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    • 5. 发明授权
    • Cup handling subsystem for an automated clinical chemistry analyzer
system
    • 用于自动化临床化学分析仪系统的杯子处理子系统
    • US6117391A
    • 2000-09-12
    • US99739
    • 1998-06-18
    • Frederick E. MootzCarl R. GebauerFrank BakonyiNicolae Dumitrescu
    • Frederick E. MootzCarl R. GebauerFrank BakonyiNicolae Dumitrescu
    • G01N35/02B65G59/06B65G59/10G01N35/04G01N35/00
    • G01N35/04B65G59/062B65G59/105G01N2035/0427G01N2035/0465Y10T436/113332
    • The present invention relates to a cup handling subsystem for an automated clinical chemistry analyzer system which includes a nestable sample cup for holding sample mixtures, a cup dispenser mechanism for holding and dispensing a supply of the cups into a sample shuttle for transporting them, and an incubator for controlling the temperature of the cup and its contents. In one embodiment, the cups include a conical lower portion and a cylindrical upper portion having a top flange, a bottom flange and a groove formed therebetween. An apparatus is provided for holding and dispensing a plurality of such cups including a supply tube for holding the cups in a stack wherein the stack has a bottom-most cup and a next-bottom-most cup located above the bottom-most cup. The apparatus also includes an escapement located at a lower end of the supply tube which includes a disk having an aperture formed therein, a first leaf attached to a top side of the disk and a second leaf attached to a bottom side of the disk. The disk is movable between a first position in which the second leaf engages the bottom flange of the bottom-most cup and a second position in which the first leaf is inserted into the groove of the next-bottom-most cup and engages the top flange of the next-bottom-most cup and in which the second leaf no longer engages the bottom flange of the bottom-most cup. In the second position, the bottom-most cup is free to fall through the aperture formed in the disk.
    • 本发明涉及一种用于自动临床化学分析仪系统的杯子处理子系统,其包括用于保持样品混合物的可嵌套样品杯,用于保持和分配杯子供应到用于运输它们的样品梭中的杯分配器机构,以及 用于控制杯子及其内容物的温度的培养箱。 在一个实施例中,杯包括锥形下部和具有顶部凸缘,底部凸缘和在其间形成的凹槽的圆柱形上部。 提供了一种用于保持和分配多个这样的杯子的装置,其包括用于将杯子保持在堆叠中的供给管,其中所述烟囱具有最底部的杯子和位于最下面的杯子上方的下一个最下面的杯子。 该装置还包括位于供应管的下端处的擒纵机构,其包括具有形成在其中的孔的盘,附接到盘的顶侧的第一叶片和附接到盘的底侧的第二叶片。 盘可以在其中第二叶片接合最底部杯的底部凸缘的第一位置和第二位置之间移动,第二位置中第一叶片插入下一个最下面的杯子的凹槽中并且接合顶部凸缘 的下一个最下面的杯子,其中第二个叶子不再接合最底部的杯子的底部凸缘。 在第二位置,最下面的杯子可自由地落入通过形成在盘中的孔。
    • 6. 发明授权
    • Reagents for determining cations
    • 用于确定阳离子的试剂
    • US5096831A
    • 1992-03-17
    • US699188
    • 1991-05-13
    • Eddy ChapoteauBronislaw P. CzechCarl R. GebauerKoon-Wah LeongAnand Kumar
    • Eddy ChapoteauBronislaw P. CzechCarl R. GebauerKoon-Wah LeongAnand Kumar
    • C07D498/08C07D498/18G01N33/52G01N33/84
    • C07D498/08C07D498/18G01N33/521G01N33/84
    • The invention is reagents and procedures for determining an amount of cations present in a sample, the reagent including one or more chromogenic cryptand compounds of formula I ##STR1## wherein k and j, either same or different, are equal to 1 to about 5;m and n, either same or different, are equal to 0 to about 4;a and e, either same or different, are equal to 0 to about 2;b and d, either same or different, are equal to 0 to about 5;R, either same or different, is hydrogen, lower alkyl, lower alkylidene, lower alkenyl, allyl, or aryl; and ##STR2## wherein X is CH, N or COH; andY includes ##STR3## except that when Q is ##STR4## wherein Y is p-nitrophenylazo, 3-phenylisothiazolyl-5-azo, isothiazolyl-5-azo, thiazolyl-5-azo, 2,4,6-trinitrophenylazo, p-nitrostyryl, p-benzoquinonemonoimino or bis-(p-dimethylaminophenyl)hydroxymethyl, then the following condition cannot be present: that simultaneously b is equal to 0 or 1, d is equal to 0 or 1, j is equal to 1, n is equal to 1 or 2, a is equal to 1, e is equal to 1, k is equal to 1 and m is equal to 2.
    • 本发明是用于测定样品中存在的阳离子量的试剂和方法,该试剂包括一种或多种式I(I)的显色隐窝化合物,其中相同或不同的k和j相同或不同, 约5; m和n相同或不同,等于0至约4; a和e相同或不同,等于0至约2; b和d相同或不同,等于0至约5; R,相同或不同,为氢,低级烷基,低级亚烷基,低级烯基,烯丙基或芳基; 和,其中X是CH,N或COH; 并且Y包括 ,不同之处在于Q是,其中Y是对硝基苯基偶氮,3-苯基异噻唑-5-偶氮,异噻唑-5-偶氮,噻唑基-5 (2,4,6-三硝基苯基偶氮),对硝基苯乙烯基,对苯醌二亚氨基亚氨基或双 - (对二甲基氨基苯基)羟甲基,则不能存在以下条件:同时b等于0或1,d等于 0或1,j等于1,n等于1或2,a等于1,e等于1,k等于1,m等于2。
    • 9. 发明授权
    • Cup handling subsystem for an automated clinical chemistry analyzer system
    • 用于自动化临床化学分析仪系统的杯子处理子系统
    • US06881380B1
    • 2005-04-19
    • US09626066
    • 2000-07-26
    • Frederick E. MootzCarl R. GebauerFrank BakonyiNicolae Dumitrescu
    • Frederick E. MootzCarl R. GebauerFrank BakonyiNicolae Dumitrescu
    • B65G59/06B65G59/10G01N35/04G01N29/00
    • G01N35/04B65G59/062B65G59/105G01N2035/0427G01N2035/0465Y10T436/11Y10T436/113332
    • The present invention relates to a cup handling subsystem for an automated clinical chemistry analyzer system which includes a nestable sample cup for holding sample mixtures, a cup dispenser mechanism for holding and dispensing a supply of the cups into a sample shuttle for transporting them, and an incubator for controlling the temperature of the cup and its contents. In one embodiment, the cups include a conical lower portion and a cylindrical upper portion having a top flange, a bottom flange and a groove formed therebetween. An apparatus is provided for holding and dispensing a plurality of such cups including a supply tube for holding the cups in a stack wherein the stack has a bottom-most cup and a next-bottom-most cup located above the bottom-most cup. The apparatus also includes an escapement located at a lower end of the supply tube which includes a disk having an aperture formed therein, a first leaf attached to a top side of the disk and a second leaf attached to a bottom side of the disk. The disk is movable between a first position in which the second leaf engages the bottom flange of the bottom-most cup and a second position in which the first leaf is inserted into the groove of the next-bottom-most cup and engages the top flange of the next-bottom-most cup and in which the second leaf no longer engages the bottom flange of the bottom-most cup. In the second position, the bottom-most cup is free to fall through the aperture formed in the disk.
    • 本发明涉及一种用于自动临床化学分析仪系统的杯子处理子系统,其包括用于保持样品混合物的可嵌套样品杯,用于保持和分配杯子供应到用于运输它们的样品梭中的杯分配器机构,以及 用于控制杯子及其内容物的温度的培养箱。 在一个实施例中,杯包括锥形下部和具有顶部凸缘,底部凸缘和在其间形成的凹槽的圆柱形上部。 提供了一种用于保持和分配多个这样的杯子的装置,其包括用于将杯子保持在堆叠中的供给管,其中所述烟囱具有最底部的杯子和位于最下面的杯子上方的下一个最下面的杯子。 该装置还包括位于供应管的下端处的擒纵机构,其包括具有形成在其中的孔的盘,附接到盘的顶侧的第一叶片和附接到盘的底侧的第二叶片。 盘可以在其中第二叶片接合最底部杯的底部凸缘的第一位置和第二位置之间移动,第二位置中第一叶片插入下一个最下面的杯子的凹槽中并且接合顶部凸缘 的下一个最下面的杯子,其中第二个叶子不再接合最底部的杯子的底部凸缘。 在第二位置,最下面的杯子可自由地落入通过形成在盘中的孔。
    • 10. 发明授权
    • Sample dilution module with offset mixing chamber
    • 带偏置混合室的样品稀释模块
    • US06426048B1
    • 2002-07-30
    • US09548152
    • 2000-04-13
    • Robert W. EhertsPaul GhersonCarl R. GebauerEvandro S. Denunzio
    • Robert W. EhertsPaul GhersonCarl R. GebauerEvandro S. Denunzio
    • B01L302
    • B01F11/0071B01F11/0074G01N1/38G01N35/08Y10T436/117497Y10T436/118339Y10T436/25Y10T436/25625Y10T436/2575
    • The sample dilution module includes an oil filled aspiration probe and mixing chamber that communicate with each other while the mixing chamber is maintained at an angle of approximately 5 to 45 degrees below a horizontal axis. The aspiration probe is maintained in a vertical orientation. A micro-bubble is aspirated between separate aspirations of test sample and diluent to prevent contact between the sample and diluent in the aspiration probe. The test sample and diluent are then drawn from the vertically oriented aspiration probe into the mixing chamber. After the sample and diluent are in the mixing chamber the micro-bubble of air can migrate away from the test sample and diluent to enable the test sample and diluent to contact each other. Mixing of the test sample and diluent is accomplished by moving the test sample and diluent back and forth in the mixing chamber without physical agitation of the mixing chamber and without any mixing element in the mixing chamber. Such movement is accomplished by alternate suction and vacuum forces imposed on the fluid in the mixing chamber.
    • 样品稀释模块包括充油抽吸探针和混合室,其在混合室保持在水平轴线以下约5至45度的角度的情况下相互连通。 吸气探针保持垂直方向。 在测试样品和稀释剂的单独吸气之间吸入微气泡,以防止抽吸探针中样品和稀释剂之间的接触。 然后将测试样品和稀释剂从垂直取向的吸入探针中抽出到混合室中。 在样品和稀释剂在混合室中之后,空气的微气泡可以离开测试样品和稀释剂迁移,以使测试样品和稀释剂彼此接触。 测试样品和稀释剂的混合是通过在混合室中来回移动测试样品和稀释剂而没有混合室的物理搅拌并且在混合室中没有任何混合元件来实现的。 这种移动通过施加在混合室中的流体上的交替抽吸和真空力来实现。