Abstract:
PROBLEM TO BE SOLVED: To provide an apparatus and method for generating tomography images, capable of enhancing an observable transmission depth and generating more precise tomography images.SOLUTION: Provided is an apparatus for generating tomography images, the apparatus including: a detection unit configured to modulate incident beams into at least two basic modulated incident lights based on each of at least two basic modulation parameters and into a target modulated incident light based on a target modulation parameter, and to detect at least two basic interference signals and a target interference signal of an object; and an imaging unit configured to analyze the at least two basic interference signals, set a target modulation parameter for output, and process the target interference signal for output as a target image of the object.
Abstract:
PROBLEM TO BE SOLVED: To provide a tomographic image generation apparatus including a modulation and correction device, and a method of operating the same.SOLUTION: A tomographic image generation apparatus includes: a light source unit configured to emit light to be used for irradiating an object; an optical control unit configured to control a direction of propagation of light; a coupler configured to divide and combine incident light; a plurality of optical systems optically connected to the coupler; and a modulation and correction device configured to modulate and correct the light to be used for irradiating the object.
Abstract:
PROBLEM TO BE SOLVED: To provide a method for manufacturing a palladium-platinum core shell catalyst having higher catalyst activity and more excellent durability than a conventional catalyst.SOLUTION: A method has a constitution including (a) a stage for preparing a mixed solution by dissolving a palladium precursor and a surfactant into an organic solvent, (b) a stage for preparing a sol mixed with palladium core nanoparticles by raising a temperature of a mixed solution under an inert gas atmosphere, (c) a stage for producing a mixture by mixing a platinum precursor solution with the sol, (d) a stage for producing nanoparticles having a palladium-platinum core shell shape by raising a temperature of the mixture under an inert gas atmosphere, (e) a stage for manufacturing a palladium-platinum core shell catalyst by allowing a carbon support medium to adsorb the nanoparticles having the palladium-platinum core shell shape, and (f) a stage for removing the surfactant from the palladium-platinum core shell catalyst.
Abstract:
The present invention relates to methods and apparatuses for transferring pattern, a flexible display panel, a flexible solar cell, an electronic book, a thin film transistor, an electromagnetic-shielding sheet, and a flexible printed circuit board applying thereof. A pattern transfer method related to the present invention comprises: a first step of forming a pattern material on a substrate; a second step of hardening the pattern material in the solid state; a third step of patterning the pattern material by irradiating a laser beam to the hardened pattern material in the solid state; and a fourth step of pressing the patterned pattern material in the solid state and a flexible substrate facing each other and transferring the pattern material to the flexible substrate by a viscous force of the flexible substrate occurring in a facing part between the pattern material and the flexible substrate by irradiating the laser beam from the pattern material to the flexible substrate or from the flexible substrate to the pattern material.
Abstract:
PROBLEM TO BE SOLVED: To provide an optical nano antenna using a single-crystal silver nanowire, a method for manufacturing the same, and an optical nano antenna using a single-crystal metal nanowire.SOLUTION: The optical nano antenna includes the single-crystal silver nanowire. The single-crystal silver nanowire can operate at a whole wavelength band within all a visible light region and have multiple resonance and a wide spectrum range by outputting optical antenna radiation patterns including a radiation pattern of multi-lobed configuration in which a plurality of lobes are radially disposed centering around the single-crystal silver nanowire based on an incident light of the whole wavelength band of the visible light region.
Abstract:
PROBLEM TO BE SOLVED: To provide, especially, mammals except human-beings in which a gene of GIT1 (G protein-coupled receptor kinase interacting protein 1) which is neural synapse protein of the brain is knocked out, as an attention deficiency hyper activity disorder model, and to provide a new screening method of medicine for administering medicine which is an ADHD candidate substance to induce recovery by using a GIT1 knockout mouse.SOLUTION: Regarding molecular-biological, cytobiological, electrobiological, and zoological analysis to a GIT1 knockout mouse, hyperactivity which is attention deficiency hyperactivity disorder and recover of theta waves in the frontal lobe are observed by administration of medicine which is a candidate substance, and screening of a new medicine for inducing recovery of the attention deficiency hyperactivity disorder is performed.