Abstract:
An example information processing system includes a stationary display device, and a portable display device on which a predetermined input can be made by a user. A content item is played and displayed on the stationary display device, and while the content item is being played, the playback image of the content item and a user interface image used for specifying a content item to be played are selectively displayed on the portable display device.
Abstract:
An adjustment method of a magnetic resonance imaging apparatus includes: a cooling and excitation step in which work of transporting a superconducting magnet to a facility different from a facility where the superconducting magnet is to be installed, cooling a superconducting coil of the superconducting magnet with a refrigerant, and supplying a current from an external power supply for excitation is repeated until a predetermined rated current flows; a demagnetization and transportation step of demagnetizing the superconducting coil and transporting the superconducting magnet to the facility where the superconducting magnet is to be installed in a state where the superconducting coil is cooled by the refrigerant; and an installation step of installing the superconducting magnet in the facility where the superconducting magnet is to be installed and supplying a predetermined rated current from an external power supply to the superconducting coil in order to excite the superconducting coil.
Abstract:
An adjustment method of a magnetic resonance imaging apparatus includes: a cooling and excitation step in which work of transporting a superconducting magnet to a facility different from a facility where the superconducting magnet is to be installed, cooling a superconducting coil of the superconducting magnet with a refrigerant, and supplying a current from an external power supply for excitation is repeated until a predetermined rated current flows; a demagnetization and transportation step of demagnetizing the superconducting coil and transporting the superconducting magnet to the facility where the superconducting magnet is to be installed in a state where the superconducting coil is cooled by the refrigerant; and an installation step of installing the superconducting magnet in the facility where the superconducting magnet is to be installed and supplying a predetermined rated current from an external power supply to the superconducting coil in order to excite the superconducting coil.
Abstract:
An example game system includes a game apparatus and an operating device. The game apparatus acquires operation data from the operating device. Moreover, the game apparatus executes an application and outputs an image generated by the execution of the application to either the operating device or a predetermined display device different from the operating device, or both. When a predetermined operation is performed on the operating device during the execution of the application, a predetermined operation image is displayed on a display unit of the operating device. In a state where the operation image is displayed on the display unit, the game apparatus determines whether or not a control instruction has been provided to control the predetermined display device, on the basis of the operation data. When the control instruction is determined to have been provided, the predetermined display device is controlled in accordance with the control instruction.
Abstract:
There is provided a video data editing apparatus for making video data edition to set a frame as a predetermined edit point in video data including a plurality of picture frame groups each including a plurality of picture frames. The apparatus includes an operation command input unit (40) to accept an operation command, a data storage unit (120) to store video data compressed at every picture frame groups each including a plurality of picture frames and an edit mode controller (102). The edit mode controller makes, based on a predetermined-operation command supplied via the operation command input unit, a selection between a group-unit edit point select mode in which a command for selection of a picture frame group of the video data stored in the storage unit is accepted via the operation command input unit to change the currently-selected picture frame group and a frame-unit edit point select mode in which a command for selection of one frame of a plurality of picture frame groups included in the currently-selected picture frame group is accepted via the operation command input unit to change the currently-selected picture frame, and sets, as an edit point, a picture frame corresponding to the result of selection in the group-unit edit point select mode or a picture frame corresponding to the results of selection in the group- and frame-unit edit point select modes in response to a set command supplied via the operation command input unit.
Abstract:
Provided is an information processing apparatus configured to: display on a screen a display target range, which is a part of a first display region extending along a first direction, so as to be superimposed on a first background image; move, when an operation of specifying a direction along the first direction is received from a user in a state in which the display target range is displayed, the display target range in the first display region in accordance with the specified direction without changing a display position of the first background image; and display a predetermined partial range of a second display region extending along the first direction so as to be superimposed on a second background image when an operation of specifying a direction along a second direction intersecting the first direction is received from the user, irrespective of whether or not the display target range is moved.
Abstract:
There is provided a video data editing apparatus for making video data edition to set a frame as a predetermined edit point in video data including a plurality of picture frame groups each including a plurality of picture frames. The apparatus includes an operation command input unit (40) to accept an operation command, a data storage unit (120) to store video data compressed at every picture frame groups each including a plurality of picture frames and an edit mode controller (102). The edit mode controller makes, based on a predetermined-operation command supplied via the operation command input unit, a selection between a group-unit edit point select mode in which a command for selection of a picture frame group of the video data stored in the storage unit is accepted via the operation command input unit to change the currently-selected picture frame group and a frame-unit edit point select mode in which a command for selection of one frame of a plurality of picture frame groups included in the currently-selected picture frame group is accepted via the operation command input unit to change the currently-selected picture frame, and sets, as an edit point, a picture frame corresponding to the result of selection in the group-unit edit point select mode or a picture frame corresponding to the results of selection in the group- and frame-unit edit point select modes in response to a set command supplied via the operation command input unit.
Abstract:
A MRI apparatus includes a super-conducting magnet including a superconducting coil circuit having a super-conducting coil and a permanent current switch for controlling permanent current flowing through the super-conducting coil; at least one electrical circuit which is electrically connected to at least one electrical element and disposed at the outside of the super-conducting magnet; a gradient magnetic filed generating means; a high frequency magnetic field generating means; and shielded examination room which accommodates the super-conducting magnet. The apparatus further comprises means for interrupting noise current generated based on tomographic image measurement of the subject. Said means is disposed outside the super-conducting magnet and inside the shielded examination room while being inserted between the electrical circuit and the super-conducting magnet.
Abstract:
In order to provide a high intensity magnetic field open type MRI apparatus which suppresses electro-magnetic interference to super-conducting coils due to gradient magnetic field coils and high frequency magnetic field coils and to realize stable operation of super-conducting magnet, in a static magnetic field generating magnet 102, a pair of cryostats 117 are connected by a coupling tube 201 and disposed in vertical direction while sandwiching a space 118 where a subject is laid, and in vessels 202 and 203 filled with liquid helium in the respective cryostats super-conducting coils are accommodated. To the cryostats 117 an emergency demagnetizing unit 120 for attenuating magnetic field and a measurement unit 121 for monitoring helium liquid level belong, and signal cables therefor are connected to an inner circuit of the static magnetic field generating magnet 102 via a filter circuit 122. High frequency current induced when the gradient magnetic field coils and the high frequency magnetic field coils are driven is interrupted by the filter circuit 122 and is caused to flow to a connection point 123 via the outer casing of the cryostats 117, thereby, no influences are effected to the inner circuit in the cryostats 117.