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US20080018645A1 - Anatomical visualization and measurement system - Google Patents

Anatomical visualization and measurement system
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Publication number
US20080018645A1
US20080018645A1US11/728,205US72820507AUS2008018645A1US 20080018645 A1US20080018645 A1US 20080018645A1US 72820507 AUS72820507 AUS 72820507AUS 2008018645 A1US2008018645 A1US 2008018645A1
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computer model
software
software object
slice
augmented
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Abandoned
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US11/728,205
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Jeff Dwyer
David Chen
M. Chapman
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Priority claimed from US10/823,811external-prioritypatent/US7144367B2/en
Priority claimed from US10/829,929external-prioritypatent/US7149333B2/en
Application filed by IndividualfiledCriticalIndividual
Priority to US11/728,205priorityCriticalpatent/US20080018645A1/en
Priority to US11/732,291prioritypatent/US8285011B2/en
Publication of US20080018645A1publicationCriticalpatent/US20080018645A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

The present invention provides an anatomical visualization and measurement system comprising a first database that comprises a plurality of 2-D slice images generated by scanning a structure. The 2-D slice images are stored in a first data format. A second database is also provided that comprises a 3-D computer model of the scanned structure. The 3-D computer model comprises a first software object that is defined by a 3-D geometry database. Apparatus is provided for selecting a particular 2-D slice image from the first database. Apparatus is also provided for inserting a second software object into the 3-D computer model so as to augment the 3-D computer model. The second software object is also defined by a 3-D geometry database, and includes a planar surface. The second software object is inserted into the 3-D computer model at the position which corresponds to the position of the selected 2-D slice image relative to the scanned structure. Apparatus is also provided for texture mapping the specific 2-D slice image onto the planar surface of the second software object. Display apparatus is provided for displaying an image of the augmented 3-D computer model so as to simultaneously provide a view of the first software object and the specific 2-D slice image texture mapped onto the planar surface of the second software object. Apparatus and method are also provided for determining structural dimensions and volumes using appropriate scanned 2-D slice image information. The apparatus and method are particularly well suited for determining dimensions with respect to structures which follow a tortuous path and/or have a complex branching structure, e.g., vascular structures. Among other things, the present invention permits an appropriate set of scanned 2-D images to be assembled into a 3-D database, information regarding selected structural features to be segmented out of the 3-D database, and measurements to be made based on these structural features. In addition, the present invention permits a set of oblique images to be generated based on these structural features, which oblique images may themselves be used for measurement purposes.

Description

Claims (4)

1. A computer-based visualization system for visualizing anatomical structure and a graft implant which is to be deployed adjacent the anatomical structure, comprising:
a 3-D computer model of the anatomical structure which is to be visualized, said 3-D computer model comprising at least one first software object, wherein said at least one first software object corresponds to the anatomical structure which is to be visualized;
a database of second software objects, wherein at least one of said second software objects corresponds to a graft implant which is to be deployed adjacent the anatomical structure;
selection apparatus for permitting a user to select said at least one of said second software objects;
registration apparatus for positioning said selected at least one of said second software objects into said 3-D computer model so as to create an augmented 3-D computer model, with said selected at least one of said second software objects being positioned in said augmented 3-D computer model in proper registration with said at least one first software object contained in said augmented 3-D model; and
processing apparatus for generating an image of said augmented 3-D computer model so as to simultaneously provide a view of said at least one first software object and said selected at least one second software object.
2. A method for visualizing anatomical structure and a graft implant which is to be deployed adjacent the anatomical structure, comprising:
providing a 3-D computer model of the anatomical structure which is to be visualized, said 3-D computer model comprising at least one first software object, wherein said at least one first software object corresponds to the anatomical structure which is to be visualized;
providing a database of second software objects, wherein at least one of said second software objects corresponds to a graft implant which is to be deployed adjacent the anatomical structure;
selecting said at least one of said second software objects;
positioning said selected at least one of said second software objects into said 3-D computer model so as to create an augmented 3-D computer model, with said selected at least one of said second software objects being positioned in said augmented 3-D computer model in proper registration with said at least one first software object contained in said augmented 3-D model; and
generating an image of said augmented 3-D computer model so as to simultaneously provide a view of said at least one first software object and said selected at least one second software object.
3. A visualization system comprising:
a first database comprising a plurality of 2-D slice images generated by scanning an anatomical structure, said 2-D slice images being stored in a first data format;
a second database comprising a 3-D computer model of said scanned anatomical structure, said 3-D computer model comprising at least one first software object, said at least one first software object being defined by a 3-D geometry database;
insertion apparatus for selectively inserting a second software object into said 3-D computer model so as to augment said 3-D computer model, said second software object being defined by a 3-D geometry database and including a planar surface;
determining apparatus for determining the specific 2-D slice image associated with the position of said planar surface of said second software object when said second software object is inserted within said augmented 3-D computer model;
texture mapping apparatus for texture mapping said specific 2-D slice image onto said planar surface of said second software object when said second software object is inserted within said augmented 3-D computer model;
a third database of third software objects, wherein at least one of said third software objects corresponds to a graft implant which is to be deployed adjacent the scanned anatomical structure;
selection apparatus for permitting a user to select said at least one of said third software objects;
registration apparatus for selectively positioning said selected at least one of said third software objects into said augmented 3-D computer model, with said selected at least one of said third software objects being positioned in said augmented 3-D computer model in proper registration with said at least one first software object contained in said augmented 3-D model; and
display apparatus for displaying an image of said augmented 3-D computer model so as to simultaneously provide a view of said (i) first software object; (ii) said specific 2-D slice image texture mapped onto said planar surface of said second software object when said second software object is inserted within said augmented 3-D computer model; and (iii) said at least one of said third software objects when said at least on one of said third software objects is positioned within said augmented 3-D computer model.
4. A method for visualizing structure, comprising:
providing a first database comprising a plurality of 2-D slice images generated by scanning an anatomical structure, said 2-D slice images being stored in a first data format;
providing a second database comprising a 3-D computer model of said scanned anatomical structure, said 3-D computer model comprising at least one first software object, said at least one first software object being defined by a 3-D geometry database;
providing insertion apparatus for selectively inserting a second software object into said 3-D computer model so as to augment said 3-D computer model, said second software object being defined by a 3-D geometry database and including a planar surface;
providing determining apparatus for determining the specific 2-D slice image associated with the position of said planar surface of said second software object when said second software object is inserted within said augmented 3-D computer model;
providing texture mapping apparatus for texture mapping said specific 2-D slice image onto said planar surface of said second software object when said second software object is inserted within said augmented 3-D computer model;
providing a third database of third software objects, wherein at least one of said third software objects corresponds to a graft implant which is to be deployed adjacent the scanned anatomical structure;
selecting said at least one of said third software objects;
positioning said selected at least one of said third software objects into said augmented 3-D computer model, with said selected at least one of said third software objects being positioned in said augmented 3-D computer model in proper registration with said at least one first software object contained in said augmented 3-D model; and
displaying an image of said augmented 3-D computer model so as to simultaneously provide a view of (i) said first software object; (ii) said at least one of said third software objects; and (iii) said specific 2-D slice image texture mapped onto said planar surface of said second software object when said second software object is inserted within said augmented 3-D computer model.
US11/728,2052003-11-102007-03-23Anatomical visualization and measurement systemAbandonedUS20080018645A1 (en)

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US11/728,205US20080018645A1 (en)2003-11-102007-03-23Anatomical visualization and measurement system
US11/732,291US8285011B2 (en)2005-06-022007-04-03Anatomical visualization and measurement system

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US51900103P2003-11-102003-11-10
US10/823,811US7144367B2 (en)1995-07-242004-03-09Anatomical visualization system
US10/829,929US7149333B2 (en)1995-12-292004-04-22Anatomical visualization and measurement system
US10/985,199US7197170B2 (en)2003-11-102004-11-10Anatomical visualization and measurement system
US11/728,205US20080018645A1 (en)2003-11-102007-03-23Anatomical visualization and measurement system

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US10/985,199ContinuationUS7197170B2 (en)2003-11-102004-11-10Anatomical visualization and measurement system
US11/145,076Continuation-In-PartUS20060098010A1 (en)2004-03-092005-06-02Anatomical visualization and measurement system

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US11/634,357Continuation-In-PartUS20070149846A1 (en)1995-07-242006-12-05Anatomical visualization system
US11/732,291Continuation-In-PartUS8285011B2 (en)2005-06-022007-04-03Anatomical visualization and measurement system

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