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    • 82. 发明授权
    • Disposable blood pressure cuff
    • 一次性血压袖带
    • US5678558A
    • 1997-10-21
    • US556050
    • 1995-11-13
    • David E. Johnson
    • David E. Johnson
    • A61B5/022
    • A61B5/02233
    • A disposable blood pressure cuff is made from a composite of a non-stretchable paper component and an elastic thermoplastic material component. The paper component provides the necessary outer circumferential strength for the cuff so that it will not stretch outwardly when it is inflated. The thermoplastic layer provides an inwardly expandable surface for contacting a limb of the patient which the cuff encircles. A tape tab is included to releasably attach the cuff to the patient's limb. The tab is provided with a visible indicium which indicates the proper degree of overlap of the ends of the cuff when the latter is affixed to the patient's limb. The cuff may be used by only one patient, and may be discarded when the patient is finished with it. The cuff is provided with a one-piece slip luer fitting which includes a flange disposed within the chamber, and an annular tube projecting through an outer component of the cuff. The slip luer flange is adhered to the outer cuff component, and the annular tube includes a tapered part which is operative to provide a sealed joint with a complementary luer fitting on a blood pressure monitor inflation/deflation line, thereby eliminating the necessity of a separate hose component on the cuff.
    • 一次性血压袖带由不可拉伸的纸组分和弹性热塑性材料组分的复合材料制成。 纸组件为袖带提供必要的外周强度,使其在膨胀时不会向外伸展。 热塑性层提供用于接触袖带环绕的患者的肢体的可向内扩张的表面。 包括一个带状舌片以将袖带可释放地附接到病人的肢体上。 该标签上设置有一个可见的标记,指示当后者贴在患者肢体上时袖带的两端的适当程度的重叠。 袖带可以仅由一个患者使用,并且当患者完成时可以丢弃袖带。 袖带设置有一体式滑动路厄配件,其包括设置在室内的凸缘和通过袖带的外部部件突出的环形管。 滑动路厄法兰粘附到外箍部件上,并且环形管包括锥形部分,该锥形部分可操作以在血压监测器充气/放气线上提供具有互补鲁棒接头的密封接头,从而消除了单独的 软管组件在袖口上。
    • 84. 发明授权
    • Metering system for compressible fluids
    • 可压缩流体计量系统
    • US5605252A
    • 1997-02-25
    • US419473
    • 1995-04-10
    • David P. OwenWayne C. JonesDavid E. JohnsonGeorge V. Nagle
    • David P. OwenWayne C. JonesDavid E. JohnsonGeorge V. Nagle
    • B01F15/04G01F11/02G05D11/13B67D5/30
    • G01F11/029B01F15/04G05D11/132
    • Apparatus and method for accurately and efficiently metering at least one compressible fluid and at least one incompressible fluid for mixing, whereby pressure and therefore density is regulated with regard to each compressible fluid, and volume is regulated with regard to each compressible fluid as well as each incompressible fluid. Compressible fluids in particular are metered more accurately because the mass of each fluid is used as the variable measurement standard, both the density and the volume of each fluid being maintained at controlled and predictable levels. For some embodiments, synchronously interdependent, hydraulically independent regulation of the flow rates of the fluids serves not only to optimize metering accuracy but metering efficiency as well by accounting for relative compressibilities and viscosities between or among the fluids, therby permitting minimization of lag times between or among the flows of the fluids, in this way furthering integration of the individual metering processes of all the fluids into one coordinated system whereby the flows of all the fluids are mutually and/or concurrently controlled.
    • 用于精确和有效地计量至少一种可压缩流体和至少一种不可压缩流体用于混合的装置和方法,由此对于每种可压缩流体压力和因此密度进行调节,并且关于每个可压缩流体以及每个可压缩流体调节体积 不可压缩流体。 特别是可压缩流体更准确地计量,因为每个流体的质量用作可变测量标准,每个流体的密度和体积都保持在受控和可预测的水平。 对于一些实施例,流体的流速的同步相互依赖的液压独立调节不仅可以通过考虑流体之间或之间的相对压缩性和粘度来优化计量精度而是计量效率, 在流体流中,以这种方式将所有流体的各个计量过程整合到一个协调系统中,由此所有流体的流动相互和/或同时控制。