Abstract:
PROBLEM TO BE SOLVED: To provide ICG-containing particles in which ICG is less likely to be desorbed from metal oxide particles or metal particles.SOLUTION: Indocyanine green-containing particles each include a metal oxide particle or a metal particle and an aggregate of indocyanine green. The aggregate of indocyanine green has a maximum absorbance in the range of 880 nm or more and 910 nm or less.
Abstract:
PROBLEM TO BE SOLVED: To obtain more accurate measurement results by correcting and standardizing an initial acoustic pressure acquired by photoacoustic measurement by using the in-plane distribution of a light intensity obtained by irradiating light to a probe.SOLUTION: An acoustic wave acquisition device is used which includes: a light source; the probe that receives an acoustic wave and generates a reception signal; and an information processing unit which obtains the spatial distribution of the light intensity on the surface of a subject, based on the in-plane distribution of the light intensity of the light source, obtained from the reception signal generated from the acoustic wave generated when the light source irradiates the light to the probe, and the surface shape of the subject, and calculates characteristics information of the subject from the reception signal, generated from the acoustic wave generated in the subject when the light source irradiates the light to the subject, and the spatial distribution of the light intensity.
Abstract:
PROBLEM TO BE SOLVED: To provide a new compound to be quickly discharged from the body to the outside. SOLUTION: The compound is represented by formula (1) (wherein n is 2 or 3; a is 1-4 and b is 3, 5-10 or a is 5 and b is an integer of 1-10; R 1 -R 8 are each a hydrogen atom or a sulfonate that is any one of sodium sulfonate, potassium sulfonate, ammonium sulfonate, triethylammonium sulfonate, pyridinium sulfonate, lysine sulfonate and arginine sulfonate; R 9 -R 12 are each a substituted or unsubstituted 1-3C alkyl). COPYRIGHT: (C)2010,JPO&INPIT
Abstract translation:要解决的问题:提供一种新的化合物以从身体快速排出到外部。 解决方案:该化合物由式(1)表示(其中n为2或3; a为1-4且b为3或5-10或a为5且b为1-10的整数; R 磺酸盐,磺酸盐,磺酸铵,三乙基磺酸铵,吡啶磺酸盐,赖氨酸磺酸盐和精氨酸中的任何一种的氢原子或磺酸盐各自是氢原子或磺酸盐 磺酸盐; R SB 9 -R SB 12各自为取代或未取代的1-3C烷基)。 版权所有(C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a high quality ultraviolet image conversion panel and a method for manufacturing the same which prevent deterioration of the ultraviolet image conversion panel resulting from moisture. SOLUTION: In the ultraviolet image conversion panel and a method for manufacturing the same, an ultraviolet image conversion layer which makes alkali ion in a I-A group of a periodic table, or alkali earth ion in a II-A group of the periodic table, and alkali halide or alkali earth halide in which halogen ion is selected from chlorine ion, bromine ion and iodine ion in a VII-A group of the periodic cable principal component, a moisture prevention protection layer which makes alkali fluoride or alkali earth fluoride selected from alkali ion in the I-A group of the periodic table or alkali earth ion of the II-A group of the periodic table and in which halogen ion is comprised of fluorine ion in the VII-A of the periodic table principal component are joined and sealed via an intermediate layer comprised of eutectic composition or mixed crystal composition between element ion constituting the ultraviolet image conversion layer and element ion constituting the moisture prevention protection layer. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a novel display apparatus, a hologram reproducing apparatus and an apparatus that utilizes holograms, using laser irradiation in a wavelength band equal to or longer than 190 nm and shorter than 380 nm. SOLUTION: The display apparatus includes a display device 1190 having a layer constructed by including an alkali halide or alkaline earth halide of which the optical characteristics are changed by laser irradiation of a first wavelength region equal to or longer than 190 nm shorter than 380 nm; a first light source 1191 for emitting a laser beam 1192 of the first wavelength region, in order to write display data in the display device 1190; and a second light source for irradiating the display device 1190, in which the display data are written, with light of a second wavelength region in the range of 380 nm to 800 nm. The display device has a plurality of layers comprising materials having absorption peak wavelengths different from one another, and the first light source and the second light source are constituted by a single light source variable in wavelength. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an ink-jet nozzle manufacturing method, in which nozzle manufacturing process is simple, an ink-jet nozzle, and an ink-jet printer. SOLUTION: An ink-jet recording head manufacturing method comprises at least a step to fill holes with a first polymer resin to a substrate with holes for ink-liquid supply, a step to form a liquid-channel mold member for a nozzle pattern on the substrate with a second polymer resin, a step to temporarily cure a third curable resin after coating the third curable resin on the substrate as a liquid-channel forming material, a step to actually cure the third curable resin after patterning, a step to form a liquid channel by removing the second polymer resin constituting the liquid-channel mold member, a step to form an ink-liquid supply path by removing the first polymer resin constituting a hole filler of the ink-liquid supply path, and a step to form a discharge-energy generation means. The first polymer resin is removed by decomposing it into a volatile monomer by heating. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a manufacturing apparatus of a semiconductor stacked element and a manufacturing method thereof, which shortens a long working time required for joining a stacked element etc. on a semiconductor and applying laser lift off thereto, and reduces a stress applied to the stacked element etc. or thermal/dynamic/chemical load applied thereto. SOLUTION: The manufacturing apparatus of a semiconductor stacked element joins a first semiconductor formed on a substrate for substantially transmitting a laser beam to a second stacked element by a joining means using pressurization and/or heating, and enables the laser lift off. This apparatus is provided with a following furnace. That is, the apparatus is provided with a furnace in which the first semiconductor and the second stacked element are arranged. The furnace is formed of a furnace material substantially transmitting the laser beam, and is configured so that the laser beam from the outside of the furnace is transmitted through the furnace and a substrate of the first semiconductor arranged in the furnace, and that the surface of the first semiconductor is irradiated with the laser beam. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PURPOSE:To provide a high-density recording medium capable of causing a chemical or physical change on a molecular basis under an external cause, comprising a monomolecular film or a built-up film thereof of a metal chelate compound having a C=N bond capable of releasing or incorporating a metal ion or a metal atom through anti-syn isomerization when being irradiated with light, and a liquid phase. CONSTITUTION:The recording medium comprises a two-layer built-up film of chelate complex molecules consisting of syn-form chelate ligand molecules 1 and metal ions (or metal atoms) 3, the film being provided on a glass base 7, which is immersed in a liquid phase 6 contained in a container having an upper surface consisting of a transparent glass plate 5. When the recording medium 4 is irradiated with anti-form isomerizing light 4 consisting of light capable of supplying energy necessary for photo-isomerization, such as UV rays and visible rays, in a pattern, photo-isomerization in the direction of hnu in formula (I) takes place at the irradiated part, whereby the metal ion 3 is released, and rearrangement into an anti-form chelate ligand molecule 2 is caused. Accordingly, a recording medium with information recorded therein can be obtained.
Abstract:
PURPOSE:To obtain a recording medium having high sensitivity and high resolution, by constituting the medium of a monomolecular film or a built-up film thereof a chelate ligand molecules having a specified bond capable of anti-syn isomerization to incorporate metal ion or metal atom when being irradiated with light and a support for the film. CONSTITUTION:The recording medium comprises, for example, a two-layer built-up film of anti-form chelate ligand molecules 1 provided on a glass base 4. The medium is immersed in a liquid phase 5 containing metal ions (or metal atoms) 3 contained in a container having a transparent glass plate 6 as a bottom wall, and is irradiated with syn-form isomerizing light 7 such as UV rays and visible rays in a certain pattern to induce photo-isomerization of formula (1) at the irradiated parts, whereby rearrangement into syn-form chelate ligand molecules takes place, and metal ions 3 are incorporated. When the recording medium thus having incorporated the metal ions 3 therein is taken out and is dried, the reverse isomerization will not occur. Accordingly, the recording medium with information recorded therein is obtained. The information thus recorded is read by irradiating the medium with light.