acquire at least a first set of endoluminal data points of the lumen at a plurality of locations within the lumen, while being moved through the lumen, (b) an extraluminal imaging device configured to acquire at least one two-dimensional angiographic image of the lumen, and (c) a display, the apparatus comprising:at least one processor comprising: index-determination functionality configured to non-invasively determine a value of a luminal-flow-related index of the subject at a plurality of locations along the lumen, at least partially by performing image processing on the two-dimensional angiographic image;co-registration functionality configured: to determine that respective endoluminal data points correspond to respective locations along the lumen, and in response thereto, to determine that respective endoluminal data points correspond to respective values of the luminal flow-related index;and output- generation functionality configured to generate an output on the display based upon determining that respective endoluminal data points correspond to respective values of the luminal flow-related index.
  34. 159
    The apparatus according to any one of claims 156-158, wherein the output- generation functionality is configured to generate the output by generating an output indicating that a given endoluminal data point corresponds to a given value of the luminal flow-related index.
  35. 162
    A method for use with an endoluminal data-acquisition device configured to be moved through a lumen of a subject's body, and at least one two-dimensional angiographic image of the lumen, the method comprising:non-invasively determining a value of a luminal-flow-related index of the subject at a plurality of locations along the lumen, at least partially by performing image processing on the at least one two-dimensional angiographic image;while the endoluminal data-acquisition device is being moved through the lumen, acquiring a set of endoluminal data points of the lumen at a plurality of locations within the lumen, using the endoluminal data-acquisition device;determining that respective endoluminal data points correspond to respective locations along the lumen;in response thereto, determining that respective endoluminal data points correspond to respective values of the luminal flow-related index;and generating an output in response thereto.
  36. 165
    The method according to any one of claims 162-164, wherein generating the output comprises generating an output indicating that a given endoluminal data point corresponds to a given value of the luminal flow-related index.
Independent claims36