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    • 5. 发明授权
    • Test strip with flared sample receiving chamber
    • 带有扩口样品接收室的测试条
    • US08222044B2
    • 2012-07-17
    • US13297501
    • 2011-11-16
    • Raghbir S. BhullarNigel SurridgeTom FunkePaul Douglas WallingRandall K. Riggles
    • Raghbir S. BhullarNigel SurridgeTom FunkePaul Douglas WallingRandall K. Riggles
    • G01N21/75
    • G01N27/3272Y10T156/1052
    • A test strip with a sample receiving chamber having a novel flared portion that terminates in a sample receiving opening. The flared portion provides a reservoir from which sample fluid can be drawn into the capillary or sample receiving chamber. The wider opening provided by the present invention is easier to “target” with a sample fluid. In preferred embodiments, the hydrophilic reagent layer extends to the dosing end or side of the test strip and further promotes wicking of the sample into the sample receiving chamber and thus reduces dose hesitation. In other preferred embodiments, a tapered dosing end is provided on the test strip in combination with the flared portion, and this combination create a test strip that will draw sample fluid into the sample receiving chamber regardless of where along the dosing edge of the test strip the fluid sample makes contact.
    • 具有样品接收室的测试条具有终止于样品接收开口的新颖的扩口部分。 扩口部分提供储存器,样品流体可从该储存器吸入毛细管或样品接收室。 本发明提供的更宽的开口更容易用样品流体“目标”。 在优选的实施方案中,亲水试剂层延伸到测试条的计量端或侧,并进一步促进样品的芯吸到样品接收室中,从而减少剂量犹豫。 在其它优选实施例中,在测试条上与锥形部分结合地提供锥形剂量端,并且该组合产生测试条,其将样品流体吸入样品接收室,而不管沿着测试条的计量边缘的哪里 流体样品接触。
    • 6. 发明授权
    • Test strip with flared sample receiving chamber
    • 带有扩口样品接收室的测试条
    • US08071030B2
    • 2011-12-06
    • US10872027
    • 2004-06-18
    • Raghbir S. BhullarNigel SurridgeTom FunkePaul Douglas WallingRandall K. Riggles
    • Raghbir S. BhullarNigel SurridgeTom FunkePaul Douglas WallingRandall K. Riggles
    • G01N33/48
    • G01N27/3272Y10T156/1052
    • A test strip with a sample receiving chamber having a novel flared portion that terminates in a sample receiving opening. The flared portion provides a reservoir from which sample fluid can be drawn into the capillary or sample receiving chamber. The wider opening provided by the present invention is easier to “target” with a sample fluid. In preferred embodiments, the hydrophilic reagent layer extends to the dosing end or side of the test strip and further promotes wicking of the sample into the sample receiving chamber and thus reduces dose hesitation. In other preferred embodiments, a tapered dosing end is provided on the test strip in combination with the flared portion, and this combination create a test strip that will draw sample fluid into the sample receiving chamber regardless of where along the dosing edge of the test strip the fluid sample makes contact.
    • 具有样品接收室的测试条具有终止于样品接收开口的新颖的扩口部分。 扩口部分提供储存器,样品流体可从该储存器吸入毛细管或样品接收室。 本发明提供的更宽的开口更容易用样品流体“目标”。 在优选的实施方案中,亲水试剂层延伸到测试条的计量端或侧,并进一步促进样品的芯吸到样品接收室中,从而减少剂量犹豫。 在其它优选实施例中,在测试条上与锥形部分结合地提供锥形剂量端,并且该组合产生测试条,其将样品流体吸入样品接收室,而不管沿着测试条的计量边缘的哪里 流体样品接触。
    • 8. 发明授权
    • Methods and apparatus for decentralized diabetes monitoring
    • 分散糖尿病监测的方法和装置
    • US08775095B2
    • 2014-07-08
    • US12818781
    • 2010-06-18
    • Paul Douglas WallingNigel Surridge
    • Paul Douglas WallingNigel Surridge
    • G01N33/50G06F19/00
    • A61B5/14532A61B5/4842
    • Methods for decentralized monitoring of a progression of a diabetic state of a patient include contemporaneously obtaining an initial set of venous blood samples and an initial set of capillary blood samples after a standardized metabolic challenge from the patient in a centralized setting, wherein the diabetic state is diagnosed using the initial set of venous blood samples and a first test baseline is established by correlating the initial set of capillary blood samples with the initial set of venous blood samples, implementing a therapy, performing decentralized testing after reaching a target event, wherein a status test is obtained from a status set of capillary blood samples obtained from the patient after a subsequent standardized metabolic challenge, and comparing the status test with the first test baseline to determine an effectiveness of the therapy.
    • 用于分散监测患者糖尿病状态进展的方法包括同时获得一组初始静脉血样本和在集中式设置中来自患者的标准化代谢攻击之后的初始毛细血管样本组,其中所述糖尿病状态为 使用初始静脉血样本进行诊断并通过将初始毛细血管样本集与初始静脉血样品集合相关联来实现,实施治疗,在达到目标事件之后进行分散测试,其中状态 在随后的标准化代谢攻击之后,从患者获得的毛细血管血样的状态集获得测试,并将状态测试与第一测试基线进行比较以确定治疗的有效性。
    • 9. 发明申请
    • METHODS AND APPARATUS FOR DECENTRALIZED DIABETES MONITORING
    • 用于分散式糖尿病监测的方法和装置
    • US20110313673A1
    • 2011-12-22
    • US12818781
    • 2010-06-18
    • Paul Douglas WallingNigel Surridge
    • Paul Douglas WallingNigel Surridge
    • G01N33/50G06F19/00
    • A61B5/14532A61B5/4842
    • Methods for decentralized monitoring of a progression of a diabetic state of a patient include contemporaneously obtaining an initial set of venous blood samples and an initial set of capillary blood samples after a standardized metabolic challenge from the patient in a centralized setting, wherein the diabetic state is diagnosed using the initial set of venous blood samples and a first test baseline is established by correlating the initial set of capillary blood samples with the initial set of venous blood samples, implementing a therapy, performing decentralized testing after reaching a target event, wherein a status test is obtained from a status set of capillary blood samples obtained from the patient after a subsequent standardized metabolic challenge, and comparing the status test with the first test baseline to determine an effectiveness of the therapy.
    • 用于分散监测患者糖尿病状态进展的方法包括同时获得一组初始静脉血样本和在集中式设置中来自患者的标准化代谢攻击之后的初始毛细血管样本组,其中所述糖尿病状态为 使用初始静脉血样本进行诊断并通过将初始毛细血管样本集与初始静脉血样品集合相关联来实现,实施治疗,在达到目标事件之后进行分散测试,其中状态 在随后的标准化代谢攻击之后,从患者获得的毛细血管血样的状态集获得测试,并将状态测试与第一测试基线进行比较以确定治疗的有效性。