Abstract:
A video image capture component includes a light source operable in a first spectrum, a first image detector operable in the first spectrum, a second light source operable in a second spectrum, and a second image detector operable in the second spectrum. A filtering component generates a combination image by filtering a first image obtained by the first image detector with a high-contrast filter, resulting in a high-contrast image, and masking a second image obtained by the second image detector using the high-contrast image. A compositing component creates a composite image from the combination image and a selected image. A display component displays the composite image.Alternative systems and methods for creating a combination image include techniques involving thermal imaging, laser detection, and narrow band frequency detection.
Abstract:
A video image capture component includes a light source operable in a first spectrum, a first image detector operable in the first spectrum, a second light source operable in a second spectrum, and a second image detector operable in the second spectrum. A filtering component generates a combination image by filtering a first image obtained by the first image detector with a high-contrast filter, resulting in a high-contrast image, and masking a second image obtained by the second image detector using the high-contrast image. A compositing component creates a composite image from the combination image and a selected image. A display component displays the composite image.Alternative systems and methods for creating a combination image include techniques involving thermal imaging, laser detection, and narrow band frequency detection.
Abstract:
An exemplary system includes a media content processing subsystem configured to provide a program guide graphical user interface (“GUI”) to a display for presentation to a user, the program guide GUI including a portion of a program guide. The media content processing subsystem is further configured to provide at least one navigation tool to the display for presentation in the program guide GUI, the navigation tool including a plurality of selectable options for navigating the program guide. The media content processing subsystem is further configured to detect a user selection of one of the selectable options and initiate a navigation to a location in the program guide based on the selected option. In certain embodiments, the navigation tool includes at least one of a time-based navigation tool and a channel navigation tool.
Abstract:
An exemplary system includes a media content processing subsystem configured to provide a program guide graphical user interface (“GUI”) to a display for presentation to a user, the program guide GUI including a portion of a program guide. The media content processing subsystem is further configured to provide at least one navigation tool to the display for presentation in the program guide GUI, the navigation tool including a plurality of selectable options for navigating the program guide. The media content processing subsystem is further configured to detect a user selection of one of the selectable options and initiate a navigation to a location in the program guide based on the selected option. In certain embodiments, the navigation tool includes at least one of a time-based navigation tool and a channel navigation tool.
Abstract:
In one of many possible embodiments, a system includes a media content processing subsystem including an output driver configured to provide at least a component of a media content instance to a display for presentation to a user, and a receiver configured to receive an input command initiated by the user during the presentation of the component of the media content instance. The media content processing subsystem is further configured to select a control pane from a group of control panes based on the input command, each of the control panes including a different set of control tools, and provide, in response to the input command, the control pane to the display for concurrent presentation of both the component of the media content instance and the control pane to the user.
Abstract:
In one of many possible embodiments, a system includes a media content processing subsystem including an output driver configured to provide at least a component of a media content instance to a display for presentation to a user, and a receiver configured to receive an input command initiated by the user during the presentation of the component of the media content instance. The media content processing subsystem is further configured to select a control pane from a group of control panes based on the input command, each of the control panes including a different set of control tools, and provide, in response to the input command, the control pane to the display for concurrent presentation of both the component of the media content instance and the control pane to the user.
Abstract:
An exemplary system includes a media content processing subsystem configured to provide a program guide graphical user interface (“GUI”) to a display for presentation to a user, the program guide GUI including a portion of a program guide. The media content processing subsystem is further configured to provide at least one navigation tool to the display for presentation in the program guide GUI, the navigation tool including a plurality of selectable options for navigating the program guide. The media content processing subsystem is further configured to detect a user selection of one of the selectable options and initiate a navigation to a location in the program guide based on the selected option. In certain embodiments, the navigation tool includes at least one of a time-based navigation tool and a channel navigation tool.