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    • 2. 发明申请
    • Apparatus and method for determining tissue characteristics
    • 用于确定组织特征的装置和方法
    • US20060126064A1
    • 2006-06-15
    • US11351054
    • 2006-02-09
    • Shabbir BambotMark FaupelGlenn Arche
    • Shabbir BambotMark FaupelGlenn Arche
    • G01N21/00
    • A61B5/0071A61B5/0084G01N21/474G01N21/49G01N21/6486G01N2021/6484
    • An apparatus and method embodying the invention include utilizing a device with a limited number of interrogation devices to accomplish a large number of measurements on a target tissue (50). An instrument embodying the invention includes a plurality of detection devices (54) that are arranged in a predetermined pattern on a tissue contacting face of the instrument. The face of the instrument is located adjacent the target tissue (50), and a plurality of tissue characteristic measurement are simultaneously conducted. The detection devices (54) are moved to a new position, preferably without moving the tissue contacting face, and a second plurality of tissue characteristic measurements are simultaneously conducted. By conducting a series of measurements cycles in this manner, the ultimate resolution of the device is increased, while still obtaining a given resolution, which reduces potential cross-talk errors. Further, a plurality of tissue characteristics are simultaneously obtained from locations spaced across the target tissue (50) during each measurement cycle.
    • 体现本发明的装置和方法包括利用具有有限数量的询问装置的装置来在目标组织(50)上完成大量的测量。 实施本发明的仪器包括在仪器的组织接触面上以预定图案布置的多个检测装置(54)。 仪器的表面位于目标组织(50)附近,同时进行多个组织特征测量。 检测装置(54)移动到新的位置,优选地不移动组织接触面,同时进行第二组织特征测量。 通过以这种方式进行一系列测量周期,设备的最终分辨率得到提高,同时仍然获得给定的分辨率,这降低了潜在的串扰误差。 此外,在每个测量周期期间,跨越目标组织(50)间隔开的位置同时获得多个组织特征。
    • 9. 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。