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    • 1. 发明申请
    • SHUTTLE VALVE
    • 开关阀
    • US20070221275A1
    • 2007-09-27
    • US11275646
    • 2006-01-20
    • Joseph AmleyDanny Lincoln
    • Joseph AmleyDanny Lincoln
    • F16K15/00
    • A61M39/223A61M5/14216A61M39/24A61M2039/2473A61M2039/2486A61M2039/2493F16K11/0712F16K11/0716F16K15/147F16K31/1226Y10T137/2544Y10T137/7838
    • A shuttle valve (12,150,230) is provided having a body (44,152,232) defining an interior chamber (46,154,234). The valve (12,150,230) includes inlet (16,158,238), outlet (18,160,240) and common (14,156,236) ports that are coupled to the body (44,152,232). A shuttle (48, 162,242) is translatably disposed within the chamber (46,154,234) between a first position wherein the inlet (16,158,238) and common (14,156,236) ports are fluidicly coupled and the common (14,156,236) and outlet (18,160,240) ports are fluidicly uncoupled, and a second position wherein the outlet (18,160,240) and common (14,156,236) ports are fluidicly coupled and the common (14,156,236) and inlet (16,158,238) ports are fluidicly uncoupled. A first check valve (50,50,50) coupled to the inlet port (16,158,238) to permit fluid flow through the inlet port (16,158,238) into the chamber (46,154,234) and to prevent fluid from discharging therethrough. A second check valve (50,50,50) is coupled to the outlet port (18,160,240) in a manner to permit fluid to discharge from the chamber (46,154,234) through the outlet port (18,160,240) and to prevent fluid from flowing through the outlet port (18,160,240) into the chamber (46,154,234).
    • 梭阀(12,150,230)设置有具有限定内室(46,154,234)的主体(44,152,232)。 阀(12,150,230)包括联接到主体(44,152,232)的入口(16,158,238),出口(18,160,240)和公共端(14,156,236)。 梭子(48,162,242)可在第一位置之间平移地设置在腔室(46,154,234)内,其中入口(16,158,238)和共同(14,156,236)端口流体耦合,并且公共端(14,166,236)和出口(18,160,240)端口流体地分离 ,以及第二位置,其中出口(18,160,240)和共同(14,156,236)端口流体耦合,并且公共端(14,156,236)和入口(16,158,238)端口流体地分离。 第一止回阀(50,50,50),其联接到所述入口端口(16,158,238)以允许流体流过所述入口端口(16,158,238)进入所述腔室(46,154,234)并且防止流体从其中排出。 第二止回阀(50,50,50)以允许流体通过出口(18,160,240)从腔室(46,154,234)排出的方式联接到出口端口(18,160,240),并且防止流体流过出口 端口(18,160,240)进入腔室(46,154,234)。
    • 2. 发明申请
    • Sytem and method for the extraction and monitoring of a biological fluid
    • 用于提取和监测生物流体的系统和方法
    • US20060178599A1
    • 2006-08-10
    • US10515039
    • 2003-05-22
    • Mark FaupelDanny Lincoln
    • Mark FaupelDanny Lincoln
    • A61B5/00
    • A61B5/155A61B5/14514A61B5/150022A61B5/150099A61B5/150213A61B5/150229A61B5/150343A61B5/150358A61B5/150969A61B10/0045A61B2010/008
    • Systems and methods use extraction devices for extracting and monitoring biological fluids of patients. The systems and methods involve creating an opening in the biological tissue of the patient and placing a sampling aperture of the extraction device over the opening. The sampling aperture is defined in a contact surface of the extraction device that is placed into contact with the tissue of the patient. A pump of the extraction device such as a depressible bulb sealed to the body is charged to create a vacuum between the pump through a sampling channel to the sampling aperture, and the vacuum draws the biological fluid from the tissue opening into the sampling channel. An access point is exposed to the sampling channel, and the sample of fluid may be accessed from the access point. The access point may be an extraction opening covered by an access door, and the access door is opened to access the sample. Alternatively, the access point may be electrodes extending into the sampling channel where the electrodes are connectable to a fluid analyzer device.
    • 系统和方法使用提取装置来提取和监测患者的生物液体。 所述系统和方法涉及在患者的生物组织中产生开口并将提取装置的采样孔放置在开口上。 取样孔限定在提取装置的与患者组织接触的接触表面中。 对诸如密封到身体的可压迫的灯泡的提取装置的泵进行充电以在泵通过采样通道到采样孔之间产生真空,并且真空将生物流体从组织开口吸入采样通道。 接入点暴露于采样通道,可以从接入点访问流体样本。 接入点可以是由进入门覆盖的提取开口,并且访问门被打开以访问样本。 或者,接入点可以是延伸到采样通道中的电极,其中电极可连接到流体分析器装置。
    • 6. 发明申请
    • Vacuum device for substance extraction
    • 物质提取真空装置
    • US20050037483A1
    • 2005-02-17
    • US10934229
    • 2004-09-03
    • Danny LincolnKrishna KumarMark Samuels
    • Danny LincolnKrishna KumarMark Samuels
    • F04B17/00F04B43/00F04B43/04F04B45/047C12M1/34F04B35/04
    • F04B45/047F04B17/00F04B43/0009F04B43/043
    • A vacuum device and method for extraction of a substance from a fluid source, the vacuum device including an upper member that may be selectively, and operably, connected to a lower member. The upper member defines a bottom opening, and has a vacuum pump in fluid communication with the bottom opening. The vacuum pump is selectively coupled to an energy source. The lower member defines an inner cavity, a first opening, and a second opening, the inner cavity in communication with the first opening and the second opening. An elastic membrane defining an interior cavity is disposed in the inner cavity and is coupled to the first opening of the lower member. In use, the second opening of the lower member in placed in selective fluid communication with the fluid source, and the lower member is selectively coupled to the upper member such that the vacuum pump is electrically coupled to the energy source and the bottom opening of the upper member is in sealed contact with the first opening of the lower member so that the vacuum pump is in fluid communication with the interior cavity defined by the elastic membrane.
    • 一种用于从流体源提取物质的真空装置和方法,所述真空装置包括可以选择性地且可操作地连接到下部构件的上部构件。 上部构件限定底部开口,并且具有与底部开口流体连通的真空泵。 真空泵选择性地耦合到能量源。 下部构件限定内腔,第一开口和第二开口,内腔与第一开口和第二开口连通。 限定内腔的弹性膜设置在内腔中并且联接到下构件的第一开口。 在使用中,下部构件的第二开口放置成与流体源选择性地流体连通,并且下部构件选择性地联接到上部构件,使得真空泵电耦合到能量源和底部开口 上部构件与下部构件的第一开口密封接触,使得真空泵与由弹性膜限定的内部空腔流体连通。
    • 7. 发明授权
    • Method for protecting a fiber optic probe and the resulting fiber optic probe
    • 保护光纤探针和所得光纤探针的方法
    • US06400875B1
    • 2002-06-04
    • US09431180
    • 1999-11-01
    • Danny LincolnTim HarrellDavid FarquharJoe PappKrishna Kumar
    • Danny LincolnTim HarrellDavid FarquharJoe PappKrishna Kumar
    • G02B604
    • G02B6/04A61B2018/2211
    • A fiber optic probe is provided that includes a housing, at least one optical fiber disposed within the housing, one end of each of the at least one optical fiber being disposed adjacent an opening in the housing forming a probe face, a binding agent that binds the at least one optical fiber within the housing, and a protective coating sealingly covering the probe face to prevent contaminants from contacting the at least optical fiber. A method for protecting a fiber optic probe having a housing, at least one optical fiber disposed within the housing, one end of each of the at least one optical fiber being disposed adjacent an opening in the housing forming a probe face, and a binding agent that binds the at least one optical fiber within the housing, includes polishing the probe face to create a substantially flat probe face, cleaning the probe face after polishing the probe face and sealing the probe face with a protective coating.
    • 提供了一种光纤探针,其包括壳体,设置在壳体内的至少一个光纤,所述至少一个光纤中的每一个的一端设置在壳体中形成探针面的开口附近,结合剂结合 所述壳体内的所述至少一个光纤和保护涂层密封地覆盖所述探针面以防止污染物接触所述至少光纤。 一种用于保护具有壳体的光纤探针的方法,至少一个设置在所述壳体内的光纤,所述至少一个光纤中的每一个的一端邻近所述壳体中的开口设置,形成探针面,以及粘合剂 其将所述至少一个光纤结合在所述壳体内,包括抛光所述探针面以产生基本平坦的探针面,在抛光所述探针面之后清洁所述探针面并用保护涂层密封所述探针面。