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    • 4. 发明申请
    • METHOD FOR EVALUATING THE VITALITY OF CHLOROPHYLL-CONTAINING BIOLOGICAL SAMPLES
    • 程序支持性生物制剂样品活力叶绿素的评价
    • WO2006094748A3
    • 2006-11-02
    • PCT/EP2006002045
    • 2006-03-06
    • INNO CONCEPT GMBHKLOSE EDGARKARASYOVA TATYANALENTZSCH PETERTAUSCHKE MARIONSCHMIDT CHRISTIAN
    • KLOSE EDGARKARASYOVA TATYANALENTZSCH PETERTAUSCHKE MARIONSCHMIDT CHRISTIAN
    • G01N33/483C12M1/34C12Q1/02G01N33/487G01N33/497
    • G01N33/5097G01N2033/4977
    • The invention relates to a method and device for evaluating the vitality of chlorophyll-containing biological samples. The inventive method is characterized by the carrying out of a time response measurement of an oxygen concentration (c) in a direct spatial surrounding area of the biological sample during varying illumination in conjunction with the measurement of a reaction time between the time at which the illumination is changed and the time at which a local extreme value occurs in the time-dependent oxygen concentration. The time response measurement of the oxygen concentration ("c") in the direct spatial surrounding area of the biological sample during varying illumination is carried out with the following steps: measuring a temporal change in the oxygen concentration ("c") during a dark time(generally from the beginning of measurement to t on ) when the illumination is switched off; measuring a delay time ("D") between a switching-on time (t on ) of the illumination and a time (t min ) at which a local extreme value of the oxygen concentration occurs following the switching-on time; measuring a temporal change in the oxygen concentration (generally an increase) during a light time when the illumination is switched on; determining an oxygen concentration saturation value ("M") that ensues when the illumination is switched on, and; carrying out a data processing evaluation of the measured change in the oxygen concentrations.
    • 本发明涉及一种方法,用于评估活力叶绿素轴承生物样本。 的方法,在与照明变化的时间和在氧的时间依赖性浓度的局部极值的时间之间的响应时间的测量连接变化的照明的情况下的特征在于,在所述生物学样品的直接空间环境中的氧浓度(C)的时间过程的测量。 特别地,所述氧浓度的测量的定时“中的生物样品的直接空间环境中具有以下方法步骤变化的照明执行:测量的氧浓度的时间变化的(,, C)(” C“)期间的暗周期(通常是测量开始至t 上)(在关断光,的延迟时间 “D”)的测量(之间的接通时间t )的点亮和时间的(T 分钟 SUB>)的接通时间以下的氧浓度,氧浓度(通常是增加)的时间变化的过程中的光周期与背光源的测量中,将提供一种自调节的的局部极值时的氧浓度的照明饱和度值(“M”) 和D中的测量的变化的数据处理评价 他的氧气浓度。
    • 7. 发明申请
    • APPARATUS AND METHODS FOR POSITIONING AND ANALYZING BIOLOGICAL MEMBRANOUS OBJECTS
    • 用于定位和分析生物膜成分的装置和方法
    • WO0134764A2
    • 2001-05-17
    • PCT/IB0001625
    • 2000-11-08
    • SCHMIDT CHRISTIAN
    • SCHMIDT CHRISTIAN
    • B01L3/00C12M
    • G01N33/48728B01L3/5085
    • Apparatus for positioning a cell or other biological membranous object within a confined compatible fluid compartment of fixed geometry has a surface that has a first zone repulsive to the fluid enclosing a second zone that is attractive to the fluid. The first zone controls the geometry and position of the fluid compartment on the second zone. The second zone has an area of less than about 500 mu m . A method for positioning a membranous object in the second zone on the carrier is also provided. The membranous object is first immersed into the liquid in a volume of no greater than about 100 nl. The liquid having the object immersed therein is loaded onto the surface so that the fluid is restricted to the second zone and the object comes into contact with the second zone.
    • 用于将细胞或其他生物膜状物体定位在固定几何形状的受限相容流体隔室内的装置具有表面,该表面具有排斥流体的第一区域和排斥流体的第二区域。 第一区域控制第二区域上流体室的几何形状和位置。 第二区具有小于约500平方米的面积。 还提供了一种用于将膜状物体定位在载体上的第二区域中的方法。 首先将膜状物体以不大于约100nl的体积浸入液体中。 将物体浸入其中的液体被加载到表面上,使得流体被限制到第二区域并且物体与第二区域接触。
    • 8. 发明申请
    • DEVICE AND METHOD FOR EMPTYING CATALYTIC REACTORS
    • 用于制备催化反应器的装置和方法
    • WO2013045822A4
    • 2013-07-04
    • PCT/FR2012052153
    • 2012-09-26
    • SANESTSCHMIDT CHRISTIAN
    • SCHMIDT CHRISTIAN
    • B01J8/00B01J8/06
    • B01J8/0025B01J8/004B01J8/06B01J2208/00761B08B5/04B08B9/035
    • The invention relates to a device and method for emptying at least one tube (1) of a catalytic reactor (30) consisting of a plurality of tubes (1) appearing to be parallel, which are filled with a catalyst in pellet form (2), comprising a system (4) for suctioning the pellets. Said device is characterized in that said suction system comprises a suction collector (4) arranged so as to plug one of the ends of one or more tubes (1) and provided with at least one pipe (6) for discharging the suctioned pellets (2), a compressed air injection pipe (7) having a length substantially equal to the length of the tubes (1), which is inserted through an opening (8) of the suction collector (4) in each tube (1), each pipe (7) being capable of sliding into the opening (8) thereof, in a direction appearing to be parallel to the axis of the tube (1) and connected to a pressurized air generator (15).
    • 本发明涉及一种用于排空由多个管(1)组成的催化反应器(30)的至少一个管(1)的装置和方法,所述多个管(1)似乎是平行的,其中填充有颗粒形式的催化剂(2) ,包括用于吸入颗粒的系统(4)。 所述装置的特征在于,所述抽吸系统包括抽吸收集器(4),所述抽吸收集器(4)布置成堵塞一个或多个管(1)的一个端部并且设置有至少一个管(6),用于排出所抽吸的颗粒 ),通过每个管(1)中的吸入收集器(4)的开口(8)插入的长度大体上等于管(1)的长度的压缩空气注入管(7),每个管 (7)能够沿着看似平行于管(1)的轴线并连接到加压空气发生器(15)的方向滑入其开口(8)。