BLOOD TEST KIT AND BLOOD ANALYSIS METHOD
    2.
    发明申请

    公开(公告)号:US20180128845A1

    公开(公告)日:2018-05-10

    申请号:US15862700

    申请日:2018-01-05

    Abstract: An object of the present invention is to provide a blood test kit and a blood analysis method capable of performing a blood test with a small amount of blood at high accuracy by visualizing a volume of blood collection and keeping the volume constant. According to the present invention, a blood test kit including a diluent solution for diluting components of a blood sample; and at least one transparent container for storing the components of the blood sample and the diluent solution, in which at least one constituent component included in the blood test kit is marked with a graduation for measuring the components of the blood sample and a liquid volume of the diluent solution, is provided.

    RADIOLOGICAL IMAGE DETECTION DEVICE
    3.
    发明申请
    RADIOLOGICAL IMAGE DETECTION DEVICE 有权
    放射图像检测装置

    公开(公告)号:US20130313438A1

    公开(公告)日:2013-11-28

    申请号:US13887631

    申请日:2013-05-06

    CPC classification number: G01T1/2006 G01T1/202

    Abstract: A scintillator includes a plurality of columnar crystals. A surface protection film is made of poly-para-xylyene and covers a surface of the scintillator, and the front ends of the columnar crystals penetrate thereinto. A photoelectric conversion panel includes a glass substrate and an element unit formed on the glass substrate. The element unit includes a plurality of pixels, is disposed opposite to the front ends of the columnar crystals, and detects visible light which is emitted from the front ends and is transmitted through the surface protection film in a light receiving region of each pixel so as to be converted into electric charge. To improve an SN ratio, a penetration amount P of the front end into the surface protection film and an area A of the light receiving region of each pixel are set to satisfy a relationship of 0 m−1

    Abstract translation: 闪烁体包括多个柱状晶体。 表面保护膜由聚对二甲苯烯制成,覆盖闪烁体的表面,柱状晶体的前端贯穿其中。 光电转换面板包括玻璃基板和形成在玻璃基板上的元件单元。 元件单元包括多个像素,与柱状晶体的前端相对设置,并且检测从前端发射的可见光,并透过每个像素的光接收区域中的表面保护膜,以便 转换成电荷。 为了提高SN比,将前端进入表面保护膜的穿透量P和各像素的受光区域的面积A设定为满足0m-1

    RADIATION DETECTOR
    4.
    发明申请
    RADIATION DETECTOR 审中-公开
    辐射探测器

    公开(公告)号:US20150255636A1

    公开(公告)日:2015-09-10

    申请号:US14715614

    申请日:2015-05-19

    Abstract: A radiation detector (10) which has a multilayer structure that includes: a first electrode (34); a second electrode (49) that is disposed so as to face the first electrode; a selenium layer (48) that is disposed between the first electrode and the second electrode and contains amorphous selenium; a first blocking organic layer (38) that is adjacent to the selenium layer, between the first electrode and the selenium layer, and that contains a hole transport material having an electron affinity of 3.7 eV or less; and a second blocking organic layer (37) that is adjacent to the selenium layer, between the second electrode and the selenium layer, and that contains an electron transport material having an ionization potential of 5.9 eV or more. This radiation detector (10) has low dark current, excellent durability, and less afterimages.

    Abstract translation: 一种具有多层结构的放射线检测器(10),包括:第一电极(34); 设置成与第一电极相对的第二电极(49); 设置在第一电极和第二电极之间并含有非晶硒的硒层(48); 位于第一电极和硒层之间的与硒层相邻的第一阻挡有机层(38),并且包含电子亲和力为3.7eV以下的空穴传输材料; 以及与第二电极和硒层之间的硒层相邻的第二阻挡有机层(37),并且包含电离势为5.9eV以上的电子传输材料。 该辐射检测器(10)具有低暗电流,优异的耐久性和较少的残影。

    SAMPLE ACQUISITION INFORMATION MANAGEMENT DEVICE, SAMPLE ACQUISITION INFORMATION MANAGEMENT SYSTEM, AND SAMPLE ACQUISITION INFORMATION MANAGEMENT METHOD

    公开(公告)号:US20210010998A1

    公开(公告)日:2021-01-14

    申请号:US17033087

    申请日:2020-09-25

    Abstract: There are provided a sample acquisition information management device, a sample acquisition information management system, and a sample acquisition information management method that allow a subject who is to collect a sample by oneself to reliably perform a sample acquisition operation. Each of the sample acquisition information management device and the sample acquisition information management system includes an image acquisition unit (16) that acquires an image and a video of a sample acquisition operation of a subject using a sample examination kit, an output unit (18) that outputs acquisition means information and operation check information, and a processing unit (20) that determines whether or not the image or the video acquired by the image acquisition unit (16) corresponds to a correct sample acquisition operation and controls display of the acquisition means information and the operation check information. Further, the sample acquisition information management method uses the sample acquisition information management system.

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