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    • 1. 发明申请
    • INSULIN PUMP
    • 胰岛素泵
    • WO2013024044A2
    • 2013-02-21
    • PCT/EP2012/065725
    • 2012-08-10
    • GENE ONYX LIMITEDTOUMAZOU, ChristoferGEORGIOU, PantelisVINAS, Pau HerreroSIM, Calvin
    • TOUMAZOU, ChristoferGEORGIOU, PantelisVINAS, Pau Herrero
    • G06F19/00
    • A61M5/1723A61M5/142A61M2005/14208A61M2005/1726A61M2205/52A61M2230/201G06F19/00G06F19/3468
    • The present invention relates to a controller unit and methods for controlling an insulin pump. The controller unit includes a user input that receives a gain factor. The gain factor has been calculated based on historical data in relation to a patient. The controller unit includes a measurement input for receiving data representative of a measured blood glucose level for the patient. Processing logic of the controller unit is configured to apply the measured blood glucose level to a pancreatic beta-cell insulin secretion computational model to predict an insulin output level, apply the gain factor to the predicted insulin output level to determine a patient insulin deficiency level, and calculate a control signal for controlling the insulin output level of the insulin pump based on the patient insulin deficiency level. Methods are provided for optimising the gain factor based on the historical data in relation to the patient.
    • 用于控制胰岛素泵的控制器单元和方法技术领域本发明涉及用于控制胰岛素泵的控制器单元和方法。 控制器单元包括接收增益因子的用户输入。 增益因子是根据与患者相关的历史数据计算出来的。 控制器单元包括用于接收代表患者的测量的血糖水平的数据的测量输入。 控制器单元的处理逻辑被配置为将测量的血糖水平应用于胰腺β-细胞胰岛素分泌计算模型以预测胰岛素输出水平,将增益因子应用于预测的胰岛素输出水平以确定患者胰岛素缺乏水平, 并基于患者胰岛素缺乏水平计算用于控制胰岛素泵的胰岛素输出水平的控制信号。 提供了基于与患者有关的历史数据优化增益因子的方法。
    • 2. 发明申请
    • A GENETIC TEST CONTROL APPARATUS
    • 遗传测试控制装置
    • WO2015059468A1
    • 2015-04-30
    • PCT/GB2014/053147
    • 2014-10-22
    • GENE ONYX LIMITEDGENEU LIMITED
    • WONG, Danny Yuk-KunSIM, Calvin Teck Yong
    • G01N33/487B01L3/00
    • G01N33/4875B01L7/52B01L2200/04B01L2300/1844
    • A test control apparatus (4) for electrically coupling a genetic material analyser (2), such as for DNA sequencing or nucleic acid amplification and assay, and associated test cartridge (3) to a computer system is provided. The apparatus (4) disclosed incorporates all the components of an electronic microchip-based genetic test apparatus within a single enclosure. The apparatus (4) minimizes the number of steps required for a user to run a genetic test and is configured to provide temperature control through heating or cooling to a genetic material analyser (2) and associated test cartridge (3) within the enclosure. The test control apparatus (4) includes as well an ejection mechanism (8) for ejecting the analyser (2) and test cartridge (3) after genetic test completion.
    • 提供了一种用于将遗传物质分析仪(2)如DNA测序或核酸扩增和测定以及相关测试盒(3)电耦合到计算机系统的测试控制装置(4)。 所公开的装置(4)将单个外壳内基于电子微芯片的遗传测试装置的所有组件结合在一起。 设备(4)使用户进行基因测试所需的步骤数量最小化,并且被配置为通过加热或冷却来提供温度控制到遗传材料分析仪(2)和相关联的测试盒(3)。 测试控制装置(4)还包括用于在基因测试完成之后弹出分析器(2)和测试盒(3)的弹出机构(8)。
    • 4. 发明申请
    • ISFET ARRAY FOR DETECTING A SINGLE NUCLEOTIDE POLYMORPHISM
    • 用于检测单核多核苷酸多态性的ISFET阵列
    • WO2013144580A1
    • 2013-10-03
    • PCT/GB2013/050715
    • 2013-03-19
    • GENE ONYX LIMITEDTOUMAZOU, Christofer
    • SOHBATI, MohammadrezaSIM, Calvin
    • G01N27/414C12Q1/68
    • G01N27/26G01N27/4145G01N33/6803
    • Apparatus comprising a module for detecting a single nucleotide polymorphism, SNP, within a genome and comprising: four reaction chambers for receiving a fluid sample, the reaction chambers each containing a different one of the bases A, C, G, T, and a primer; a reference electrode which in use is immersed in said fluid sample; a pair of Ion Sensitive Field Effect Transistors, ISFETs, associated with each reaction chamber, the ISFETs of each pair comprising respective sensing membranes, or a common sensing membrane, exposed within the associated reaction chamber; and a plurality of difference detectors, each difference detector having a pair of inputs coupled respectively to outputs of ISFETs associated with different reaction chambers.
    • 包括用于检测基因组内的单核苷酸多态性(SNP)的模块的装置,包括:用于接收流体样品的四个反应室,所述反应室各自含有不同的碱基A,C,G,T和底物 ; 将使用中的参考电极浸入所述流体样品中; 与每个反应室相关联的一对离子敏感场效应晶体管,ISFET,每对的ISFET包括相关的感测膜或暴露在相关联的反应室内的公共检测膜; 以及多个差分检测器,每个差分检测器具有分别耦合到与不同反应室相关联的ISFET的输出的一对输入。