Abstract:
A method for extracting a three-dimensional (3D) volume of interest from a three-dimensional (3D) image dataset includes accessing a 3D image dataset that includes a plurality of image slices, enclosing a 3D volume of interest in the 3D image dataset using a 3D mesh, automatically extracting the 3D volume of interest based on the 3D mesh, and generating a 3D image of the extracted 3D volume of interest. A computer and a non-transitory computer readable medium are also described herein.
Abstract:
Systems, methods and mediums with instructions for viewing medical data are provided. A system for viewing medical data can include a computer processor, a database and a user interface. The database can include numerous entries from numerous clinical modalities. Each entry can include image data and/or non-image data. Each entry can include annotated medical information from a previous study. The annotated medical information can include comments and markings. The database can be searchable to identify an entry based on input medical information relating to a current study. The user interface can be configured to simultaneously display annotated medical information from an identified entry and medical information from the current study. The system can further include a second user interface configured to display medical information, allow a user to annotate the medical information, and allow the user to save the annotated medical information as an entry in the database.
Abstract:
Certain embodiments of the present invention provide a system and method for synchronized viewing of a plurality of images of an object. Corresponding landmarks of an object are synchronized between a first image set and a second image set. In an embodiment, the landmarks are folds of a human colon and the first image set and second images sets are computerized tomography scans, at least one image set being a prone scan of a portion of anatomy and at least one image set being a supine scan of a portion of the anatomy. An indicator for at least a first location in a first image set is displayed. The location of a second location in a second image set of an object is determined, wherein the second location corresponds to the first location of the object. The second location in the second image set is displayed.
Abstract:
A technique is disclosed for automatically prioritizing requests for service of systems. A service request is generated upon detection of an indicator of a potentially serviceable condition in the system. Based upon the service request, a knowledge base is consulted that may contain prioritization scores for particular indicators, conditions, systems, customers and so forth. Service recommendations are then prioritized based upon the information. Similar prioritization among service requests may also be made based upon the information. The prioritizations may be adjusted or new prioritizations may be made based upon other factors, such as downtime experienced or anticipated, customer need, contract provisions, and so forth.
Abstract:
A technique is described for performing domain-specific analysis, structuring, mapping and classification of data entities, such as text document, images, audio data, waveform data, and so forth. A domain definition is established that includes a plurality of classification axes and labels for each axis. Data entities are accessed that potentially have attributes of interest classifiable in accordance with the axes and labels. Pertinent entities are then identified based upon their attributes, and the entities are classified. The classification and the entities themselves, or portions thereof, may be stored in a knowledge base for further classification, search and reference. Complex combinations of classifications, including combinations by reference to data of different type are possible by virtue of the domain definition and rules or algorithms called on by the definition for one-to-many mapping of the entities to the axes and labels.
Abstract:
A technique for identifying, analyzing, structuring, mapping and classifying data entities is disclosed. A conceptual framework is established by a domain definition having an association list of attributes of interest. Data entities are accessed, analyzed, structured if appropriate, mapped and classified in accordance with the association list and attributes found in the entities, and in accordance with rules and algorithms for analyzing, recognizing and classifying the attributes. Various types of analysis may be performed following the classification. Searches and selection of the data entities may also be performed. Complex data entities may be processed, including text documents, image data, audio data, waveform data, and combinations of these.
Abstract:
A technique is disclosed for identifying medical data entities and for analyzing them for classification in accordance with a defined domain definition. The domain definition may be user-defined and may include a plurality of logical associations by which the data entities are classified. A one-to-many classification of the entities facilitates complex analysis of the data. The data entities may be analyzed to recognize relationships between them for rendering patient care, identifying health conditions in populations, and so forth.
Abstract:
Briefly in accordance with one embodiment, the present technique provides a multi-energy tomosynthesis imaging system. The system includes an X-ray source configured to emit X-rays from multiple locations within a limited angular range relative to an imaging volume. The imaging system also includes a digital detector with an array of detector elements to generate images in response to the emitted X-rays. The imaging system further includes a detector acquisition circuitry to acquire the images from the digital detector. The imaging system may also include a processing circuitry configured to decompose plurality of images based on energy characteristics and to reconstruct the plurality of images to generate a three-dimensional multi-energy tomosynthesis image.
Abstract:
A method for generating an image includes accessing data of a scan of an object, using at least one characteristic of the accessed data to delineate at least one item of interest in the data and generating a 3D visualization image wherein transparency levels for at least some pixels not representing the item of interest are set according to a first set of rules, and transparency levels for at least some pixels representing an interior portion of the item of interest are set according to a second set of rules different than the first set of rules, and at least some pixels representative of a transition area are set according to a third set of rules different than the first and second sets of rules.
Abstract:
A method for detecting an anomaly includes performing a computed tomography (CT) scout scan to obtain data, and supplying the obtained data to a radiographic computer aided detection (CAD) algorithm.