Abstract:
A device includes a processor which controls a display operation of a display unit. The processor acquires a specified portion specified by a first user operation in an object image including an object to be imaged, sets an enlargement reference point in the object image according to the specified portion with respect to which a part of the object image is enlarged when performing enlargement display control, and extracts a display target range from the object image as the part of the object image to be enlarged. The display target range includes both the enlargement reference point and the specified portion, and the enlargement reference point is set so that the representative point approaches a middle of the display area in response to each input of a second user operation for performing enlargement display control, until the representative point coincides with the middle of the display area.
Abstract:
An imaging device that images a disease site as a subject includes a camera body, a light unit that is provided in the camera body and includes a first light source and a second light source that have different characteristics, and a filter unit that includes at least one independent filter capable of being positioned on and retracted from an optical axis of the camera body. The imaging device performs continuous imaging by imaging in a state in which the subject is illuminated with light from the first light source and, via a first mode, the filter is positioned on or retracted from the optical axis and, thereafter, imaging in a state in which the subject is illuminated with light from the second light source and, via a second mode that differs from the first mode, the filter is positioned on or retracted from the optical axis.
Abstract:
An image creation method executed by a control unit including the steps: extracting a plurality of specific portions in a facial region of a facial image created by photographing a face from a front; selecting a plurality of illustration part images, which is viewed from a different view point from the front, corresponding to the specific portions; and making a portrait image of the face viewed from the different view point from the front, based on the illustration part images selected in the step of selecting.
Abstract:
A motion picture playing method for playing a motion picture image on a display unit includes a motion picture image-obtaining step for obtaining the motion picture image, a character string-obtaining step for obtaining a character string scrolled and displayed in a predetermined direction overlaid on the motion picture image obtained in the motion picture image-obtaining step, and a control step for controlling a display mode for scrolling and displaying the character string based on (i) a length of the character string in the predetermined direction obtained in the character string-obtaining step, and (ii) a playing time of the motion picture image obtained in the motion picture image-obtaining step.
Abstract:
The invention provides a method of processing an image in a diagnostic apparatus 100 of diagnosing a lesion using a captured image of an affected area to be diagnosed, comprising the steps of: (i) classifying the captured image based on a stage of a progression of the lesion (Step S13 and S14); and (ii) performing an image conversion processing, which corresponds to a classification obtained as a result of step (i), on the captured image to generate a converted image (Step S15-17).
Abstract:
An imaging device that images a disease site as a subject includes a camera body, a light unit that is provided in the camera body and includes a first light source and a second light source that have different characteristics, and a filter unit that includes at least one independent filter capable of being positioned on and retracted from an optical axis of the camera body. The imaging device performs continuous imaging by imaging in a state in which the subject is illuminated with light from the first light source and, via a first mode, the filter is positioned on or retracted from the optical axis and, thereafter, imaging in a state in which the subject is illuminated with light from the second light source and, via a second mode that differs from the first mode, the filter is positioned on or retracted from the optical axis.
Abstract:
A medical skin examination device configured to diagnose a skin lesion includes: a first storage unit configured to store an original first skin image related to a dermoscopy structure imaged via a dermoscope; an image conversion unit configured to apply High Dynamic Range (HDR) conversion processing to the first skin image and obtain a second skin image in which the dermoscopy structure is made clear and salient; a second storage unit configured to store the second skin image; and a display control unit configured execute control so as to display at least one of the first skin image and the second skin image.
Abstract:
A medical skin examination device configured to diagnose a skin lesion includes: a first storage unit configured to store an original first skin image related to a dermoscopy structure imaged via a dermoscope; an image conversion unit configured to apply High Dynamic Range (HDR) conversion processing to the first skin image and obtain a second skin image in which the dermoscopy structure is made clear and salient; a second storage unit configured to store the second skin image; and a display control unit configured execute control so as to display at least one of the first skin image and the second skin image.
Abstract:
An imaging device comprises a processor configured to control a display operation of a display unit, in which the processor acquires a specified portion specified by a first user operation in an object image including an object to be imaged, performs enlargement display control of enlarging a part of the object image and displaying the enlarged part in a display area of the display unit in response to a second user operation, and sets an enlargement reference point in the object image according to the specified portion in the enlargement display control.
Abstract:
A diagnosis assistance device includes at least one microphone that collects voice around an affected area, and at least one processor. The at least one processor determines, based on image data that is data of a captured image of the affected area, whether the affected area is malignant, and stores in a memory the voice collected by the microphone when determination is made that the affected area is malignant.