Abstract:
An electronic device, a method to be executed by an electronic device, and a non-transitory memory storing a program for causing an electronic device to execute processes include acquiring a pulse wave of a subject, and estimating a blood glucose level and/or a lipid level of the subject based on a displacement ratio in the pulse wave. The displacement ratio comprises a ratio between a displacement of the pulse wave at a peak of the pulse wave and a displacement of the pulse wave at a predetermined time after the peak of the pulse wave, and the predetermined time is a fixed value.
Abstract:
An electronic device includes a base and a meter that can be displaced along a plane intersecting a surface of the base. The meter includes an arm that can be displaced in a direction approximately parallel to a displacement direction of the meter, and a sensor capable of detecting displacement of the arm in accordance with the pulse wave.
Abstract:
An electronic device includes a sensor that acquires a pulse wave and a controller that calculates an index based on the acquired pulse wave. The controller estimates the subject's state of glucose metabolism or lipid metabolism using the calculated index.
Abstract:
A method, display apparatus, and display system for displaying an image of an abdominal cross-section includes storing plural abdominal CT sample images that have at least either of different visceral fat areas or different subcutaneous fat areas, estimating at least one of a visceral fat area and a subcutaneous fat area of an abdominal cross-section, and displaying an abdominal CT sample image corresponding to the estimated at least one of the visceral fat area and the subcutaneous fat area from among the plural abdominal CT sample images.
Abstract:
Provided is an electronic device 100 including a sensor unit 130 configured to acquire a pulse wave of a subject and a controller 143 configured to estimate, using an estimation formula created based on a preprandial blood glucose level and a postprandial pulse wave and blood glucose level, an amount of change in the blood glucose level of the subject due to meal based on a postprandial pulse wave of the subject acquired by the sensor unit 130 and to estimate a postprandial blood glucose level of the subject based on the estimated amount of change and the preprandial blood glucose level of the subject.
Abstract:
An electronic device includes a sensor that acquires a pulse wave of a subject, and a controller that estimates the blood glucose level, glucose metabolism, or a lipid value of the subject on the basis of an estimation expression that is created on the basis of a blood glucose level and a pulse wave corresponding to the blood glucose level, and the pulse wave of the subject acquired by the sensor.
Abstract:
An electronic device includes a sensor unit configured to acquire a pulse wave of a subject's carotid artery and a controller configured to estimate a condition of the subject's carotid artery based on the pulse wave acquired by the sensor unit.
Abstract:
An electronic device includes a wearing portion to be worn by a subject and a sensor unit that includes a sensor configured to detect a pulse wave of the subject. The sensor unit includes a displacement portion configured to contact a measured part of the subject and to be displaced in accordance with the pulse wave of the subject when the wearing portion is worn by the subject.
Abstract:
A holding instrument includes a holding portion that holds a measurement apparatus. The measurement apparatus includes a gyro sensor that detects change in a measured part of a user and a controller that performs a process of measuring biological information of the user based on output of the gyro sensor. The holding instrument is embraced by the user during use while the holding portion is holding the measurement apparatus.
Abstract:
In one aspect, when detecting an event such as receiving emails, missed calls, a schedule notification, or the like, a mobile electronic device executes a process for expanding a first operation part associated with the event on a display module and displaying a second operation part indicating a detail of the event within the expanded first operation part. For example, upon detecting an operation applied onto the first operation part via the touch screen, the mobile electronic device executes a process associated with the first operation part, and upon detecting an operation applied onto the second operation part, the mobile electronic device executes a process associated with the second operation part.