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    • 1. 发明申请
    • A SYSTEM AND A METHOD FOR COLLECTING BATCHES OF FOOD
    • 收集食品批次的系统和方法
    • WO2017125111A1
    • 2017-07-27
    • PCT/DK2017/050009
    • 2017-01-17
    • SCANDINAVIAN MICRO BIODEVICES APSCHR. HANSEN A/S
    • KRING, OleOVERBY, BentHELLER, MartinBAU-MADSEN, Niels KristianMOGENSEN, Lars
    • G06Q10/08
    • G06Q10/0631G06Q10/047G06Q10/0832G06Q10/0838
    • The invention comprises a system for collecting batches of food from food suppliers. The system comprises at least one movable collecting unit with an associated data receiver; a food parameter determining system for determining at least one batch parameter of a collected food batch; a database system for storing food supplier data comprising at least one food collecting address identification for each food supplier, food receiver data comprising at least one food delivering address identification for each of at least one food receiver station and reference data comprising threshold data for said at least one batch parameter or derived parameter correlated to said batch parameter. The system further comprises a server system coupled to said database system and being in data communication with said data receiver. The server system receives at least data from the database system and batch parameter data and calculates logistic plan(s) for the movable collecting unit(s).
    • 本发明包括用于从食品供应商收集批次食物的系统。 该系统包括至少一个具有相关数据接收器的可移动收集单元; 食物参数确定系统,用于确定收集的食物批料的至少一个批次参数; 用于存储食物供应者数据的数据库系统,所述数据库系统包括用于每个食物供应者的至少一个食物收集地址标识符,食物接收者数据包括用于至少一个食物接收者站点中的每一个的至少一个食物传送地址标识符和包括所述at 至少一个批量参数或与所述批量参数相关的派生参数。 该系统还包括耦合到所述数据库系统并与所述数据接收器进行数据通信的服务器系统。 服务器系统至少接收来自数据库系统的数据和批量参数数据并计算可移动收集单元的物流计划。
    • 3. 发明申请
    • A MICROFLUIDIC DEVICE AND A KIT FOR PERFORMING A TEST
    • 微型设备和用于执行测试的工具包
    • WO2008086809A1
    • 2008-07-24
    • PCT/DK2008/050002
    • 2008-01-04
    • SCANDINAVIAN MICRO BIODEVICES ApSKRING, OleJONSMANN, JacquesBAU-MADSEN, Niels Kristian
    • KRING, OleJONSMANN, JacquesBAU-MADSEN, Niels Kristian
    • B01L3/00G01N33/543
    • B01L3/502746B01L2300/0636B01L2300/0825B01L2300/089B01L2300/165B01L2400/0406B01L2400/0688B01L2400/088
    • The invention relates to a microfluidic device comprising a flow path with a first and a second opposite solid flow path surfaces (1) and a liquid inlet for said flow path. In the microfluid device at least one solid side wall free section (2) of the flow path (1) is provided by the first and the second opposite solid flow path surfaces in at least said one solid side wall free section (2) and a pair of borderlines (3, 31) defines the edges of the side wall free section (2) of said flow path (1). The pair of borderlines is placed on the first surface of a first and a second opposite surfaces to define the flow path surfaces of said first and second opposite surfaces. The pair of borderlines (3, 31) is defined by an abrupt change of the first and/or the second surface, e.g. in the form of an abrupt change of surface tension and/or an abrupt change of distance between the first and second surfaces beyond and adjacent to the borderlines (3, 31). For example the borderlines (3, 31) may be arranged with a sharp edge with an angle between a flow path surface in the side wall free flow path section and the respective surfaces beyond and, adjacent to the borderlines which is less than 135 degrees, such as about 90 degrees. The flow path comprises an immobilized capture reagent (7) downstream from or in said solid side wall free flow path section (2), said immobilized capture reagent (7) preferably being immobilized onto at least one of said first and second opposite solid flow path surfaces.
    • 本发明涉及一种微流体装置,其包括具有第一和第二相对的固体流动路径表面(1)的流动路径和用于所述流动路径的液体入口。 在微流体装置中,流路(1)的至少一个固体侧壁自由部分(2)由至少所述一个实心侧壁自由部分(2)中的第一和第二相对的固体流动通道表面提供,并且 一对边界线(3,31)限定了所述流动路径(1)的侧壁自由部分(2)的边缘。 一对边界线放置在第一和第二相对表面的第一表面上,以限定所述第一和第二相对表面的流动路径表面。 一对边界线(3,31)由第一和/或第二表面的突然变化限定,例如, 其形式是表面张力的突然变化和/或第一和第二表面之间的距离和边界线(3,31)之间的距离的突然变化。 例如,边界线(3,31)可以布置成具有在侧壁自由流动路径部分中的流动路径表面与超过小于135度的边界线的相邻表面之间的角度的尖锐边缘, 如约90度。 流动路径包括在所述固体侧壁自由流动路段部分(2)中或所述固体侧壁自由流动路段部分(2)下游的固定的捕获试剂(7),所述固定化捕获试剂(7)优选固定在所述第一和第二相对固体流动路径中的至少一个 表面。
    • 5. 发明公开
    • A MICROFLUIDIC DETECTION SYSTEM AND A MICROFLUIDIC CARTRIDGE
    • 微流控检测系统和微流控芯片
    • EP3158317A1
    • 2017-04-26
    • EP15810324.2
    • 2015-06-15
    • Scandinavian Micro Biodevices ApS
    • BAU-MADSEN, Niels KristianNIELSEN, Lars BueHELLER, MartinKRING, OleORDEIG, OlgaOVERBY, Bent
    • G01N21/00B01L3/00G01N35/00
    • A microfluidic cartridge includes first and second sides and at least one flow channel and an inlet to the flow channel(s) for feeding a liquid sample, the flow channel(s) include a plurality of first optical detection sites. A detector assembly includes a slot for inserting the microfluidic cartridge and a first fixed light source with a beam path and an optical reader for reading out optical signals from at least one of the first optical detection site(s). When the microfluidic cartridge is inserted to a first predetermined position into the slot, one of the first optical detection sites of the microfluidic cartridge is positioned in the beam path of the first light source, and when the cartridge is inserted to a second predetermined position into the slot, another one of the first optical detection sites of the microfluidic cartridge is positioned in the beam path of the first light source.
    • 本发明涉及包括微流体盒和检测器组件的微流体检测系统。 微流体盒包括第一侧和第二侧以及至少一个流动通道和通向用于供给液体样本的流动通道的入口,流动通道包括多个第一光学检测位点。 检测器组件包括用于插入微流体盒的槽和具有光路的第一固定光源以及用于从至少一个所述第一光检测位置读出光信号的光读取器。 检测器组件和微流体盒构造成使得当所述微流体盒被插入到所述槽中的第一预定位置时,微流体盒的第一光学检测位置之一位于第一光源的光路中,并且 当所述盒被插入到所述槽中的第二预定位置时,微流体盒的第一光学检测位置中的另一个位于第一光源的光路中。