Abstract:
An abnormality prediction device includes a detection unit that detects detection information including at least one of biological information of a user and body motion information regarding a body motion of the user, a premonitory symptom determination unit (control unit) that determines whether a premonitory symptom has occurred in the user on the basis of the detection information detected by the detection unit and a premonitory pattern which is a pattern of the detection information according to the premonitory symptom of abnormality occurring in the user, and an information output unit (control unit) that, when the premonitory symptom determination unit determines that the premonitory symptom has occurred, outputs notification information indicating that occurrence of abnormality in the user is predicted.
Abstract:
The color conversion method may include the steps of taking a color required to be changed as a designated color out of input colors included in a display image to be displayed using an input image signal, taking a conversion color to be designated as an output color after changing the designated color, and performing color conversion of the designated color into the conversion color out of the input colors to output an output image signal for displaying the display image using the input image signal on which the color conversion was performed.
Abstract:
A biological information measurement apparatus includes: a detection unit including a light-emitting unit and a light-receiving unit; an inertial sensor configured to detect a body motion of a test subject; and a housing having a measurement surface configured to face the test subject and accommodating the detection unit and the inertial sensor, in which in a plan view of the measurement surface, a first width of the housing along a parallel axis parallel to an axis of the inertial sensor is different from a second width of the housing along an orthogonal axis orthogonal to the axis of the inertial sensor.
Abstract:
A technique includes printing a first image including a plurality of edge pixels and a second image with a lower ratio of edges pixels than the first image and an average density equal to that of the first image and determining a value of a processing parameter so that the average densities of the first image and the second image match. The technique is configured to realize appropriate pre-print processing while preventing the average densities from being low due to the excessive pre-print processing or being high due to the insufficient pre-print processing.
Abstract:
A biological information processing device includes: a pulse wave sensor which measures a pulse wave of a user; a body motion sensor which detects a body motion of the user; and a processing unit which performs estimation processing for pulse wave information of the user. The processing unit performs the estimation processing based on body motion information acquired using a signal from the body motion sensor, even if the pulse wave sensor is off.
Abstract:
A biological information processing system includes processor including hardware. The processor performs: acquisition processing in which pulse wave information is acquired; processing in which analysis processing on the pulse wave information is performed to generate analysis result information; and output processing in which the analysis result information that is generated is outputted. The processor generates information for displaying distribution information of a pulse interval found on the basis of the pulse wave information and a reliability index of measurement of the pulse wave information, as the analysis result information.