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    • 3. 发明授权
    • Fluid supplying and discharging apparatus for shuttleless weaving loom
    • 用于无梭织机的流体供应和排放装置
    • US4102361A
    • 1978-07-25
    • US745112
    • 1976-11-26
    • Shigenori TanakaAkio Tojo
    • Shigenori TanakaAkio Tojo
    • D03D47/30
    • D03D47/306D03D47/3053
    • In a weaving loom of the shuttleless type having a fluid discharge nozzle adapted to shoot a jet stream of fluid entraining a pick of weft yarn for inserting the weft yarn into the weaving shed of the loom, a fluid supplying and discharging apparatus comprising first valve means alternately opened in synchronism with the weaving cycles of the loom, second valve means for providing communication between the first valve means and a source of fluid under pressure when the loom is in operation, third valve means to be manually operated to open to provide communication between the fluid source and the nozzle through a passageway by-passing the second valve means which is closed when the loom is at rest, and flow restricting means for reducing the fluid pressure to be supplied to the nozzle through the third valve means.
    • 在具有流体排放喷嘴的无梭型织机中,流体排出喷嘴适用于喷射夹带纬纱纱线的流体流,用于将纬纱插入到织机的织造梭口中,流体供给和排出装置包括第一阀装置 与织机的织造周期同步地交替打开;第二阀装置,用于在织机运行时在第一阀装置和压力源之间提供连通,第三阀装置被手动操作以打开以提供 流体源和喷嘴通过旁路通过在织机静止时关闭的第二阀装置的通道,以及用于减小通过第三阀装置供给到喷嘴的流体压力的流量限制装置。
    • 5. 发明授权
    • Planar lighting device, electronic device provided therewith, and liquid-crystal display device
    • 平面照明装置,具备该电子装置的电子装置以及液晶显示装置
    • US09013654B2
    • 2015-04-21
    • US13981129
    • 2012-01-23
    • Shigenori Tanaka
    • Shigenori Tanaka
    • G02F1/1335F21V8/00
    • G02B6/0061G02B6/0046G02B6/0078
    • A light guide plate (2) in the planar illumination device (1) in one example of the present invention has: first connecting surfaces (21) that respectively connect adjacent light-output surfaces; and second connecting surfaces (11) that respectively connect adjacent opposite surfaces. The light guide plate satisfies one of the following conditions: (condition “i”) the opposite surface (10b) of light guide section (2B) is higher in the light-output direction than the light-output surface (20c) of the light guide section (2C); (condition “ii”) the opposite surface of light guide section is at the same height in the light-output direction as the light-output surface of an adjacent light guide section; or (condition “iii”) the opposite surface of the light guide section is lower in the light-output direction than the light-output surface of the adjacent light guide section and the height difference in the light-output direction between the aforementioned opposite surface and the aforementioned light-output surface is at most 35% of the height difference between the light-output surface and opposite surface of each light guide section.
    • 在本发明的一个例子中的平面照明装置(1)中的导光板(2)具有分别连接相邻的光输出面的第一连接面(21) 以及分别连接相邻相对表面的第二连接表面(11)。 导光板满足以下条件之一:导光部(2B)的相反面(10b)的光输出方向上的光(i)的光输出面(20c)高于光 指导部分(2C); (条件“ii”),导光部的相反表面在与相邻导光部的光输出面的光输出方向上相同的高度; 或(导体)的相对表面的光输出方向上比相邻导光部的光输出面低,上述相反面的光输出方向的高度差 并且上述光输出表面是每个导光部分的光输出表面和相对表面之间的高度差的至多35%。
    • 6. 发明申请
    • BACKLIGHT UNIT AND DISPLAY DEVICE
    • 背光单元和显示设备
    • US20140043377A1
    • 2014-02-13
    • US14112327
    • 2012-04-16
    • Shigenori TanakaRyoh ArakiYoshinobu HirayamaToshihiro Yanagi
    • Shigenori TanakaRyoh ArakiYoshinobu HirayamaToshihiro Yanagi
    • F21V8/00G09G5/10
    • G02B6/0091G02B6/0036G02B6/0053G02B6/0061G02B6/0076G02F1/133615G09G5/10
    • A backlight unit (20) includes: light sources (4A, 4B); light guide members (2A, 2B), the light source (4A) being provided to a side surface of the light guide member (2A), the light source (4B) being provided to a side surface of the light guide member (2B), the light sources (4A, 4B) being provided across the light guide members (2A, 2b) in plane view; and an optical path changing member (1) for changing an optical path of light passing through the optical path changing member, the optical path changing member (1) having a light incidence surface (SUF1) for receiving light emitted directly from the light guide member (2A or 2B), and a light exit surface (SUF2) for emitting, directly to a display panel outside of the backlight unit (20), the light thus received via the light incidence surface (SUF1). This configuration makes it possible to large-size a backlight unit without the fear of display quality deterioration, and makes it possible for such a backlight unit to emit light with luminance directivity in different directions.
    • 背光单元(20)包括:光源(4A,4B); 导光构件(2A,2B),光源(4A)设置在导光构件(2A)的侧面,光源(4B)设置在导光构件(2B)的侧面, ,所述光源(4A,4B)在平面图中横跨所述导光部件(2A,2b)设置; 以及用于改变通过光路改变构件的光的光路的光路改变构件(1),具有用于接收从导光构件直接发射的光的光入射表面(SUF1)的光路改变构件(1) (2A或2B),以及用于经由光入射表面(SUF1)直接发射到背光单元(20)外部的显示面板的光出射表面(SUF2)。 该配置使得可以大幅度地降低背光单元,而不用担心显示质量恶化,并且使得这种背光单元能够以不同方向的亮度指向性发光。
    • 8. 发明授权
    • Method of measuring lipoarabinomannan and application thereof
    • 测量脂多巴胺甘露聚糖的方法及其应用
    • US07851179B2
    • 2010-12-14
    • US10584071
    • 2004-12-22
    • Shigenori TanakaShoji Takahashi
    • Shigenori TanakaShoji Takahashi
    • C12Q1/04
    • G01N33/579G01N33/56911G01N2400/50
    • A method for measuring LAM and a method for detecting an acid-fast bacterium, which comprise at least a step of allowing a Limulus reagent to contact with a LAM-containing sample, a method for removing reactivity of LAM with a Limulus reagent, which comprises at least a step of allowing a predetermined substance to coexist with a LAM-containing sample; a method for measuring Et in a LAM-containing sample and a method for detecting an Et-related disease, which each is a method for measuring an endotoxin using a Limulus reagent, which comprises at least a step of removing reactivity of LAM with a Limulus reagent by the above-described removing method; a method for measuring BG in a LAM-containing sample and a method for detecting mycosis, which is a method for measuring BG using a Limulus reagent which comprises at least a step of removing reactivity of LAM with a Limulus reagent by the described-described removing method; and the like.
    • 一种用于测量LAM的方法和一种用于检测耐酸细菌的方法,其包括使鲎试剂与含LAM的样品接触的步骤,用于除去LAM与鲎试剂的反应性的方法,所述方法包括 至少一个允许预定物质与含LAM的样品共存的步骤; 用于测量含LAM的样品中的Et的方法和用于检测Et相关疾病的方法,其各自是使用鲎试剂测量内毒素的方法,该方法至少包括除去LAM与鲎的反应性的步骤 试剂通过上述去除方法; 用于测量含有LAM的样品中的BG的方法和用于检测真菌病的方法,其是使用鲎试剂测量BG的方法,所述方法至少包括通过所述除去的方法除去LAM与鲎试剂的反应性的步骤 方法; 等等。
    • 9. 发明授权
    • Reagent for endotoxin assay and method for endotoxin assay using the same
    • 用于内毒素测定的试剂和使用其的内毒素测定方法
    • US5840510A
    • 1998-11-24
    • US885176
    • 1997-06-30
    • Shigenori TanakaHiroshi TamuraKazuhiro Aita
    • Shigenori TanakaHiroshi TamuraKazuhiro Aita
    • G01N33/543G01N33/579C12Q1/37C12Q1/00C12Q1/34C12Q1/56
    • G01N33/579G01N2333/811Y10S435/967
    • This invention provides (1) a reagent for endotoxin assay which comprises aprotinin and a limulus amebocyte lysate reagent, (2) a kit for endotoxin assay which comprises the limulus amebocyte lysate reagent and a reagent containing aprotinin, (3) a method for assaying endotoxin in a sample using the limulus amebocyte lysate reagent in which aprotinin is added to the lysate reagent and/or the sample, (4) a method for assaying endotoxin in a serine protease-containing sample using the limulus amebocyte lysate reagent in which the sample is allowed to contact with an aprotinin-immobilized insoluble carrier in advance of endotoxin assay, (5) a carrier for pretreating a serine protease-containing sample on which aprotinin is immobilized, (6) a method for inhibiting factor G activation in which aprotinin is added to the limulus amebocyte lysate reagent and (7) a factor G activation inhibitor which comprises aprotinin as an active ingredient. Endotoxin assay can be effected based on the factor C system reaction, without influences of factor G contained in the limulus amebocyte lysate reagent and/or serine proteases contained in samples.
    • 本发明提供(1)含有抑肽酶和鲎变形细胞裂解物试剂的内毒素试剂,(2)包含鲎变形细胞裂解物试剂和含有抑肽酶的试剂的内毒素试剂盒,(3)检测内毒素的方法 在使用鲎变形细胞裂解物试剂的样品中,其中将抑肽酶加入到裂解物试剂和/或样品中,(4)使用鲎变形细胞裂解物试剂测定含丝氨酸蛋白酶样品中的内毒素的方法,其中样品是 在内毒素测定之前允许与抑肽酶固定的不溶性载体接触,(5)用于预处理含有抑肽酶的丝氨酸蛋白酶的样品的载体,(6)抑制因子G激活的方法,其中加入抑肽酶 到鲎变形细胞裂解物试剂和(7)包含抑肽酶作为活性成分的因子G激活抑制剂。 内毒素测定可以基于因子C系统反应进行,而不受样品中包含的鲎变形细胞裂解物试剂和/或丝氨酸蛋白酶中所含因子G的影响。