Abstract:
Methods, systems, and devices are described for identifying noisy regions in a skin conductance signal. The signal is divided into a plurality of windows. Two or more features of the signal within a first window are computed. At least one of the two or more features being in a frequency domain. At least two of the features are combined to obtain at least a first metric. The first metric is compared to a corresponding threshold. The first window is identified as a noisy region of the skin conductance signal based on the comparison.
Abstract:
Systems, methods, devices, and apparatuses for associating a user emotion with electronic media are described. Contact between a user of a device and a biopotential electrode array that is integrated with the device is detected. Electrodermal data of the user is acquired via the biopotential electrode array. The user emotion is derived based at least in part on the acquired electrodermal data. The user emotion is then associated with the electronic media.
Abstract:
Aspects of the disclosure relate to a handheld device equipped with arrays of force sensors located along both sides of the device that can provide a novel user interface for operating the device. The sensors can be configured to recognize various grip patterns, gestures, and biometric information of a user operating the device. Using the arrays of force sensors in addition to a touchscreen, a new paradigm for operating a handheld device is provided.
Abstract:
Aspects of the disclosure relate to a handheld device equipped with arrays of force sensors located along both sides of the device that can provide a novel user interface for operating the device. The sensors can be configured to recognize various grip patterns, gestures, and biometric information of a user operating the device. Using the arrays of force sensors in addition to a touchscreen, a new paradigm for operating a handheld device is provided.
Abstract:
Various arrangements for delivery of relevant content to a mobile device of a user are presented. Physiological state data and image data related to the user of the mobile device may be received by a host computer system from a mobile device. The image data may be analyzed to identify a characteristic of the image. The physiological state data may also be analyzed. Content to deliver to the mobile device of the user may be selected at least partially based on the physiological state data of the user and the characteristic of the image. The content may be transmitted to the mobile device.
Abstract:
Systems, methods, devices, and apparatuses for associating a user emotion with electronic media are described. Contact between a user of a device and a biopotential electrode array that is integrated with the device is detected. Electrodermal data of the user is acquired via the biopotential electrode array. The user emotion is derived based at least in part on the acquired electrodermal data. The user emotion is then associated with the electronic media.
Abstract:
Various arrangements for delivery of relevant content to a mobile device of a user are presented. Physiological state data and image data related to the user of the mobile device may be received by a host computer system from a mobile device. The image data may be analyzed to identify a characteristic of the image. The physiological state data may also be analyzed. Content to deliver to the mobile device of the user may be selected at least partially based on the physiological state data of the user and the characteristic of the image. The content may be transmitted to the mobile device.
Abstract:
Methods, systems, and devices are described for identifying noisy regions in a skin conductance signal. The signal is divided into a plurality of windows. Two or more features of the signal within a first window are computed. At least one of the two or more features being in a frequency domain. At least two of the features are combined to obtain at least a first metric. The first metric is compared to a corresponding threshold. The first window is identified as a noisy region of the skin conductance signal based on the comparison.
Abstract:
Various arrangements for delivery of relevant content to a mobile device of a user are presented. Physiological state data and image data related to the user of the mobile device may be received by a host computer system from a mobile device. The image data may be analyzed to identify a characteristic of the image. The physiological state data may also be analyzed. Content to deliver to the mobile device of the user may be selected at least partially based on the physiological state data of the user and the characteristic of the image. The content may be transmitted to the mobile device.