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    • 1. 发明授权
    • Monitoring and control system for blood processing
    • 血液处理监控系统
    • US07422693B2
    • 2008-09-09
    • US10884877
    • 2004-07-01
    • Lee F. CarterJeremy P. KolenbranderJames R. LadtkowJoseph A. ScibonaJeffrey A. StewardChris Fletcher
    • Lee F. CarterJeremy P. KolenbranderJames R. LadtkowJoseph A. ScibonaJeffrey A. StewardChris Fletcher
    • B04B9/10
    • G01N15/042A61M1/3693B04B13/00B04B2013/006G01N15/05G01N2015/047
    • The invention relates generally to methods of monitoring and controlling the processing of blood and blood samples, particularly the separation of blood and blood samples into its components. In one aspect, the invention relates to optical methods, devices and device components for measuring two-dimensional distributions of transmitted light intensities, scattered light intensities or both from a separation chamber of a density centrifuge. In embodiment, two-dimensional distributions of transmitted light intensities, scattered light intensities or both measured by the methods of the present invention comprise images of a separation chamber or component thereof, such as an optical cell of a separation chamber. In another aspect, the present invention relates to multifunctional monitoring and control systems for blood processing, particularly blood processing via density centrifugation. Feedback control systems are provided wherein two-dimensional distributions of transmitted light intensities, scattered light intensities or both are measured, processed in real time and are used as the basis of output signals for controlling blood processing. In another aspect, optical cells and methods of using optical cells for monitoring and control blood processing are provided.
    • 本发明一般涉及监测和控制血液和血液样品的处理,特别是将血液和血液样品分离成其组分的方法。 一方面,本发明涉及用于测量来自密度离心机的分离室的透射光强度,散射光强度或二者的二维分布的光学方法,装置和装置部件。 在实施例中,通过本发明的方法测量的透射光强度,散射光强度或二者的二维分布包括分离室或其分量(诸如分离室的光学单元)的图像。 另一方面,本发明涉及用于血液处理的多功能监测和控制系统,特别是通过密度离心进行血液处理。 提供反馈控制系统,其中测量透射光强度,散射光强度或二者的二维分布,实时处理,并用作控制血液处理的输出信号的基础。 在另一方面,提供了光学单元和使用光学单元来监测和控制血液处理的方法。
    • 7. 发明授权
    • Switch and connector
    • 开关和连接器
    • US5541376A
    • 1996-07-30
    • US218786
    • 1994-03-28
    • James R. LadtkowGlenn A. HornerRichard W. Petersen
    • James R. LadtkowGlenn A. HornerRichard W. Petersen
    • A61B18/12A61B18/00H01H1/58H01H9/06H01H11/00H01R43/00H01H1/00
    • H01H11/0056H01H1/585H01H9/06A61B2018/00928H01H2300/014
    • An insulating switch base with a top, bottom and an edge has openings through the top and one edge for a conductor. A conductive switch lead frame has proximal ends with insulation displacement connectors bent in the openings. A resilient member on the frame has a moveable contact and is conductively associated with a connector. A contoured arm on the frame is distal of, but conductive with, another connector. The arm is spaced from the resilient member as an open contact capable of momentary engagement. A frangible area on each frame is between the resilient member and the arm. Recesses in the top support retain the frame. A slot and barbs on each connector receive one conductor securely in an opening after aligned installation in an opening, seating of the frame in its recess and severing the area over a passage in the base. A membrane attaches over the frame and a molding is applied about the membrane leaving the resilient member open.
    • 具有顶部,底部和边缘的绝缘开关底座具有穿过顶部的开口和用于导体的一个边缘。 导电开关引线框架具有近端,绝缘位移连接器弯曲在开口中。 框架上的弹性构件具有可移动的接触并且与连接器导电地相关联。 框架上的轮廓臂是远端的,但是与另一个连接器导通。 臂与弹性构件间隔开,作为能够瞬时接合的开放接触。 每个框架上的易碎区域在弹性构件和臂之间。 顶部支架中的凹槽保持框架。 每个连接器上的槽和倒钩在对准安装在开口中之后牢固地接纳在开口中的一个导体,将框架放置在其凹部中并且切断基座中的通道上的区域。 膜连接在框架上,并且围绕膜施加模制件,使得弹性构件打开。