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    • 2. 发明授权
    • Diagnostic test carrier and methods in which it is used to determine an
analyte
    • 诊断测试载体及其用于测定分析物的方法
    • US6025203A
    • 2000-02-15
    • US897608
    • 1997-07-21
    • Peter VetterHelmut Leininger
    • Peter VetterHelmut Leininger
    • G01N31/22G01N33/52G01N33/48
    • G01N33/525Y10T436/25375Y10T436/255
    • The invention concerns a diagnostic test carrier (1) containing a supporting layer (2) with a detection layer (3) arranged thereon containing the reagents required to determine an analyte in a liquid sample and a network (4) covering the detection layer (3) which is larger than the detection layer (3) and which is attached to the supporting layer (2), wherein the network (4) is a plied knitted fabric the threads of which are highly roughened on the side facing the detection layer (3) whereas the threads on the side of the knitted fabric which face away from the detection layer (3) are relatively smooth as well as the use of such a test carrier to determine an analyte in a liquid and the use of such a knitted fabric as a layer spreading liquid in a diagnostic test carrier. Moreover the invention concerns a method for the determination of an analyte in a liquid sample with the aid of a test carrier according to the invention.
    • 本发明涉及一种诊断测试载体(1),其包含支撑层(2),其上布置有检测层(3),其上包含确定液体样品中的分析物所需的试剂和覆盖检测层(3)的网络(4) ),其大于所述检测层(3)并且附接到所述支撑层(2),其中所述网络(4)是其面线向所述检测层(3)侧的线被高度粗糙化的合股针织物 ),而针对织物的远离检测层(3)的那侧的线相对平滑,以及使用这种测试载体来确定液体中的分析物以及使用这样的针织物作为 在诊断测试载体中铺展液体的层。 此外,本发明涉及借助于根据本发明的测试载体来确定液体样品中的分析物的方法。
    • 3. 发明授权
    • Diagnostic test carrier with a capillary gap
    • 具有毛细管间隙的诊断试验载体
    • US5851838A
    • 1998-12-22
    • US897509
    • 1997-07-21
    • Peter VetterHeinz MachoPeter VogelMichael Fritz
    • Peter VetterHeinz MachoPeter VogelMichael Fritz
    • G01N31/22G01N33/52G01N33/543G01N33/48
    • G01N33/526Y10T436/25375
    • The invention concerns a diagnostic test carrier (1) containing a supporting layer (2) with a detection layer (3) arranged thereon containing reagents required for the determination of an analyte in a liquid sample and an inert layer (4) covering the detection layer (3) wherein the inert layer (4) is arranged at such a distance (5) from the detection layer to enable a capillary active liquid transport between the detection layer and inert layer (3,4), characterized in that the inert layer (4) extends beyond the detection layer and wherein the area (10) that extends beyond the detection layer is attached to the supporting layer (2) in such a way that a continuous capillary active liquid transport between the inert layer and detection layer (4,3) and between the inert layer and supporting layer (4,2) is possible and in addition the inert layer (4) contains several holes (7) in the area of the detection layer (3) through which the sample to be examined and the components contained therein can be applied to the detection layer (3) as well as its use for the determination of an analyte in a liquid.
    • 本发明涉及一种包含支撑层(2)的诊断测试载体(1),其上布置有检测层(3),其上包含测定液体样品中的分析物所需的试剂和覆盖检测层的惰性层(4) (3),其中所述惰性层(4)与所述检测层距离所述距离(5)设置,使得能够在所述检测层与惰性层(3,4)之间进行毛细管活性液体输送,其特征在于,所述惰性层( 4)延伸超过检测层,并且其中延伸超过检测层的区域(10)以使得在惰性层和检测层(4,4)之间的连续毛细管活性液体传输的方式附接到支撑层(2) 3),并且在惰性层和支撑层(4,2)之间,并且另外,惰性层(4)在检测层(3)的区域中包含几个孔(7),待检样品通过该孔 其中所含的组分 可以应用于检测层(3)以及其用于测定液体中的分析物的用途。
    • 8. 发明申请
    • Method to divide upstream timeslots in a time division multiple access system, related line terminator and related network terminator
    • 在时分多址系统,相关线路终端器和相关网络终端器中划分上行时隙的方法
    • US20050220149A1
    • 2005-10-06
    • US11136440
    • 2005-05-25
    • Ingrid Van De VoordeClaire MartinHans SlabbinckPeter Vetter
    • Ingrid Van De VoordeClaire MartinHans SlabbinckPeter Vetter
    • H04L5/22H04J3/22H04L12/70H04L12/43
    • H04J3/22H04L2012/561H04L2012/5615H04L2012/5675
    • A method to divide upstream timeslots in a multiple access system that couples a line terminator (LT) via a tree-like network to a plurality of network terminators (NT1, NT2, . . . , NT16) and that distributes downstream data packets by the line terminator to the plurality of network terminators. The method includes the following steps: inclusion by the line terminator in a downstream data packet at a predefined place of a grant (TEA1; TEA2; . . . ; TEA16) being associated to one of the plurality of network terminators and distributing that downstream packet, reacting by the network terminator upon reception and recognition of its own grant by transmitting an upstream data packet in a predefined upstream timeslot. In the event when the network terminator is a lower order network terminator and the predefined place is a predefined first place, the upstream data packet are transmitted in a lower order timeslot. In the event when the network terminator is a higher order network terminator and the predefined place is a predefined first place, the upstream data packet is transmitted in one of a plurality of higher order timeslots, where the higher order timeslots are subslots of a predefined number of higher order subslots included in the predefined upstream timeslot. In the event when the network terminator is a higher order network terminator and the predefined place is a predefined second place, the upstream data packet is also transmitted in such higher order timeslot.
    • 一种将多个接入系统中的上游时隙划分成多个网络终端器(NT 1,NT 2,...,NT 16)的方法,所述多个接入系统将线路终端器(LT)经由树状网络耦合并分发下行数据 通过线路终端器向多个网络终端器发送数据包。 该方法包括以下步骤:将线路终端器包括在与多个网络终端器之一相关联的授权(TEA 1; TEA 2; ... TEA 16)的预定义位置处的下游数据分组中,并且分发 该下行分组在网络终端器接收到并通过在预定义的上行时隙中发送上游数据分组来识别其自己的授权时进行反应。 如果网络终端是低级网络终端,并且预定义的位置是预定义的第一位置,则上游数据分组以较低阶时隙发送。 在网络终端器是更高级网络终端器并且预定义位置是预定义的第一位置的情况下,上游数据分组在多个高阶时隙中的一个中被发送,其中较高阶时隙是预定数量的子时隙 包括在预定义的上行时隙中的较高阶子槽。 如果网络终端是较高级的网络终端,并且预先定义的位置是预先定义的第二位置,则上游数据包也将在这样较高的时隙中传输。