Abstract:
A solid-state imaging device includes a plurality of pixels in which photoelectric conversion units that generate signal charges are arranged in a matrix, a plurality of first charge accumulation circuits that hold the signal charges and output the signal charges as a first pixel signal, a plurality of charge transfer circuits that transfer the signal charges to the first charge accumulation circuit, and a plurality of second charge accumulation circuits that hold signal charges based on the signal charges generated by the photoelectric conversion units and output the signal charges as a second pixel signal in which the number of pixels is reduced to a predetermined number, and the charge transfer circuit transfers the signal charges in the same exposure period to the second charge accumulation circuit when transferring the signal charges of the same exposure to the first charge accumulation circuit.
Abstract:
An information-processing apparatus includes a display displaying an image; a memory recording voice data having a voice pronounced at each of plural observation points of the image; a gaze detector generating gaze data by detecting a gaze of a user; a voice input device generating voice data associated with a time axis identical to that of the gaze data by receiving a voice of the user; and a processor to analyze a attention period where a attention degree of the gaze to each of the plural observation points is a predetermined value or greater, based on the gaze data, set a period where the voice is pronounced with respect to the voice data as an important voice period, based on the voice data, and generate calibration data based on a time lag between the attention period and the important voice period.
Abstract:
A medical monitoring apparatus that monitors a status of a patient according to biological information of the patient includes a reliability evaluator 510 configured to obtain first biological information measured by a bedside monitor 200 and second biological information measured by a wearable sensor 300, and to evaluate a reliability of the second biological information according to a correlation between the first biological information and the second biological information, the first biological information and the second biological information belonging to an identical measurement item, and an alert determinator 600 configured to determine, using the first biological information and the second biological information, whether to issue an alert about an abnormality under a condition that depends on the reliability.
Abstract:
An image processing system includes an acquisition unit, a candidate value estimation unit, a cutoff frequency acquisition unit and a candidate value modification unit. The acquisition unit is configured to acquire an image of a sample taken via an optical system. The candidate value estimation unit is configured to estimate a candidate value of a 3D shape of the sample based on the image. The cutoff frequency acquisition unit is configured to acquire a cutoff frequency of the optical system based on information of the optical system. The candidate value modification unit is configured to perform at least one of data correction and data interpolation for the candidate value based on the cutoff frequency and calculate a modified candidate value.
Abstract:
An image processing apparatus is configured comprising a necessary/unnecessary determination data generating unit configured to generate necessary/unnecessary determination data; an image encoding unit assigning identification information respectively to, and recording, in a recording unit, each piece of data after division of each moving image of a moving image after encoding, a necessary/unnecessary determining unit configured to determine an unnecessary moving image frame based on necessary/unnecessary determination data; and a moving image file managing unit configured to rewrite information indicating a state of data at a recording unit in the recording unit corresponding to a moving image frame determined as unnecessary moving image frame by the necessary/unnecessary determining unit into information that there is no data.
Abstract:
An information processing apparatus is disclosed which includes a hardware processor configured to, analyze an attention degree of a gaze of a user, on the basis of gaze data in which the gaze of the user is detected, the gaze data being input externally, and assign an important degree according to the attention degree that is analyzed with respect to speech data of the user, the speech data being input externally, and is associated with a time axis that is a same as that of the gaze data to be recorded in a memory.
Abstract:
A solid-state imaging device includes a first semiconductor substrate to which light is incident; a second semiconductor substrate stacked to the first semiconductor substrate; n first photoelectric conversion devices periodically arranged in the first semiconductor substrate and generating first electric charge signals; n first reading circuits arranged in correspondence with the n first photoelectric conversion devices in the first semiconductor substrate, respectively, each of the n first reading circuits accumulating the first electric charge signal outputting a signal voltage corresponding to the accumulated first electric charge signal as a first pixel signal; a driving circuit sequentially outputting the first pixel signal; m second photoelectric conversion devices periodically arranged in one of the first/second semiconductor substrates and generating second electric charge signals; and m second reading circuits sequentially outputting a second pixel signal, wherein m and n are natural numbers equal to 2 or more than 2.
Abstract:
A apparatus for detecting a biological data of a target patient from an attachable sensor attached to the target patient includes a circuit and a storage that stores therein a first correspondence relationship between a state of a battery included in the sensor and a measurement error of the sensor. The circuit obtains the biological data and battery data indicating the state of the battery, the obtained biological data and the obtained battery data being collected by the sensor, and generates corrected biological data by correcting the biological data according to the battery data, wherein the generating of the corrected biological data includes generating correction data that depends on the battery data by referring to the storage that stores the first correspondence relationship, and generating the corrected biological data by correcting the biological data using the correction data.
Abstract:
A solid-state imaging device includes a plurality of pixels in which photoelectric conversion units that generate signal charges are arranged in a matrix, a plurality of first charge accumulation circuits that hold the signal charges and output the signal charges as a first pixel signal, a plurality of charge transfer circuits that transfer the signal charges to the first charge accumulation circuit, and a plurality of second charge accumulation circuits that hold signal charges based on the signal charges generated by the photoelectric conversion units and output the signal charges as a second pixel signal in which the number of pixels is reduced to a predetermined number, and the charge transfer circuit transfers the signal charges in the same exposure period to the second charge accumulation circuit when transferring the signal charges of the same exposure to the first charge accumulation circuit.
Abstract:
An apparatus for controlling communication with an attachable sensor attached to a target patient includes a circuit. The circuit obtains a first piece of battery data indicating a state of a first battery included in the sensor, the first piece of battery data being transmitted from the sensor to the apparatus through a network. The circuit issues, to the sensor, a communication control command that changes a communication setting set in the sensor to a setting according to the first piece of battery data.