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    • 81. 发明授权
    • High contrast dot enhancing compositions and photographic products and
methods for their use
    • 高对比度点增强组合物及摄影产品及其使用方法
    • US4882261A
    • 1989-11-21
    • US211980
    • 1988-06-27
    • Yasuhiko KojimaJohn PilotBurton H. Waxman
    • Yasuhiko KojimaJohn PilotBurton H. Waxman
    • G03C1/06G03C5/305
    • G03C5/305G03C1/067
    • Novel dot enhancing compositions are disclosed for use in high contrast negative-working image-forming systems. The compositions include compounds of the general formula: ##STR1## wherein R.sub.1 is an aromatic group, A is a substituted or unsubstituted aromatic nucleus, and the two carboxyl groups specifically depicted in general formula (I) are each bound to a different carbon atom of said aromatic nucleus.The dot enhancing compositions may be incorporated into a silver halide photographic emulsion or into another hydrophilic colloid layer of a photographic material, or into a developing solution or, alternatively, into both. The dot enhancers of the invention improve density and contrast of images formed, as well as providing a harder, smoother, better formed dot for use in letter press and offset lithography.
    • 公开了用于高对比度负型图像形成系统的新型点增强组合物。 组合物包括以下通式的化合物:其中R1是芳族基团,A是取代或未取代的芳香核,通式(I)中具体描述的两个羧基各自与不同的 所述芳香核的碳原子。 点增强组合物可以掺入卤化银照相乳剂或照相材料的另一亲水胶体层中,或并入显影溶液中,或者并入二者。 本发明的点增强剂提高形成的图像的密度和对比度,并且提供用于字母压印和胶版印刷的更硬,更平滑更好的形成点。
    • 82. 发明授权
    • Process for producing a biologically active substance and compositions
containing the same
    • 用于生产生物活性物质的方法和含有它的组合物
    • US4871540A
    • 1989-10-03
    • US887168
    • 1986-07-17
    • Yasuhiko KojimaSadao Tamamura
    • Yasuhiko KojimaSadao Tamamura
    • A61K38/00A61K31/715A61K36/00A61K36/899A61P37/00A61P43/00
    • A61K31/715A61K36/899Y10S514/885
    • A biologically active substance comprising a kind of glycolipid having an elemental analysis (%) of H: 5.20-5.40, C: 42.55-44.17 and N: 3.94-4.08 and a molecular weight of about 30,000-10.sup.6 is obtained by extracting the tissue of a plant of maize (Zea mays Linne) or a variant thereof by extracting the tissue with water and recovering the desired active substance from the resultant extract. This substance is capable of inhibiting the formation of IgE antibodies and promoting the formation of IgG and IgM antibodies, and moreover exhibits various biological activities such as interferon-inducing activity, polyclonal B lymphocite activating activity, mitrogenic activity, adjuvant activity and anti-tumour activity. Thus, this substance is expected to be useful for preventing and treating, for example, aesthema, rhintitis, B-type hepatitis, AIDS and other allergic diseases and immunological insufficiency.
    • 包含一种具有H:5.20-5.40,C:42.55-44.17和N:3.94-4.08的元素分析(%)和分子量约30,000-106的一种糖脂的生物活性物质是通过提取组织 玉米植物(Zea mays Linne)或其变体,通过用水提取组织并从所得提取物中回收所需的活性物质。 该物质能够抑制IgE抗体的形成并促进IgG和IgM抗体的形成,此外还表现出各种生物学活性,例如干扰素诱导活性,多克隆B淋巴细胞活化活性,有丝分裂活性,佐剂活性和抗肿瘤活性 。 因此,预期该物质可用于预防和治疗例如美学,鼻炎,B型肝炎,AIDS和其他过敏性疾病和免疫功能不全。
    • 85. 发明申请
    • FILM FORMING APPARATUS, FILM FORMING METHOD AND STORAGE MEDIUM
    • 电影成型设备,成膜方法和储存介质
    • US20120171365A1
    • 2012-07-05
    • US13395683
    • 2010-08-27
    • Shuji AzumoYasuhiko Kojima
    • Shuji AzumoYasuhiko Kojima
    • B05D5/12C23C16/52C23C16/46
    • C23C16/45561C23C16/16C23C16/52H01L21/28556
    • The film forming apparatus includes a chamber 1; a heater 5 for heating a wafer W within the chamber 1; a film forming source vessel 31, provided outside the chamber 1, for accommodating cobalt carbonyl as a film forming source; a line 43 for transporting gaseous cobalt carbonyl from the film forming source vessel 31 to the chamber 1; an exhaust device 23 for depressurizing and exhausting an inside of the chamber 1; a cobalt carbonyl supply unit 38 for supplying the gaseous cobalt carbonyl from the film forming source vessel 31 to the chamber 1 via the line 43; a temperature controller 60 for controlling temperatures of the film forming source vessel 31 and the line 43 to be below a decomposition starting temperature of the cobalt carbonyl; and a CO gas supply unit 37 for supplying a CO gas into the film forming source vessel 31.
    • 成膜装置包括:室1; 用于加热室1内的晶片W的加热器5; 成膜源容器31,设置在室1的外部,用于容纳羰基钴作为成膜源; 用于将气态钴羰基从成膜源容器31输送到腔室1的管线43; 用于对室1内部进行减压排气的排气装置23; 用于经由管线43将气态钴羰基从成膜源容器31供应到室1的羰基钴供应单元38; 温度控制器60,其用于控制​​成膜源容器31和管线43的温度低于羰基钴的分解开始温度; 以及用于将CO气体供给到成膜源容器31中的CO气体供给单元37。
    • 89. 发明授权
    • Vaporizer and processor
    • 蒸发器和处理器
    • US07827932B2
    • 2010-11-09
    • US11813878
    • 2006-01-13
    • Yasuhiko KojimaTomohisa Hoshino
    • Yasuhiko KojimaTomohisa Hoshino
    • C23C16/448C23F1/00H01L21/306C23C16/06C23C16/22
    • C23C16/4482C23C16/18
    • A vaporizer vaporizes a force-fed liquid source material in a depressurized atmosphere to generate a source gas and discharging the source gas together with a carrier gas. The vaporizer includes a liquid reservoir chamber for temporarily storing the force-fed liquid source material; and a vaporization chamber communicating with the liquid reservoir chamber via a valve port. Further, the vaporizer includes a valve body adapted to sit on a valve seat surrounding the valve port of the liquid reservoir chamber; an actuator for driving the valve body; a carrier gas injection hole formed at a side of the valve body facing the valve port; and a discharge port for discharging the source gas from the vaporization chamber. By virtue of a specific arrangement of the carrier gas injection hole, the liquid source material is prevented from remaining unvaporized at a downstream side of the valve port.
    • 蒸发器在减压气氛中蒸发受力液体源材料以产生源气体并且与载气一起排出源气体。 蒸发器包括用于临时存储受力液体源材料的储液室; 以及通过阀口与液体储存室连通的蒸发室。 此外,蒸发器包括适于坐在围绕液体储存室的阀口的阀座上的阀体; 用于驱动阀体的致动器; 形成在所述阀体的面向所述阀口的一侧的载气喷射孔; 以及用于从气化室排出源气体的排出口。 通过载气注入孔的具体布置,防止液体源材料在阀口的下游侧未蒸发。