Abstract:
An electrostatic charge image developing toner includes toner particles containing a binder resin and pigment particles and an external additive containing fluorine resin particles, wherein the electrostatic charge image developing toner satisfies the following expression: 2≦A/B≦100, wherein A represents reflectance at an acceptance angle of +30° which is measured when a solid image is formed using the electrostatic charge image developing toner and the solid image is irradiated with incident light at an incidence angle of −45° by the use of a variable-angle photometer, and B represents reflectance at an acceptance angle of −30° which is measured when the solid image is irradiated with incident light at an incidence angle of −45° by the use of the variable-angle photometer.
Abstract translation:静电荷图像显影调色剂包括含有粘合剂树脂和颜料颗粒的调色剂颗粒和含有氟树脂颗粒的外部添加剂,其中静电荷图像显影调色剂满足以下表达式:2≦̸ A / B≦̸ 100其中A表示 使用静电荷图像显影调色剂形成实心图像时测量的+ 30°的接受角度,并且通过使用可变角度光度计以-45°的入射角照射入射光, B表示以可变角度光度计以-45°的入射角照射入射光时测定的接受角为-30°的反射率。
Abstract:
It is an object of the present invention to provide a method and an apparatus capable of noninvasively administrating vaccine through the skin, and thereby making the immune response activate. A drug product according to the present invention is characterized in that the drug product has a support medium, an electrode formed on the support medium and protected partly by an insulating material for avoiding a direct cutaneous contact, a vaccine containing layer for containing a vaccine, wherein the vaccine is an antigen for inducing an immune suppression protein. A method of administrating a vaccine according to the present invention is characterized in that the vaccine is administrated by the iontophoresis using the drug product according to the drug product of the present invention as an electrode. An apparatus for the iontophoresis according to the present invention is characterized in that the drug product according to the present invention is used as an electrode.
Abstract:
A fuel cell is formed by stacking first cell units and second cell units alternately. An inlet buffer and an outlet buffer are formed on a surface of a first metal separator of the first cell unit. Bosses are provided in the inlet buffer and the outlet buffer of the first metal separator. An inlet buffer and an outlet buffer are formed on a surface of the second metal separator of the first cell unit. Continuous guide ridges are formed in the inlet buffer and the outlet buffer of the second metal separator. The bosses and the continuous guide ridges are provided at positions overlapped with each other in the stacking direction.
Abstract:
A human monoclonal antibody against a protein comprising the same or substantially the same amino acid sequence as the amino acid sequence represented by SEQ ID NO: 1 or SEQ ID NO: 3, its partial peptide, or a salt thereof, is useful as an agent for preventing/treating cancer, etc., an apoptosis inducer of cancer cells, a growth inhibitor of cancer cells, a cytotoxic agent against cancer cells through a host defense mechanism mediated by the Fc region of an antibody, and so on.
Abstract translation:针对包含与SEQ ID NO:1或SEQ ID NO:3所示的氨基酸序列相同或基本相同的氨基酸序列的蛋白质的人单克隆抗体,其部分肽或其盐可用作试剂 用于预防/治疗癌症等,癌细胞的细胞凋亡诱导剂,癌细胞的生长抑制剂,通过抗体的Fc区介导的宿主防御机制的抗癌细胞的细胞毒性剂等。
Abstract:
There is provided an electrophotographic toner, which includes a binder resin and a colorant, wherein, with a total intensity (kcps) of all elements detected in the toner due to fluorescent X-ray measurement designated as A and an intensity of nitrogen designated as B, B/A is from about 0.01 to about 0.5, and a ratio of nitrogen measured by X-ray photoelectron spectrometry after ion etching at an accelerating voltage of 10 mV for 180 seconds is from about 0.1 atom % to about 7.5 atom %.
Abstract:
A toner for development of an electrostatic image includes at least a crystalline polyester resin and a colorant. The toner shows a dielectric loss index ∈″ of 0.1 or less at 0.1 Hz and 500 V at 30° C. and 90% RH.
Abstract:
Provided are a toner for developing an electrostatic image comprising a crystalline resin having an ester bond and at least one of a sulfide bond or a disulfide bond in the main-chain, an electrostatic image developer and an image-forming process by using the same, a method of producing the toner for developing electrostatic image, and a resin particle dispersion using the same.
Abstract:
A toner for electrophotography contains a binder resin and a coloring agent, and is characterized in that the binder resin contains a crystalline polyester resin, and a low-molecular compound having at least one of a naphthalene skeleton and a biphenyl skeleton, and the crystalline polyester resin contains 0.5 to 30 construction mole % of an aromatic dicarboxylic acid-derived constitutional component. Further, a developer for electrophotography and an image forming method using the toner for electrophotography are disclosed.
Abstract:
An electrophotographic toner contains a resin, a colorant and a releasing agent. The releasing agent has a solidifying point of from 79° C. to 109° C., and one peak in an endothermic curve measured by a differential scanning calorimeter. A difference between temperature to give a maximum endothermic peak of the releasing agent and an end-set temperature of the releasing agent is within 10° C. A melt viscosity of the releasing agent at 110° C. is in a range of from 4 mPa·s to 9 mPa·s. The releasing agent in one particle of the toner forms 3 or more domains. Domains having a ratio of a major axis to a minor axis which is in a range of from 5 to 15 occupy 90% or more by number based on the total number of domains.
Abstract:
There are some cases that an accuracy is low for reading unique information identifying an individual from an optical disk which comprises a plurality of information layers.The optical disk according to the present invention is an optical disk which comprises a first information layer and a second information layer for holding information so that, by incident light, (1) the information will be reproduced or (2) the information will be recorded and reproduced. The optical disk comprises a BCA area which is formed in the first information layer and in which individual identification information uniquely given to the optical disk is recorded.