Radiation detecting apparatus and radiation image capturing system
A radiation detecting apparatus includes a flexible radiation conversion panel for detecting radiation that has passed through a subject and converting the detected radiation into radiation image information, and grips disposed on ends of the radiation conversion panel. A hardness of the grips is greater than that of the radiation conversion panel. Holes are formed in the grips for enabling the grips to be gripped.
1. A radiation detecting apparatus comprising:
a flexible radiation conversion panel for detecting radiation that has passed through a subject and converting the detected radiation into radiation image information; and
a grip disposed on an end of the radiation conversion panel, a hardness of the grip being greater than that of the radiation conversion panel,
wherein a hole is provided in the grip for enabling the grip to be gripped, and
wherein the grip has therein a wireless communication unit for performing wireless communication with an external circuit, a controller for controlling the radiation conversion panel, and a battery for energizing the radiation conversion panel, the controller, and the wireless communication unit.
2. A radiation detecting apparatus according to claim 1 , wherein the radiation conversion panel is housed in a flexible screen.
3. A radiation detecting apparatus according to claim 2 , wherein the radiation detecting apparatus comprises a radiation detecting cassette, and the screen is made of a material permeable to the radiation.
4. A radiation detecting apparatus according to claim 2 , wherein an irradiated surface of the screen includes a marker serving as a reference mark for an image capturing area and an image capturing position with respect to the subject.
5. A radiation detecting apparatus according to claim 1 , wherein the radiation conversion panel includes a sensor substrate for converting the radiation into electrical signals, the sensor substrate comprising a scintillator for converting the radiation into visible light, and a plurality of solid-state detectors for converting the visible light into the electric signals.
6. A radiation detecting apparatus according to claim 5 , wherein the solid-state detectors and the scintillator are successively arranged in order toward the subject, or the scintillator and the solid-state detectors are successively arranged in order toward the subject.
7. A radiation detecting apparatus according to claim 1 , wherein two of the grips are disposed respectively on opposite ends of the radiation conversion panel, the radiation detecting apparatus being accommodated inside a storage box by hanging one of the grips on a hook, in a condition where the one grip is disposed upwardly and the other grip is disposed downwardly.
8. A radiation detecting apparatus according to claim 1 , wherein a display unit for displaying information concerning the radiation detecting apparatus is disposed on the grip.
9. A radiation detecting apparatus according to claim 1 , wherein at least one of an input terminal of an AC adapter for externally supplying power to the radiation detecting apparatus, a USB (Universal Serial Bus) terminal for sending and receiving information to and from an external circuit by way of wired communications, and a card slot for receiving a memory card and recording information therein is disposed in the grip.
10. A radiation detecting apparatus according to claim 1 , wherein the radiation detecting apparatus is inserted into a cradle, in a condition where the irradiated surface irradiated by the radiation on the radiation conversion panel is substantially vertical, for carrying out charging with respect to the radiation detecting apparatus.
11. A radiation image capturing system comprising:
a radiation source for emitting radiation;
a radiation detecting apparatus comprising a flexible radiation conversion panel for detecting the radiation that has passed through a subject and converting the detected radiation into radiation image information, and a grip on an end of the radiation conversion panel, a hardness of the grip being greater than that of the radiation conversion panel, wherein a hole is provided in the grip for enabling the grip to be gripped; and
a first controller for controlling the radiation source and the radiation detecting apparatus,
wherein the grip has therein: (a) a wireless communication unit for performing wireless communication with an external circuit, (b) a second controller for controlling the radiation conversion panel, and (c) a battery for energizing the radiation conversion panel, the second controller and the wireless communication unit.
12. A radiation image capturing system according to claim 11 , wherein the radiation detecting apparatus sends the radiation image information converted by the radiation conversion panel to the first controller by way of wireless communications.