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    • 23. 发明授权
    • Particle sizing sampler
    • 颗粒尺寸取样器
    • US4274846A
    • 1981-06-23
    • US13401
    • 1979-02-21
    • Michael L. Smith
    • Michael L. Smith
    • B04C9/00B07B7/00B07B9/02G01N1/22B01D53/30
    • B07B9/02B04C9/00B07B7/00G01N1/2208B04C2009/004G01N2001/2223
    • A particle sizing sampling device to separate particles from a gaseous medium according to particle diameter so as to classify the particles which include one or more stages with a housing defining an impaction chamber therein, an impaction plate in the impaction chamber, at least one impaction nozzle which forces a jet of the gaseous medium against the impaction plate to separate those particles above the effective particle cut diameter of the stage of the sampler by jet impaction and at least one exit passage which extends through the impaction plate with an inlet spaced from the impaction plate a distance greater than the distance between the gas jet stream outlet from the impaction nozzle and the impaction plate.
    • 一种颗粒施胶取样装置,用于根据颗粒直径从气体介质中分离颗粒,以将包括一个或多个阶段的颗粒与限定冲击室的壳体分类,冲击室中的冲击板,至少一个冲击喷嘴 其迫使气态介质的射流抵靠冲击板,以通过喷射冲击将采样器的阶段的有效粒子切割直径上方的那些颗粒分开,并且至少一个出口通道延伸穿过冲击板,入口与入口间隔开 将其距离大于来自冲击喷嘴的气体喷射流出口与撞击板之间的距离。
    • 26. 发明授权
    • Method for purification of uncatalyzed natural fuels from metal ions by means of at least one hemeprotein and use of the at least on hemeprotein
    • 通过至少一种血液蛋白从金属离子中纯化未催化的天然燃料的方法和使用至少一种血液蛋白
    • US08475652B2
    • 2013-07-02
    • US12581608
    • 2009-10-19
    • Jan A. K. PaulMichael L. Smith
    • Jan A. K. PaulMichael L. Smith
    • C10G31/00C10G29/20C10G29/00
    • C10G32/00
    • A method for purification of uncatalyzed natural fuels in liquid state from metal ions by removing at least one compound selected from the group consisting of natural occurring contaminating porphyrins, metalloporphyrins, chlorins and naturally occurring degradations products of these compounds, such as petroporphyrins, containing said metal ions from the fuels. At least one hemeprotein in apo-form selected from the group consisting of globins, peroxidases, pyrrolases and cytochromes having high affinity for porphyrins is added to the fuels. The hemeprotein is mixed with the fuels in such a way that the porphyrins is bounded to the hemeprotein. The hemeprotein with bound contaminating porphyrins is removed so as to obtain purified fuels. The invention relates also to the use of at least one hemeprotein selected from the group consisting of globins, peroxidases, pyrrolases and cytochromes having high affinity for porphyrins for the purification of uncatalyzed natural fuels in liquid state from metal ions.
    • 通过除去至少一种选自天然存在的污染卟啉,金属卟啉,二氢卟酚的化合物和这些化合物的天然存在的降解产物(例如含有所述金属的卟啉)的方法,从金属离子中净化未催化的液态天然燃料的方法 来自燃料的离子。 将至少一种选自球蛋白,过氧化物酶,吡咯烷和对卟啉具有高亲和力的细胞色素组成的组中的载脂蛋白加入到燃料中。 血红蛋白与燃料混合,使得卟啉与血液蛋白结合。 除去结合污染卟啉的血清蛋白,以获得纯化的燃料。 本发明还涉及至少一种选自球蛋白,过氧化物酶,吡咯烷和对卟啉具有高亲和力的细胞色素的血清蛋白的用途,用于从金属离子纯化未催化的液态天然燃料。
    • 30. 发明申请
    • SYSTEMS AND METHODS FOR ORGAN MONITORING
    • 用于组织监测的系统和方法
    • US20080287788A1
    • 2008-11-20
    • US11748425
    • 2007-05-14
    • Charles L. RichardsonMichael L. SmithFranz W. Kellar
    • Charles L. RichardsonMichael L. SmithFranz W. Kellar
    • A61B8/06
    • A61B8/12A61B5/053A61B5/201A61B5/413A61B5/6846A61B8/06A61B8/4472G06Q50/24
    • A method for monitoring a patient's organ includes: inputting an electrical signal into the organ; receiving the electrical signal from the organ; and comparing the received electrical signal to a reference electrical signal to determine whether the patient's organ is functioning properly. The electrical signals may be representative of flow characteristics. In one aspect, a system for monitoring a patient's organ includes a sensor sock having a flexible body adapted to at least partially surround an organ, the sock carrying a plurality of spaced-apart electrodes. In another aspect, the system includes at least one flow transducer adapted to be attached to a blood vessel connected to the organ. A sensor unit is adapted to be implanted into the patient's body and to transmit and receive electrical signals from the electrodes or transducers. A computer may be programmed to compare the received electrical signal to the reference electrical signal.
    • 用于监测患者器官的方法包括:将电信号输入到器官中; 从器官接收电信号; 以及将接收到的电信号与参考电信号进行比较,以确定患者的器官是否正常工作。 电信号可以代表流量特性。 一方面,一种用于监测患者器官的系统包括具有适于至少部分地围绕器官的柔性体的传感器袜子,该袜子承载多个间隔开的电极。 在另一方面,该系统包括适于附接到连接到器官的血管的至少一个流量传感器。 传感器单元适于植入患者体内并从电极或换能器发送和接收电信号。 可以将计算机编程为将接收到的电信号与参考电信号进行比较。