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Abramoff
Cary Scott Abramoff, Brooklyn, NY US
| Patent application number | Description | Published |
|---|---|---|
| 20120110515 | USER INTERFACE FOR A DIGITAL CONTENT MANAGEMENT SYSTEM - A graphical user interface and digital content processor for the management of digital data. The graphical user interface is characterized by two treeview controls capable of transforming the screen display of items under management by acting as a filtering mechanism for the category value pairs inherent in every item under management. The treeview controls folders, or nodes, transform the screen display of data under management to filter by the category values represented by the treeview controls' folders when selected. | 05-03-2012 |
Michael Abramoff, Iowa City, IA US
| Patent application number | Description | Published |
|---|---|---|
| 20100220906 | METHODS AND SYSTEMS FOR DETERMINING OPTIMAL FEATURES FOR CLASSIFYING PATTERNS OR OBJECTS IN IMAGES - Provided are methods for determining optimal features for classifying patterns or objects. Also provided are methods for image analysis. Further provided are methods for image searching. | 09-02-2010 |
Michael Abramoff, University Heights, IA US
| Patent application number | Description | Published |
|---|---|---|
| 20100061601 | Optimal registration of multiple deformed images using a physical model of the imaging distortion - Methods and systems for image registration implementing a feature-based strategy that uses a retinal vessel network to identify features, uses an affine registration model estimated using feature correspondences, and corrects radial distortion to minimize the overall registration error. Also provided are methods and systems for retinal atlas generation. Further provided are methods and systems for testing registration methods. | 03-11-2010 |
Michael David Abramoff, Mamasua, CT US
| Patent application number | Description | Published |
|---|---|---|
| 20080317308 | System and methods for image segmentation in N-dimensional space - A system and methods for the efficient segmentation of globally optimal surfaces representing object boundaries in volumetric datasets is provided. An optical surface detection system and methods are provided that are capable of simultaneously detecting multiple interacting surfaces in which the optimality is controlled by the cost functions designed for individual surfaces and by several geometric constraints defining the surface smoothness and interrelations. The graph search applications use objective functions that incorporate non-uniform cost terms such as “on-surface” costs as well as “in-region” costs. | 12-25-2008 |
