Abstract:
An image processing system includes a joining processing unit configured to perform a joining process to join input images captured by an image capturing device and generate an output image the image capturing device being reflected in each of the input images; and an acceptance unit configured to receive selection of one of a plurality of modes for the joining process. The plurality of modes has a first mode to generate an output image in which at least a part of the image capturing device is reflected, through the joining process; and a second mode to, through the joining process, generate an output image whose area where the image capturing device is reflected is smaller than an area where the image capturing device is reflected in the output image in the first mode or generate an output image in which the image capturing device is not reflected.
Abstract:
A resin window capable of preventing breakage of defogger wires, and a method for producing the same. The resin window includes a plate-like resin glass extending from one end side to the other end side and having a curved portion formed thereon in the extending direction of the resin glass, and a film disposed so as to follow the shape of the resin glass and having a defogger wire extending in the extending direction of the resin glass. When seen in the direction normal to the resin glass, the defogger wire has a wave-shaped portion in at least a portion at a position corresponding to the curved portion.
Abstract:
An image processing apparatus detecting a plurality of joint positions between a plurality of input images includes a target image generation unit configured to generate a plurality of target images to be searched in a second input image among the input images from a first input image among the input images; a characteristic amount calculation unit configured to calculate a characteristic amount for each of the target images generated by the target image generation unit; and a joint position determination unit configured to determine the joint position for a target image of interest among the target images having the characteristic amounts calculated by the characteristic amount calculation unit depending on the characteristic amount.
Abstract:
An apparatus for controlling image capturing, includes circuitry to control image capturing operation of each one of a first image capturing device and a second image capturing device, so as to cause the first image capturing device and the second image capturing device to cooperate with each other to perform linked image capturing, the first image capturing device capable of capturing an image with an angle of view wider than that of the second image capturing device. The circuitry controls one of the first image capturing device and the second image capturing device to start image capturing in response to starting of image capturing by other one of the first image capturing device and the second image capturing device.
Abstract:
An image processing apparatus detecting a plurality of joint positions between a plurality of input images includes a target image generation unit configured to generate a plurality of target images to be searched in a second input image among the input images from a first input image among the input images; a characteristic amount calculation unit configured to calculate a characteristic amount for each of the target images generated by the target image generation unit; and a joint position determination unit configured to determine the joint position for a target image of interest among the target images having the characteristic amounts calculated by the characteristic amount calculation unit depending on the characteristic amount.
Abstract:
An image processing apparatus detecting a plurality of joint positions between a plurality of input images includes a target image generation unit configured to generate a plurality of target images to be searched in a second input image among the input images from a first input image among the input images; a characteristic amount calculation unit configured to calculate a characteristic amount for each of the target images generated by the target image generation unit; and a matching calculation unit configured to calculate a matching between the target image of interest among the target images having the characteristic amounts calculated by the characteristic amount calculation unit, and a part of the second input image, using an evaluation method depending on the characteristic amounts calculated by the characteristic amount calculation unit.
Abstract:
An image processor includes a first image creator which creates first noise-processed image data by performing noise reduction processing on data on one image acquired by an imaging device, a second image creator which creates second noise-processed image data by performing noise reduction processing corresponding to a false color generated in the first noise-processed image data, and an image synthesizer which performs false color reduction by synthesizing the first noise-processed image data and the second noise-processed image data.
Abstract:
A game system for reliably realizing synchronization of timings at which a common event in a plurality of game machines start. The game system includes a plan management server that measures lapse of system time common in the game system and with the time measurement, updates plan information indicative of remaining time until the system time reaches a process start stage at which a process for the common event starts. Each of the game machines includes an obtaining device to obtain the plan information from the plan management server, a stage determining device to determine whether the system time has reached the process start stage or not on the basis of laps of time of the system time measured in the game machine, and a process executing device to start a process for the common event when it is determined that the system time has reached the process start stage.
Abstract:
Disclosed is a process for the preparation of Compound (III), salt or solvate thereof by reacting Compound (I), salt or solvate thereof with Compound (II) in a toluene solvent in the presence of an additive such as water or an alcohol. Also disclosed is a process for the preparation of Compound (IV) comprising hydrolyzing the obtained Compound (III) if necessary, and then oxidizing. In the formula, R1 is hydrogen, optionally substituted lower alkyl, optionally substituted aryl or optionally substituted aryl lower alkyl, and R2 is optionally substituted lower alkyl, optionally substituted cycloalkyl or optionally substituted aryl lower alkyl.
Abstract:
An element structure has a polyimide resin applied on a surface of a first substrate to a uniform thickness, and is subsequently heated to form a semi-cured polyimide layer. The polyimide layer is then cured to form a cured first polyimide layer. A polyimide resin is applied on a surface of a second substrate to a uniform thickness, and is subsequently heated to form a semi-cured polyimide layer. The polyimide layer is then cured to form a cured second polyimide layer. The cured first and second polyimide layers are pressed on each other and heated to a bonding temperature, thereby joining the polyimide layers together. Thus, the first substrate and the second substrate are combined with the polyimide layer being the bonded structure of the polyimide layers therebetween.