Abstract:
A system is in a standby mode as an imaging preparation condition in step S1. If gripping of an operation handle is detected in step S2, the operation goes to step S3, in which an electromagnetic brake is released, thereby allowing a radiation detector to be rotated substantially around the center of an imaging region. If a rotation angle is detected in step S5, a first limiting device covering an effective imaging region of the radiation detector is changed to a second limiting device so as to be constantly arranged within the effective imaging region even during rotation of the radiation detector.
Abstract:
A radiographic imaging apparatus includes a holding unit which detachably holds an imaging unit for detecting radiation generated by a radiation generation unit and acquiring a radiographic image, a detachment restriction unit which restricts detachment of the imaging unit from the holding unit, and a controller which cancels the restriction by the detachment restriction unit when a grip detection unit for detecting gripping of the imaging unit detects the gripping on the imaging unit.
Abstract:
In a radiation imaging apparatus having a radiation generator, an imaging unit including a detecting unit for detecting radiation to generate a radiation image data, a carriage for carrying the radiation generator, and an operating unit for providing an interface to a user, it is decided whether the radiation imaging apparatus is in a moving state or not. When it is decided that the radiation imaging apparatus is in a moving state, the operation function of the operating unit for the radiation detector and the imaging unit is limited.
Abstract:
The present application describes a method of treating prostate cancer, melanoma or hepatic cancer in a subject in need thereof, the method comprising administering to said subject a therapeutically effective amount of the heterocyclic compound represented by Formula I or its pharmaceutically acceptable salt:
Abstract:
A radiation image taking apparatus includes a case that contains a radiation detecting unit that has a detection surface in which a photoelectric conversion element that detects a radiation transmitted through an object is located, a grid unit which is detachably attachable to an outside of the case and removes a scattered radiation, and a photo timer unit which is detachably attachable to the outside of the case and measures a dose of the radiation. One of a first mode in which the grid unit is attached to the case, a second mode in which the photo timer unit is attached to the case, and a third mode in which the grid unit is attached to the second mode can be freely used in configuration.
Abstract:
The present invention relates to heterocyclic compounds represented by the formula I wherein X represents nitrogen atom or CH; R1 represents halogen atom or hydroxyl; R2 represents hydrogen atom, hydroxyl or amino; R3 represents morpholino (which may be substituted with one or two C1-C6 alkyl), pyrrolidinyl (which may be substituted with hydroxy C1-C6 alkyl) or NR6R7 [R6 represents C1-C6 alkyl and R7 represents piperidinyl (which may be substituted with C1-C6 alkyl)]; R4 and R5 each represents hydrogen atom or C1-C6 alkyl, with the proviso that R2 is hydrogen atom and R3 is pyrrolidinyl (which may be substituted with hydroxy C1-C6 alkyl) when R1 is hydroxyl
Abstract translation:本发明涉及由式I表示的杂环化合物,其中X表示氮原子或CH; R 1表示卤素原子或羟基; R 2表示氢原子,羟基或氨基; R 3表示吗啉代(其可以被一个或两个C 1 -C 6烷基取代),吡咯烷基(其可以被羟基 C 1 -C 6烷基)或NR 6 R 7 - [R 6 - 表示C 1 -C 6烷基,R 7表示哌啶基(其可以被C 1 -C 6烷基取代) 烷基)]; R 4和R 5各自代表氢原子或C 1 -C 6烷基,条件是R R 2是氢原子,R 3是吡咯烷基(其可以被羟基C 1 -C 6烷基取代) )当R 1为羟基时
Abstract:
A sheet reverse controller is equipped with a reverse unit to convey sheets conveyed from the first conveying means in the second direction differing from the first direction; a second conveying means to convey the sheets in the second direction; a sensor provided to the second conveying means to detect the sheets; and a controller to decelerate or accelerate the sheet conveying velocity of the driving rollers based on the detected result of this sensor.
Abstract:
A thermoelectric conversion module including a honeycomb structural body 3 made of an electrically insulating material, N type and P type semiconductor elements 1 and 2 inserted into through holes formed in the honeycomb structural body 3, electrically insulating filler members 4 filled in spaces between the semiconductor elements and inner walls of the through holes such that the semiconductor elements are fixed in position within respective through holes, and electrodes 7 connecting end surfaces of the semiconductor elements on polished end surfaces of the honeycomb structural body such that N type and P type semiconductor elements are alternately connected in series. According to the invention, the electrically insulating filler members are made of an inorganic adhesive of alkali metal silicate or sol-gel glass. Since undesired heat dissipation and heat transfer through adjacent semiconductor elements can be prevented and undesired oxidation and dissipation of the semiconductor elements during a usage can be effectively removed, a high output power can be attained stably for a long life time when the thermoelectric conversion module according to the invention is used in an electric power generating system using an exhausted heat. The higher and lower temperature side surfaces of the module can be shaped into any desired configuration.
Abstract:
A patterned structure including a plurality of patterned sheet members which have respective configurations and which are partially superposed on each other and which cooperate with each other to define a plurality of voids. At least one of the sheet members includes a thin-walled portion whose thickness is smaller than a thickness of the other portion. The thin-walled portion is formed by etching the appropriate sheet member or members. The thin-walled portion of one sheet member engages the corresponding thin-walled portion or the other portion of the other sheet member or members.
Abstract:
A sheet conveying device, which is incorporated in an image forming apparatus, includes a first detector to detect an angle deviation of a recording medium to a sheet conveying direction, a second detector to detect a lateral shift of the recording medium to a width direction, a third detector to detect at least one of the angle deviation and the lateral shift after correction of the angle deviation detected by the first detector and the lateral shift detected by the second detector, and a rotary body to perform a primary movement by (1) rotating in the sheet conveying direction and returning to a reference position and by (2) moving in the width direction and returning to the reference position, and a secondary movement by performing at least one of (1) and (2) after the primary movement.