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    • 1. 发明授权
    • Color image formation method
    • 彩色图像形成方法
    • US06458520B2
    • 2002-10-01
    • US09123418
    • 1998-07-28
    • Takatoshi IshikawaHideaki Nomura
    • Takatoshi IshikawaHideaki Nomura
    • G03C500
    • G03C7/407G03C2007/3043Y10S430/164
    • A color image formation method is disclosed, comprising developing a photographed silver halide color photographic light-sensitive material, photoelectrically reading the image information obtained to convert it into a digital image information, and taking out the digital image information to a printer, wherein the development processing is performed under the condition satisfying at least one of the following conditions (1) to (4): (1) the color developing agent concentration in the color developer is from 0.02 to 0.2 mol/l; (2) the bromide ion concentration in the color developer is from 0.015 to 0.1 mol/l; (3) the color development time is from 45 seconds to 2 minutes; and (4) the color development temperature is from 40 to 55° C.
    • 公开了一种彩色图像形成方法,包括显影所拍摄的卤化银彩色照相感光材料,光电读取获得的图像信息以将其转换为数字图像信息,并将数字图像信息取出到打印机,其中显影 处理是在满足以下条件(1)〜(4)中的至少一个的条件下进行的:( 1)显色剂中的显色剂浓度为0.02〜0.2mol / l;(2)溴离子浓度 在显色剂中为0.015〜0.1mol / l;(3)显色时间为45秒〜2分钟; 和(4)显色温度为40〜55℃。
    • 9. 发明授权
    • Lyophilized compositions containing shingoglycolipid and process for preparing them
    • 含有胶质糖脂的冻干组合物及其制备方法
    • US06417167B1
    • 2002-07-09
    • US09897992
    • 2001-07-05
    • Kazutoshi MaruyamaHideaki NomuraAkihiko Takeuchi
    • Kazutoshi MaruyamaHideaki NomuraAkihiko Takeuchi
    • A61K3170
    • A61K31/7032A61K9/0019A61K9/19A61K47/183A61K47/26A61K47/28
    • The object of the present invention is to improve the solubility of sphingoglycolipids having low solubility in water. Disclosed is a lyophilized composition comprising the &agr;-glycosylceramide represented by the following formula (A) or a salt thereof, a polyoxysorbitan fatty acid ester and disaccharide or monosaccharide, and preferably additional deoxycholic acid or histidine, and a process for preparing it: wherein R1 represents H or OH; X denotes an integer in the range of 7-25; R2 represents any one of the substituents —CH2(CH2)YCH3, —CH(OH)(CH2)YCH3, —CH(OH)(CH2)YCH(CH3)2, —CH═CH(CH2)YCH3, or —CH(OH)(CH2)YCH(CH3)CH2CH3, wherein Y denotes an integer in the range of 5-17; either one of R3 or R4 represents H, and the other represents H, OH, NH2 or NHCOCH3; either one of R5 or R6 represents H, and the other represents OH; either one of R7 or R8 represents H, and the other represents OH; R9 represents H, CH3 or CH2OH.
    • 本发明的目的是改善在水中溶解度低的鞘糖脂的溶解度。 公开了包含下式(A)表示的α-糖基神经酰胺或其盐,多脱氧山梨糖醇脂肪酸酯和二糖或单糖,优选其它脱氧胆酸或组氨酸的冻干组合物及其制备方法,其中R1表示 H或OH; X表示7-25的整数; R2表示取代基-CH2(CH2)YCH3,-CH(OH)(CH2)YCH3,-CH(OH)(CH2)YCH( CH3)2,-CH = CH(CH2)YCH3或-CH(OH)(CH2)YCH(CH3)CH2CH3,其中Y表示5-17的整数; R3或R4中的任一个表示H,另一个表示H,OH,NH 2或NHCOCH 3; R5或R6中的任一个表示H,另一个表示OH; R7或R8中的任一个表示H,另一个表示OH; R9代表H,CH3或CH2OH。
    • 10. 发明授权
    • Developing processing method and apparatus
    • 开发加工方法和装置
    • US06335147B1
    • 2002-01-01
    • US09472884
    • 1999-12-28
    • Hideaki NomuraHideo Iwasaki
    • Hideaki NomuraHideo Iwasaki
    • G03C500
    • G03D13/04Y10S430/164
    • There is disclosed a developing processing method and apparatus in which developing processing is carried out with a developing solution being jetted toward an emulsion surface of a photosensitive material from jetting holes of a blowoff chamber. Only one blowoff chamber is disposed in a developing tank and conveying roller sets are disposed at both sides of the blowoff chamber. The photosensitive material is horizontally conveyed above the blowoff chamber by the conveying roller sets. Due to the number of components of the developing processing tank being thus reduced, the apparatus can be made small in size. Positions where the photosensitive material is nipped by the roller sets are located within a processing solution, and therefore, there is no possibility of the photosensitive material being nipped and conveyed in a state in which outer peripheral surfaces of the rollers are wet non-uniformly with the processing solution. As a result, non-uniform processing is prevented.
    • 公开了一种显影处理方法和装置,其中显影处理是通过从吹出室的喷射孔朝向感光材料的乳剂表面喷射的显影液进行的。 只有一个吹气室设置在显影槽中,并且输送辊组设置在吹出室的两侧。 感光材料通过输送辊组水平地输送在吹出室上方。 由于显影处理槽的部件的数量因此而减少,所以可以使该装置的尺寸小。 感光材料被辊组夹持的位置位于处理溶液中,因此,在辊的外周表面不均匀地湿润的状态下,感光材料不可能被夹持和输送, 处理方案。 结果,防止了不均匀的处理。