Abstract:
This radiography system has a switching processing unit that switches the device that controls a radiation source and a radiography device to a control device or a portable apparatus. In a case where penetrative imaging has started, the switching processing unit switches the device that controls the radiation source and the radiography device from the control device to the portable apparatus.
Abstract:
In an image viewing system, a medical image is displayed on a display panel having a predetermined aspect ratio. One of a horizontal orientation and a vertical orientation in which the display panel is positioned is detected. A longitudinal direction of the display panel is vertical in case of the vertical orientation, and is horizontal in case of the horizontal orientation. The medical image is processed in rotation processing relative to the display panel by maintaining a size of the medical image in compliance with one of the horizontal and vertical orientations of the display panel, to orient the medical image in a proper orientation relative to a viewing direction to the display panel. Assuming that a blank area is created outside a display area of the medical image on the display panel after the rotation processing, relevant information relevant to the medical image is displayed in the blank area.
Abstract:
A radiographic image reading device includes: a casing that has a conveyance inlet/outlet for conveying in and conveying out a storage phosphor sheet on which a radiographic image is recorded, and a discharge outlet for discharging the storage phosphor sheet; an image reading unit that reads the radiographic image recorded on a storage phosphor sheet that has been conveyed in from the conveyance inlet/outlet; and a conveyance unit that conveys the storage phosphor sheet that has been conveyed in from the conveyance inlet/outlet to a read position at which reading is performed by the image reading unit and that conveys the storage phosphor sheet, from which the radiographic image has been read, to the conveyance inlet/outlet or the discharge outlet.
Abstract:
An electronic cassette includes a first radiation detector for still imaging and a second radiation detector for fluoroscopic imaging. The first radiation detector includes a first photo detection device and a luminous device. The luminous device generates visible light by absorbing radiation transmitted through the first photo detection device. The first radiation detector detects the visible light generated by the luminous device. The second radiation detector is constituted by the luminous device and a second photo detection device disposed downstream of the luminous device in an optical path direction of the radiation. The second photo detection device detects the visible light generated by the luminous device. The second radiation detector is changed over to the first radiation detector, so that still imaging can be started by rapid setting during operation of fluoroscopic imaging.
Abstract:
In a remote diagnostic system, one remote service provider among plural remote service providers is requested by a health care provider (service requester) to diagnose a medical image, and the image is transmitted thereto. Attribute information constituted by at least one of an object region and symptom information of an object in the image is input for the request of diagnosis. The one remote service provider is selected among the plural remote service providers, to transmit the image and the attribute information to the selected remote service provider. It is checked whether the object region or symptom information of the image corresponds to an available specialty of the selected remote service provider by use of a specialty database component. If it is judged in authorization control that the object region or symptom information of the image does not correspond to the available specialty, distribution of the image is rejected.
Abstract:
A self-propelling device includes a turning unit and a supporter. The supporter includes a first support sleeve, a second support sleeve and a cover formed respectively cylindrically. A drive wheel is secured to the first support sleeve in a rotatable manner. A pair of follower rollers are secured to the second support sleeve together. The cover is fitted on an outer surface of the second support sleeve externally, and disposed in the turning unit together with the second support sleeve. The turning unit is pressed by the follower rollers to the drive wheel. When the drive wheel rotates, the turning unit is circulated around the second support sleeve in a longitudinal direction of the first support sleeve. An inner wall of a body cavity will not be damaged, as the follower rollers are covered by the cover and do not appear externally even if the turning unit breaks.
Abstract:
At least one of parallax images for left and right eyes to be fusionally displayed to perform stereopsis using binocular parallax is generated at low resolution or low sharpness of such a degree that a subject in the parallax image is observable as a stereoscopic image when an observer observes the subject in an observation mode in which the two fusionally displayed parallax images are stereoscopically viewable, and also of such a degree that the subject is recognizable as a plane image when an observer observes the subject in an observation mode in which the two fusionally displayed parallax images are not stereoscopically viewable.
Abstract:
A radiation detection panel includes a single light emitting section, a first detection section and a second detection section. The single light emitting section absorbs radiation that has been transmitted through an imaging subject and that emits light. The first detection section detects light emitted from the light emitting section as an image. The second detection section that is formed from an organic photoelectric conversion material and that detects light emitted from the light emitting section. The light emitting section, the first detection section and the second detection section are stacked in layers along a radiation incident direction.
Abstract:
In the disclosed radiograph imaging system, the transmission/reception of a signal is possible between on-site communication units and a waiting area communication unit. Also, the waiting area communication unit transmits at least an imaging menu to the on-site communication units.
Abstract:
The radiographic imaging device that configures the disclosed radiographic imaging system has at least a camera that images a main cassette body. Said camera is integrally configured to a radiation source and a control device that controls the main cassette body or is integrally configured to a main radiation source body that houses the radiation source.