Abstract:
The invention provides a robust method to control interactive media using gestures. A method to retrieve metadata information from a multimedia outlet device, wherein the method follows the steps: (1) extracting image hot spot areas in a current captured image using face detection, (2) detecting a human gesture directive in at least one image hot spot area using gesture recognition, (3) determining if the gesture directive matches a pre-assigned command to a rich interaction module, (4) sending a signal to a rich interaction module corresponding to the pre-assigned command detected, (5) extracting a media image hot spot area from electrical signals sent from the multimedia, (6) matching any detected human gestures in at least one image hot spot area using gesture recognition with a specific pixel on a device screen, and (7) retrieving information from metadata assigned to an area of pixels on the screen.
Abstract:
The invention relates to a robust method to control interactive media using gestures. A method of controlling a multimedia device, using face detection and (hot spot) motion, providing robust accuracy in issued commands, wherein the method involves the following steps: extracting a hot spot area using a current captured image (Ci), calculate and analyze the difference between the current captured image (Ci) and a previous captured image (Ci−1), resulting in Di, applying an erosion on the Di to remove small areas, applying extracted (hot spot) motion areas as masks to filter out non-hot spot area motion, add Di to build a motion image, find the largest x, y and the smallest x, y coordinates of all the detected motion connected components, denote each as Ix, Iy, sx and sy, and perform an algorithm to determine if a hand gesture represents a command to control a multimedia device.
Abstract:
The invention provides a robust method to control interactive media using gestures. A method to retrieve metadata information from a multimedia outlet device, wherein the method follows the steps: (1) extracting image hot spot areas in a current captured image using face detection, (2) detecting a human gesture directive in at least one image hot spot area using gesture recognition, (3) determining if the gesture directive matches a pre-assigned command to a rich interaction module, (4) sending a signal to a rich interaction module corresponding to the pre-assigned command detected, (5) extracting a media image hot spot area from electrical signals sent from the multimedia, (6) matching any detected human gestures in at least one image hot spot area using gesture recognition with a specific pixel on a device screen, and (7) retrieving information from metadata assigned to an area of pixels on the screen.
Abstract:
A video processing technique is performed on a video media service to identify video segments of interest. The video processing technique (200) is supplemented by a text extraction technique (245, 255, 270), as well. The resulting video segments of interest (289) can be stored as to produce a version of the media service which is shorter in time length than the original video media service.
Abstract:
A video processing technique is performed on a video media service to identify video segments of interest. The video processing technique (200) is supplemented by a text extraction technique (245, 255, 270), as well. The resulting video segments of interest (289) can be stored as to produce a version of the media service which is shorter in time length than the original video media service.
Abstract:
An optical source uses feedback to maintain a substantially fixed spacing between adjacent wavelengths in a set of wavelengths in a wavelength comb output by the optical source. In particular, a set of light sources in the optical source provide optical signals having the set of wavelengths. Moreover, the optical signals are output at diffraction angles of an optical device in the optical source (such as an echelle grating), and optical detectors in the optical source determine optical metrics associated with the optical signals. Furthermore, control logic in the optical source provides control signals to the set of light sources based on the determined optical metrics.
Abstract:
Disclosed are methods, apparatuses, etc. for glucose sensor signal stability analysis. In certain example embodiments, a series of samples of at least one sensor signal that is responsive to a blood glucose level of a patient may be obtained. Based at least partly on the series of samples, at least one metric may be determined to assess an underlying trend of a change in responsiveness of the at least one sensor signal to the blood glucose level of the patient over time. A reliability of the at least one sensor signal to respond to the blood glucose level of the patient may be assessed based at least partly on the at least one metric assessing an underlying trend. Other example embodiments are disclosed herein.
Abstract:
Disclosed are methods, apparatuses, etc. for glucose sensor signal stability analysis. In certain example embodiments, a series of samples of at least one sensor signal that is responsive to a blood glucose level of a patient may be obtained. Based at least partly on the series of samples, at least one metric may be determined to assess an underlying trend of a change in responsiveness of the at least one sensor signal to the blood glucose level of the patient over time. A reliability of the at least one sensor signal to respond to the blood glucose level of the patient may be assessed based at least partly on the at least one metric assessing an underlying trend. Other example embodiments are disclosed herein.
Abstract:
The present invention provides compositions and methods for modulating cell proliferation, survival, morphology, and migration. Nucleic acids encoding proteins, and proteins so encoded which are capable of modulating proliferation, survival, morphology, and migration in mammalian cells are provided. Compositions and methods for the treatment of disorders related to cell proliferation, survival, morphology and migration are also provided. Prophylactics and methods for the prevention of such disorders are also provided. Also provided are compositions are methods for diagnostic and prognostic determination of such disorders. Further provided are assays for the identification of bioactive agents capable of modulating proliferation, survival, morphology, and migration in mammalian cells.
Abstract:
The invention provides a new tumor tag, RL5 protein, the polynucleotide encoding RL5 protein, and the method of producing RL5 protein by recombinant technology. The invention also discloses the use of RL5 protein and the polynucleotides encoding RL5 protein, e.g., in diagnosing and treating tumor, as well as the pharmaceutical composition containing RL5 protein or the antibody against it.