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    • 1. 发明申请
    • Arrangement for the local monitoring of functions
    • 安排地方监督职能
    • US20070024411A1
    • 2007-02-01
    • US11407388
    • 2006-04-19
    • Rainer LangOtto NachbauerMichael HelgertRichard Riedel
    • Rainer LangOtto NachbauerMichael HelgertRichard Riedel
    • H01C7/13
    • G01K1/12G01K7/22
    • A local monitoring of functions, in which a sensor is connected to a voltage source via an electrical conductor, in which the sensor is arranged, together with at least one further electrical or electronic component, on a printed circuit board (9) provided with conductor tracks, the sensor being electrically conductively connected, by means of the conductor tracks of the printed circuit board (9), to the component connected to the conductor tracks, and in which the printed circuit board (9) is arranged in a housing (15). In order to supply a secure and immovable hold, the printed circuit board (9) with conductors (7, 8) connected to the conductor tracks is arranged in a holder (17), which is made from a mechanically stable insulating material, accommodates the printed circuit board (9) and has limiting stops (19, 20, 21) for the printed circuit board (9) and laterally protruding latching elements (22, 23). The holder (17) with the printed circuit board (9) inserted is latched in the housing (15), in a prescribed position in the housing (15), by means of the latching elements (22, 23), and the housing (15) is filled with a compound (27) which surrounds the holder (17) and the printed circuit board (9) without any cavities.
    • 将传感器经由电导体连接到传感器的功能的局部监视与其中布置有传感器的至少一个另外的电气或电子部件连接在设置有导体的印刷电路板(9)上 轨道,传感器通过印刷电路板(9)的导体轨道导电连接到连接到导体轨道的部件,并且其中印刷电路板(9)布置在壳体(15)中 )。 为了提供牢固和不可移动的保持,连接到导体轨道的导体(7,8)的印刷电路板(9)布置在由机械稳定的绝缘材料制成的保持器(17)中, 印刷电路板(9),并具有用于印刷电路板(9)和横向突出的锁定元件(22,23)的限制止挡件(19,20,21)。 插入有印刷电路板(9)的保持器(17)通过闩锁元件(22,23)和壳体(15)在壳体(15)中的规定位置处被锁定在壳体(15)中 15)填充有围绕保持器(17)和印刷电路板(9)而没有任何空腔的化合物(27)。
    • 3. 发明授权
    • Compositions of and new uses for N-acylanilinobutyric acids
    • N-酰基酰氨基丁酸的组合物和新用途
    • US4205088A
    • 1980-05-27
    • US785959
    • 1977-04-08
    • Wolfgang SchoetensackRichard Riedel
    • Wolfgang SchoetensackRichard Riedel
    • A61K31/195
    • A61K31/195
    • Pharmaceutically-acceptable compositions containing, as an active ingredient, at least one N-acylanilinobutyric acid have uses unrelated to the choleretic activity suggested in U.S. Pat. No. 3,780,095. Moreover, the further uses generally involve administration of smaller doses than would be required to obtain a choleretic effect.The new uses include: (a) increasing the gastrointestinal enzyme secretion and (b) tonicizing the cardiovascular system. The increase of the gastrointestinal enzyme secretion is applied in the treatment of different diseases, such as treatment of sprue, treatment of indigestion, treatment of acute and chronic pancreatitis, therapy for degenerated intestine mucous membrane, treatment of stomach spasms, treatment of stomach ulcers, treatment of diseases where the application of an antigastrin is indicated. The tonicising of the cardiovascular system is applied in, e.g., increasing the circulation of blood in internal organs, increasing the heart force, treating disturbances in the liver function.
    • 含有作为活性成分的至少一种N-酰基酰氨基丁酸的药学上可接受的组合物具有与美国专利No。 3,780,095。 此外,进一步的用途通常包括施用比获得胆汁效果所需要的更小的剂量。 新用途包括:(a)增加胃肠酶分泌和(b)增强心血管系统。 胃肠酶分泌的增加用于治疗不同的疾病,如注射治疗,消化不良治疗,治疗急性和慢性胰腺炎,治疗退行性肠粘膜,治疗胃痉挛,治疗胃溃疡, 治疗应用抗胃酸素的疾病。 心血管系统的滋养应用于例如增加内脏中血液的循环,增加心脏力,治疗肝功能紊乱。
    • 8. 发明授权
    • Compositions of and new uses for N-acylanilinobutyric acids
    • N-酰基酰氨基丁酸的组合物和新用途
    • US4034111A
    • 1977-07-05
    • US571501
    • 1975-04-25
    • Wolfgang SchoetensackRichard Riedel
    • Wolfgang SchoetensackRichard Riedel
    • A61K31/195
    • A61K31/195
    • Pharmaceutically-acceptable compositions containing, as an active ingredient, at least one N-acylanilinobutyric acid have uses unrelated to the choleretic activity suggested in U.S. Pat. No. 3,780,095. Moreover, the further uses generally involve administration of smaller doses than would be required to obtain a choleretic effect.The new uses include: a) increasing the gastrointestinal enzyme secretion and b) tonicizing the cardiovascular system. The increase of the gastrointestinal enzyme secretion is applied in the treatment of different diseases such as treatment of sprue, treatment of indigestion, treatment of acute and chronic pancreatitis, therapy for degenerated intestine mucous membrane, treatment of stomach spasms, treatment of stomach ulcers, treatment of diseases where the application of an antigastrin is indicated. The tonicizing of the cardiovascular system is applied in, e.g., increasing the circulation of blood in internal organs, increasing the heart force, reating disturbances in the liver function.
    • 含有作为活性成分的至少一种N-酰基酰氨基丁酸的药学上可接受的组合物具有与美国专利No。 3,780,095。 此外,进一步的用途通常包括施用比获得胆汁效果所需要的更小的剂量。
    • 10. 发明授权
    • Method for passively determining the application of a sample fluid on an
analyte strip
    • 用于被动地确定样品流体在分析物条上的应用的方法
    • US6150124A
    • 2000-11-21
    • US315700
    • 1999-05-20
    • Richard Riedel
    • Richard Riedel
    • C12Q1/54G01N21/86C12Q1/00
    • G01N21/8483C12Q1/54Y10S435/97
    • The present invention relates to a method for passively determining the application of a sample fluid on an analyte strip using measurement of ambient light passing through the strip. Sample fluid, such as whole blood, is applied to a reagent matrix and the amount of ambient light transmitted through the matrix is periodically measured both before and after application of the sample fluid. A step increase of the transmitted light reading occurs after hydration of the strip, and the occurrence of this step increase is used to start a predetermined incubation period. At the expiration of the incubation period, another light transmission measurement is made which is indicative of an analyte concentration in the sample fluid (such as glucose concentration in a whole blood sample).
    • 本发明涉及一种通过使用通过条带的环境光的测量被动地确定样品流体在分析物条上的应用的方法。 将样品流体(例如全血)施加到试剂基质上,并且在施加样品流体之前和之后周期性地测量透过基质的环境光的量。 透射光读数的逐步增加发生在条带的水合之后,并且使用该步骤增加的发生来开始预定的潜伏期。 在孵育期满时,进行另一次透射测量,其表示样品流体中的分析物浓度(例如全血样品中的葡萄糖浓度)。