Abstract:
A method performed by an electronic device is described. The method includes obtaining a first image from a first camera, the first camera having a first focal length and a first field of view. The method also includes obtaining a second image from a second camera, the second camera having a second focal length and a second field of view disposed within the first field of view. The method further includes aligning at least a portion of the first image and at least a portion of the second image to produce aligned images. The method additionally includes fusing the aligned images based on a diffusion kernel to produce a fused image. The diffusion kernel indicates a threshold level over a gray level range. The method also includes outputting the fused image. The method may be performed for each of a plurality of frames of a video feed.
Abstract:
The present invention provides computerized systems and methods for providing electronically presented interactive area representation, such as a map, and information associated therewith. A user can select text, imagery, or other information presented on the map and associated with one or more items or locations, causing presentation of information relating to the associated one or more items or locations, such as appropriate contact information or a hyperlink to an appropriate Web site. Additionally or alternatively, a user can input or select, based on a query or otherwise, information relating to one or more items or locations associated with text, imagery, or other information presented on the map, causing presentation of an indication of one or more locations of the associated text, imagery, or other information on the map. A magnifier feature allowing internal navigation within the map can be provided. Additionally, animated images can appear to move over the map.
Abstract:
A computer implemented method for generating a representative thumbnail for an image. The method comprises determining a representative area of an image, the determining comprising determining an absence of faces in the image; dividing the image into one or more zones; and selecting a zone with maximum edge strength as the representative area; and generating a thumbnail by cropping the image to the representative area.
Abstract:
A computer implemented method and apparatus for controlling display of displayed digital content using eye movement. The method comprises mapping eye movements, tracked by a camera of a display device, to an area of interest of displayed content. A window containing a magnified version of display content from within the area of interest is generated. The magnified display content from the area of interest is displayed together with display content from outside the area of interest. A hovering pointer gesture is optionally displayed within the area of interest or a selectable function is performed if display content within the area of interest corresponds to a user interface function or a navigation option. According to some embodiments, the window containing magnified display content is only generated and displayed when the display content within the area of interest does not correspond to a user selectable function.
Abstract:
An imaging apparatus includes an imaging portion that images an omnidirectional subject on the basis of an imaging position when imaging is performed and generates a circular image including the omnidirectional subject, an image processing portion that specifies a substantially fan-shaped object region in a circular image which is generated on the basis of a direction specified based on an attitude of an imaging apparatus in the imaging position among all directions and converts an image of the object region into a substantially rectangular image, and a display control portion that simultaneously displays a conversion image which is the converted image and the generated circular image on a display portion.
Abstract:
Methods, apparatuses, and computer program products are herein provided for optimizing content display on a user interface. A method may include receiving an indication of user input indicating that a first portion of a display of a map is to be one of compressed or expanded. The method may further include causing the one of compression or expansion to the first portion of the display. The method may also include determining, based at least in part on the first portion of the display, at least one second portion of the display. The method may further include causing another one of compression or expansion to the at least one second portion of the display such that the second portion of the display is modified in a different manner than the first portion of the display. Corresponding apparatuses and computer program products are also provided.
Abstract:
An electronic method for magnifying and editing an object. The method includes receiving an image area defined as a portion of a workspace or image. The method further includes generating an enlarged image based on the image area selected, and a current zoom level; receiving an instruction for activating an editing mode; activating the editing mode for editing the object through the enlarged image to obtain an edited object and receiving one or more edit instructions for editing the object. In certain embodiments, the method allows a user to view and edit areas of the work space under a simulated magnifying glass.
Abstract:
A method for displaying visual information on a display screen of a computer, comprising the steps of scaling the visual information to produce a scaled representation to fit on the display screen the scaled representation containing the entire content of the visual information; selecting a region of interest within the scaled representation; applying a transformation to the scaled representation to improve the visual detail in the region of interest; and, displaying the transformed presentation on the display screen.
Abstract:
The invention relates to a method and a system for digitally processing of frequently updated images from a camera. The system comprises at least one camera (2), at least one display unit, a network (6) for connecting the at least one camera with at least one display unit, and an image processing means (30). The image processing means comprises means for defining a first scaling area and a peripheral scaling area, which is enclosing the first scaling area, within an acquired digitised image, and means for scaling the peripheral scaling area differently than the first scaling area so that the peripheral scaling area is downscaled in relation to the first scaling area, wherein the first scaling area is uniformly scaled in both a vertical and a horizontal direction.
Abstract:
A method of deriving a preview image from CCITT-compressed digital image data that represent an original image is disclosed. The method comprises receiving CCITT-compressed image data that represent an original image having Nr rows and Nc columns. Without decompressing the CCITT-compressed data, a preview image is derived that has Nr/M rows each having Nc/M pixel values. The reducing step includes processing each group of M rows of said original image represented in the CCITT-compressed data. Specifically, the CCITT-compressed data that represent the group of M rows of the original image is read. For each constituent row in the group of M rows, a location in the row is derived for each transition represented in the CCITT-compressed data. For each constituent row in the group of M rows, each transition in the row is mapped to a pixel value in a reduced row having Nc/M pixel values. Therefore, for each group of M rows in the original image, M reduced rows are defined. In each case, the M reduced rows are combined by averaging or the like into a single preview row having Nc/M preview pixel values. The preview image is assembled from Nr/M preview rows.