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    • 8. 发明授权
    • Hollow fiber treatment apparatus and membrane oxygenator
    • 中空纤维治疗仪和膜式氧合器
    • US5236665A
    • 1993-08-17
    • US971717
    • 1992-11-04
    • Wilfred F. MathewsonPhilip L. Ritger
    • Wilfred F. MathewsonPhilip L. Ritger
    • A61M1/16B01D63/02B01D63/04
    • A61M1/1698A61M1/1625A61M1/1629B01D63/02B01D63/026B01D63/04B01D69/084B01D2313/14Y10S128/03Y10S261/28
    • A hollow fiber membrane fluid treatment apparatus for the transfer of mass or energy through the membrane is disclosed. It is designed particularly, but not only, for use in membrane oxygenators. Hollow fiber membranes extend substantially longitudinally, first inert fibers are spaced between them and also extend substantially longitudinally. Second inert fibers extend generally transverse to the hollow fibers and generally contiguous therewith, so that a first fluid (preferably an oxygen-containing gas) can pass through the hollow fibers and a second fluid (preferably blood) can be passed over their exterior for mass or energy transfer through the membrane. Usually the second inert fibers form a weft and the first inert fibers are spaced one between each two hollow fibers so that the warp consists of alternating strands of hollow fiber and first inert fiber passing over the weft in an oscillating fashion to define at least in part the size of the fluid film to be passed over the hollow fiber membrane for mass or energy transfer through the membrane. The inert fibers are usually biocompatible monofilament polymers which provide precise spacing of the hollow fibers to produce even blood films. Usually, the apparatus is disposed in a blood passageway of a membrane oxygenator, and layered in ribbons sized to fit the blood channel with the first inert fibers spacing the hollow fibers so that the hollow fibers are offset with respect to each other from layer to layer.
    • 公开了一种通过膜转移质量或能量的中空纤维膜流体处理装置。 它特别设计,但不仅用于膜式氧合器。 中空纤维膜基本纵向地延伸,第一惰性纤维在它们之间间隔开并且基本纵向地延伸。 第二惰性纤维通常横贯中空纤维延伸并且通常与其邻接,使得第一流体(优选含氧气体)可以通过中空纤维,并且第二流体(优选血液)可以在其外部通过以进行质量 或通过膜的能量转移。 通常,第二惰性纤维形成纬纱,并且第一惰性纤维在每两个中空纤维之间间隔开,使得经纱由交替的中空纤维股和第一惰性纤维组成,其以振荡方式通过纬纱,以至少部分地限定 要通过中空纤维膜的流体膜的尺寸,以通过膜进行质量或能量传递。 惰性纤维通常是生物相容的单丝聚合物,其提供中空纤维的精确间隔以产生均匀的血液膜。 通常,将该装置设置在膜式氧合器的血液通道中,并分层成尺寸以使血液通道与第一惰性纤维隔开的间隔中空纤维,使得中空纤维相对于彼此偏移一层 。