CN101271058B - 用于指导用户测定体液样品中的分析物的事件驱动方法 - Google Patents

用于指导用户测定体液样品中的分析物的事件驱动方法 Download PDF

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CN101271058B
CN101271058B CN2007101821161A CN200710182116A CN101271058B CN 101271058 B CN101271058 B CN 101271058B CN 2007101821161 A CN2007101821161 A CN 2007101821161A CN 200710182116 A CN200710182116 A CN 200710182116A CN 101271058 B CN101271058 B CN 101271058B
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S·米亚塔
C·安德特
T·R·萨顿
G·安德森
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Abstract

一种用于指导用户使用试剂盒测定体液样品(例如全血样品)中的分析物(例如葡萄糖)的方法包括启动试剂盒的分析计量仪,所述分析计量仪包括基于显示器的教学模块。此外,基于显示器的教学模块包括带有可视显示器的用户界面、储存教学内容的存储器单元和微处理器单元,微处理器单元被构造成用于控制和调节用户界面和存储器单元。此外,储存在存储器单元中的教学内容具有章节,每一章节都含有一个或多个图示试剂盒使用的教学图像。此外,所述用户界面、微处理器单元和存储器单元被可操作性地连接并被构造成用于在可视显示器上给用户显示教学图像的事件驱动的基于章节显示。该方法也包括通过以事件驱动的基于章节的方式显示教学图像而指导用户使用试剂盒。

Description

用于指导用户测定体液样品中的分析物的事件驱动方法
技术领域
本发明通常涉及医疗设备,并且尤其涉及用于测定体液样品中的分析物的试剂盒、设备和方法。
背景技术和发明内容
在医学领域特别感兴趣体液样品中的分析物的测定(例如检测和/或浓度测量)。例如,希望测定体液样品如尿液、血液或间质流体中的葡萄糖、胆固醇、对乙酰氨基酚和/或HbAlc的浓度。这种测定可以通过使用试剂盒来完成,其采用了例如基于光学或电化学技术的分析测试条和相关的计量仪(也称为分析计量仪)。例如,OneTouch
Figure 2007101821161_0
Ultra
Figure 2007101821161_1
全血检测试剂盒,可购自美国Milpitas的LifeScan公司,采用了基于电化学的分析测试条来测定全血样品中的血糖浓度。如果需要的话,这种试剂盒也可以包括穿刺设备。
这种试剂盒的每一部件的正确操作(例如穿刺设备、测试条和计量仪的联合操作)可能是相当复杂的。因此,通常为这种试剂盒的用户提供至少一本试剂盒书面操作手册。根据试剂盒的复杂性,用户在他们理解并记住手册的信息以及能够成功操作试剂盒的每一部件前可能需要投入相当长的时间和精力。
附图说明
在后附的权利要求书中专门列出了本发明的新特征。通过参照以下对列出的利用了本发明原理的解释性实施例以及附图的详细说明,将会更好地理解本发明的特征和优势,其中,相同的数字表示相同的元件,并且其中:
图1为根据本发明一种典型实施例的用于测定体液样品中的分析物的试剂盒的简化方框图;
图2为根据本发明实施例的如可以包含在试剂盒中的分析计量仪和分析测试条的简化前视图;
图3为图2的分析计量仪的简化侧视图;
图4为说明如可以在本发明各种实施例中所采用的教学图像的一种用于事件驱动章节显示的典型构造的简化流程图;
图5A-5G是如可以在本发明的各实施例中所采用的教学的一个用于指导用户准备穿刺设备和刺血针章节的一部分教学图像的简化图示;
图6A-6F是如可以在本发明的各实施例中所采用的教学的一个用于指导用户插入测试条章节的一部分教学图像的简化图示;
图7A和7B是如可以在本发明的各实施例中所采用的教学的一个用于指导用户穿刺手指章节的一部分教学图像的简化图示;
图8A-8C是如可以在本发明的各实施例中所采用的教学的一个用于指导用户定量量取体液样品(即全血样品)章节的一部分教学图像的简化图示;
图9A和9B是如可以在本发明的各实施例中所采用的教学的一个用于指导用户模拟测试章节的一部分教学图像的简化图示;
图10A-10E是如可以在本发明的各实施例中所采用的教学的一个用于指导用户丢弃旧刺血针章节的一部分教学图像的简化图示;
图11A-11C是如可以在本发明的各实施例中所采用的教学的一个用于指导用户丢弃旧测试条章节的一部分教学图像的简化图示;
图12是根据本发明一典型实施例的在指导用户使用用于测定体液样品中的分析物的试剂盒程序中的图示阶段流程图。
具体实施方式
图1为根据本发明一典型实施例的用于测定体液样品(例如,全血样品)中的分析物(如葡萄糖)的试剂盒100的简化方框图。试剂盒100包括分析计量仪102、分析测试条104和穿刺设备106。
分析测试条104被构型成用于将体液样品施加于其上,并用于插入到分析计量仪102中,以便随后测定体液样品中的分析物。分析计量仪102(也简称为“计量仪”)具有基于显示器的教学模块108(包含在图1的虚线中),其包括用户界面110(带有可视显示器112)、存储器单元114和微处理器单元116。
存储器单元114被构型成用于存储教学内容,存储的教学内容具有多个章节。此外,多个章节中的每一个都含有至少一个图示试剂盒使用的教学图像。采用本领域技术人员公知的任何适当技术,包括硬件的数字图像存储和设置技术和/或基于软件的存储和设置技术,可以将教学图像存储并设置到章节中。此外,存储器单元114可以为本领域技术人员公知的任何适当的存储器单元,例如,固态非易失存储器(NVM)单元或基于光盘的存储器单元。
微处理器单元116被构型成用于至少控制和调节用户界面和存储器单元。而且,用户界面110、微处理器单元116和存储器单元114被可操作性地连接并构型成(如图1的双箭头所示)在可视显示器112上给用户显示教学图像的事件驱动章节显示。
显示的教学图像可以采用任何适当的方式,例如包括在本质上为解释性的、图示性的、概略的和/或简化的图像,并因此不需要精确地相应于所有的机械或视觉细节和/或尺寸。然而,这种教学图像对于预期的目的而言是足够准确和详细的,即目的是指导用户使用并操作试剂盒或计量仪以测定体液样品中的分析物。
此外,这种教学图像可以为静止的或动画的(例如,教学图像的动画序列),并且如果需要的话,可以包括与图像有关的文本。教学图像为那些例如举例说明使用试剂盒测定体液样品中的分析物或使用分析计量仪测定体液样品中的分析物时如何正确完成特定操作的图像。这种教学图像的显示也可以作为一种提醒有利地用于促使用户应当预见到和/或完成特定的操作。
一旦了解本发明公开的内容,本领域技术人员将意识到任何适当的部件可以被用于构造用户界面、微处理器单元和存储器单元,以发挥上述功能,包括适当地使用电路、传感器、软件和机械装置,如现有技术中通常已知的。
分析计量仪102可以采用任何适当的分析技术来测定体液样品中的分析物,例如,在可从市场上购买的计量仪所采用的技术。这种技术包括但不局限于基于光学和电化学的技术。一旦了解本发明公开的内容,本领域技术人员将会意识到可以采用常规计量仪的多种方式以实施本发明的实施例。例如,本文描述的微处理器单元、存储器单元和用户界面可以适当地和其它的常规计量仪整合在一起以实施本发明的实施例。
基于显示器的教学模块108的用户界面110可以为任何适当的用户界面,并且除可视显示器112之外,可以包括用户可操作的按钮(未图示在图1中)。可视显示器112例如可以为本领域技术人员公知的任何适当的显示屏,包括液晶显示(LCD)屏。适当的显示屏包括但不局限于那些被构型成用于显示根据本发明的教学图像的显示屏,包括基于静止图形的图像(二者具有和/或不具有相关的文本)以及基于动画图形的图像(二者具有和/或不具有相关的文本)。
图2为根据本发明实施例的如可以包含在试剂盒中的分析计量仪202和分析测试条204(被显示成已插入分析计量仪202)的简化前视图。图3为分析计量仪202的简化侧视图。
参照图2和3,分析计量仪202包括外壳220,以及用于接收分析测试条204的测试条端口连接器222。分析计量仪202也包括分析测试条剔出器按钮224和基于显示器的教学模块(未全部示出),如上相应于图1所描述的。分析计量仪202的基于显示器的教学模块包括带有可视显示器226的用户界面以及用户可操作的教学按钮228。基于显示器的教学模块的其它元件如存储器单元和微处理器单元在图2和3的视图中是看不到的。本领域技术人员将很容易理解分析计量仪202也包括适当的电路和传感器,用于测定已放置到(也称为“定量加样”)分析测试条204上的体液样品中的分析物。
尽管可视显示器226被视为分析计量仪202的基于显示器的教学模块的一个部件,可视显示器226也可以被用于执行其它与操作分析计量仪202有关的功能。例如,可视显示器226可以被用于显示日期、时间和葡萄糖浓度值,如图2所描述的。
用户可操作的教学按钮228被构型成使下压其被视为基于显示器的教学模块的微处理器单元处理的一个事件,用于以事件驱动的基于章节的方式显示教学图像。如下面从图4的描述中将更加清楚的是,一个事件由其上下文即通过其前面的其它事件提供了唯一性。
相应于图4-11C更加详细地描述这种唯一的事件和方式,其中,它们被微处理器单元解释为例如事件驱动的基于章节的显示教学图像。优选地,用户可操作的教学按钮228也可以被构型成使下压其增大在给定的教学章节内显示的教学图像。也应当指出,用户界面的其它用户可操作的按钮可以包含在本发明的实施例中,并被构型成返回到先前在给定的教学章节内显示的教学图像中。
图4为说明如可以在本发明各种实施例中所采用的教学图像的一种用于事件驱动章节显示的典型构造400的简化流程图。构造400为具有七个章节的教学内容解释说明了事件驱动的基于章节的显示教学图像,每一章节都含有至少一个描述如何使用试剂盒测定体液样品(即全血样品)中的分析物(即葡萄糖)的教学图像。本领域技术人员将意识到所述章节为有组织的结构,其可以被限定在存储器单元中,例如通过软件和/或通过将教学图像存储到存储器单元内专用于给定章节的位置处。
图5A-5G是在构造400的步骤406中提到的一个用于指导用户准备穿刺设备和刺血针章节的一部分七个教学图像的简化图示。图6A-6F是在构造400的步骤408中提到的另一个用于指导用户将测试条插入到计量仪中章节的一部分教学图像的简化图示。图7A和7B是在构造400的步骤410中提到的另一个用于指导用户穿刺手指章节的一部分教学图像。
图8A-8C是在构造400的步骤412中提到的另一个用于指导用户定量量取体液样品(即全血样品)章节的一部分教学图像。图9A和9B是在构造400的步骤414中提到的另一个用于指导用户进行模拟测试章节的一部分教学图像。
图10A-10E是在构造400的步骤418中提到的另一个用于指导用户丢弃旧刺血针章节的一部分教学图像。图11A-11C是在构造400的步骤420中提到的再一个用于指导用户丢弃旧测试条章节的一部分教学图像。
如先前所指出的,在本发明实施例中采用的基于显示器的教学内容的用户界面、微处理器单元和存储器单元被可操作性地连接并被构型成事件驱动的基于章节地将教学图像在可视显示器112上显示给用户。在图4的构造400中描述了一种典型的但非限制性的事件驱动的基于章节地显示教学图像,所述基于显示器的教学内容可以为此而被构型。
参照图4和图5A-11C,根据本发明实施例的分析计量仪处于“关”状态(即未启动的,参见构造400中的步骤402)时,可以由用户通过各种方式如下压教学按钮(例如,以上相应于图2和3描述的用户可操作的教学按钮)而启动,通过插入分析测试条(在图4中简称为“测试条”)而自动启动,或者通过其它任何适当的启动方式。
当启动分析计量仪时,显示器驱动的教学模块的微处理器单元确定已出现的唯一事件,并随后与存储器单元和可视显示器一起显示与确定的唯一事件有关的教学章节。例如,如果通过下压教学按钮而实现启动,则在可视显示器上显示预定的打开信息(参见构造400中的步骤404)。这些打开的信息可以包括例如商标图符、当前日期、当前时间和最近测定的葡萄糖浓度。
此外,在图4的构型中,第二次下压教学按钮导致事件驱动的基于章节地显示与准备刺血针有关的教学图像(参见构造400中的步骤406)。这些教学图像通过图5A-5G而举例说明,其中:
图5A为教学图像510的一部分,描述了准备穿刺设备512的步骤,其涉及通过逆时针用力而取走穿刺设备帽514(如图5A的箭头所示);
图5B为教学图像520的一部分,描述了通过将刺血针516安装(在图5B的箭头方向)到已取走穿刺设备帽514的穿刺设备512中而准备穿刺设备512的步骤;
图5C为教学图像530的一部分,描述了通过利用扭转运动取走刺血针帽518而准备穿刺设备的步骤(如图5C的箭头所示);
图5D为教学图像540的一部分,描述了准备穿刺设备的步骤,其突出(采用放射状图像)了通过取走刺血针帽而露出的锋利的刺血针尖521;
图5E为教学图像550的一部分,描述了通过利用顺时针用力再次连接帽而准备穿刺设备的步骤(如图5E的箭头所示);
图5F为教学图像560的一部分,描述了通过顺时针或逆时针用力调节穿刺设备的深度控制机构522而准备穿刺设备的步骤,带有各种深度控制标记524,独立描述在教学图像560的右上角;并且
图5G为教学图像570的一部分,描述了通过用户竖起(即击发)发射装置526而准备穿刺设备的步骤(如图5G的箭头所示)。
可选地,如果通过插入分析测试条而完成启动,则事件驱动的基于章节地显示的与定量量取血液即将全血样品施加到分析测试条有关的教学图像显示给用户(参见构造400中的步骤412)。这些教学图像在图8A-8C中进行举例说明,其中:
图8A为教学图像810的一部分,描述了通过将具有一滴血DB的手指FT出示到靠近插入分析计量仪816中的分析测试条814的样品入口812而定量量取血液样品的步骤;
图8B为教学图像820的一部分,描述了通过将一滴血DB出示到接触样品入口812使分析测试条814的样品接收室818局部填充血液而定量量取血液样品的步骤;并且
图8C为教学图像830的一部分,描述了通过显示充满血液样品BD的样品接收室818而显示定量量取血液样品的步骤。
如图4所描述的,事件驱动的基于章节的显示与定量量取血液即将全血样品施加到分析测试条(参见构造400中的步骤412)有关的教学图像也可以通过在构造400中的任一步骤404、406、408和410后将分析测试条插入分析计量仪中而启动。而且,如果需要的话,图8A、8B和8C描述的图像序列可以以动画序列的方式显示,其描述了血液样品BD通过毛细作用吸入分析测试条814。
本领域技术人员将意识到图5A-11C的教学图像在本质上为例举性的,并且其它适当的教学图像可以用于本发明的实施例中。例如,图8A的虚线框中的教学图像本身可作为解释定量量取血液样品的步骤的教学图像。
另一事件驱动的基于章节的显示教学图像采用了与测试条插入分析计量仪(参见图4的步骤408)有关的一章教学图像(如图6A-6F)。在图4的实施例中,该显示器通过教学按钮在步骤406后被下压的唯一事件而被驱动。这些教学图像在图6A-6F中进行举例说明,其中:
图6A为教学图像610的一部分,描述了将分析测试条814插入分析计量仪816的测试条端口连接器821中的步骤,其中,分析测试条位于分析计量仪816的测试条端口连接器821的外面;
图6B为教学图像620(820)的一部分,描述了插入分析测试条814的步骤,其中,分析测试条814局部插入测试条端口连接器820中;
图6C为教学图像630(830)的一部分,描述了插入分析测试条814的步骤,其中,分析测试条814全部插入测试条端口连接器821中;
图6D为教学图像640(840)的一部分,描述了将分析测试条814插入分析计量仪816的步骤,其通过在分析计量仪816的可视显示器822和分析测试条的相关小瓶900上显示校正码而提示用户核对正确的测试条校正码CC(即图6D的虚线圈内的数字“17”)已经被输入到分析计量仪816中;
图6E为教学图像650的一部分,其提示用户在插入分析测试条期间查阅操作手册,应当有所述需求;并且
图6F为教学图像660的一部分,通过在其可视显示器上显示具有正确的教学图像的分析计量仪而提示用户核对正确插入分析测试条(即来自图8A的虚线框中的图像)。
如果需要的话,图6A-6F可以作为描述分析测试条814插入测试条端口连接器821的有序动画图像显示在可视显示器上。而且,与文本有关的图像可以沿着任何教学图像显示。例如,文本可以显示在教学图像660的上方区域660`和/或分析计量仪816的可视显示器822的上部822`。
另一事件驱动的基于章节地显示教学图像采用了与穿刺手指以获得全血样品(参见图4的步骤410)有关的一章教学图像(如图7A和7B)。在图4的实施例中,这样的显示器由教学按钮在步骤408后被下压的唯一事件而驱动。这些教学图像在图7A和7B中举例说明,其中:
图7A为教学图像710的一部分,描述了通过将手指FT放置到穿刺设备512上方而穿刺手指FT的步骤;并且
图7B为教学图像720的一部分,描述了穿刺手指FT的步骤,其说明了通过用户的拇指UT而启动发射装置526。
另一事件驱动的基于章节地显示教学图像采用了描述模拟显示由分析计量仪(参见构造400中的步骤414)进行的测试的一章教学图像(如图9A和9B)。在图4的实施例中,所述显示器被教学按钮在步骤412后被下压的唯一事件驱动(然而,注意到如果实际的全血样品在步骤412、步骤428(显示实际的递减计数)、426(显示实际的葡萄糖浓度)后被定量量取,并且优选402`(分析计量仪失活)将发生)。这些教学图像在图9A和9B中进行举例说明,其中:
图9A为教学图像910的一部分,描述了显示测试时间递减计数显示器912,其中,检测时间还剩余5秒;并且
图9B为教学图像920的一部分,描述了显示葡萄糖浓度,如分析计量仪所测定的。
由图9A和9B所举例说明的图像章节可以被希望浏览测试时间递减计数和葡萄糖浓度的显示方式的用户使用,未实际将全血样品定量量取到分析测试条上。
更另一事件驱动的基于章节地显示教学图像采用了描述丢弃旧刺血针(参见构造400中的步骤418)的一章教学图像(如图10A-10E)。在图4的实施例中,所述显示器被教学按钮在步骤414后被下压或者教学按钮在步骤426后被下压的唯一事件驱动(然而,注意到如果全血样品在步骤414、步骤428(显示实际的递减计数)、426(显示实际的葡萄糖浓度)后被定量量取,并且优选402`(分析计量仪失活)将发生)。这些教学图像在图10A-10E中进行举例说明,其中:
图10A为教学图像1010的一部分,描述了通过首先逆时针旋转取走穿刺设备帽514而丢弃旧刺血针的步骤(如图10A的箭头所示);
图10B为教学图像1020的一部分,描述了丢弃旧刺血针的步骤,其中,穿刺设备帽514已被取走,露出锋利的尖521;
图10C为教学图像1030的一部分,描述了丢弃旧刺血针的步骤,描述了将刺血针帽518连接到锋利的尖521;
图10D为教学图像1040的一部分,描述了通过从穿刺设备512剔出旧刺血针而丢弃旧刺血针的步骤;并且
图10E为教学图像1050的一部分,描述了通过说明旧刺血针被剔出到危险的废物容器HW中而丢弃旧刺血针的步骤。
仍然另一事件驱动的基于章节地显示教学图像采用了描述丢弃旧分析测试条(参见构造400中的步骤420)的一章教学图像(如图11A-11C)。在图4的实施例中,这样的显示器通过教学按钮在步骤418(然而,注意到如果全血样品在步骤418、步骤428(显示实际的递减计数)、426(显示实际的葡萄糖浓度)后被定量量取,并且优选402`(分析计量仪失活)将发生)后被下压的事件而被驱动。这些教学图像在图11A-11C中进行举例说明,其中:
图11A为教学图像1110的一部分,描述了通过开始推分析计量仪816的剔出器按钮824而丢弃旧测试条的步骤;
图11B为教学图像1120的一部分,描述了通过完全推出剔出器按钮824而丢弃旧测试条的步骤;以及
图11C为教学图像1130的一部分,描述了用于丢弃旧测试条的步骤,解释说明了完全剔出旧分析测试条。
如果全血样品在步骤420、步骤428(显示实际的递减计数)、426(显示实际的葡萄糖浓度)后被定量量取,并且优选402`(分析计量仪失活)将发生。在步骤420后,下压教学按钮将导致分析计量仪确定是否进行实际的或模拟的测试(参见构造400中的步骤422)。如果检测计量仪的结果为模拟测试,则结束信息将被显示(参见构造400中的步骤424)。如果检测结果为实际的测试结果,则随后构造400中的步骤426和402`将发生。
如上所述,根据本发明的每一章教学内容被分配到一个或多个唯一的事件,其可能在使用试剂盒或分析计量仪测定体液样品中的分析物期间发生。唯一事件可以例如为在其它预定步骤之后插入分析测试条到分析计量仪中,或在其它预定步骤之后定量量取(例如,施加)体液样品到分析测试条上。而且,用户应当不确定在进行分析物测定期间如何继续进行,用户可以通过下压用户可操作的教学按钮而启动正确的事件驱动的基于章节地显示的教学图像。由于教学图像为事件驱动并基于章节的,它们与用户在进行测定过程中出现的每一唯一事件后可能遇到的问题相关。
一旦了解本发明公开的内容,本领域技术人员将意识到,除本文描述的那些之外的事件可以被用作事件驱动的基于章节地显示教学图像的基础。例如,事件可以基于分析计量仪识别:i)样品接收室仅局部填充有血液,ii)室温高于约45摄氏度,iii)室温低于约4摄氏度,以及iv)分析计量仪的电池大约完全放电。对于这些事件中的每一个,教学图像可以被设计并分配到教学章节中。
图12是方法1200中的图示阶段的流程图,该方法用于指导用户使用根据本发明一典型实施例的试剂盒测定体液样品(例如,全血样品)中的分析物(如葡萄糖)。方法1200包括启动试剂盒的计量仪,用于测定体液样品中的分析物,如在步骤1210中所列出的。
在步骤1210中启动的计量仪包括基于显示器的教学模块,带有用户界面(其具有可视显示器)、存储器单元和微处理器单元。具有多个章节的教学内容被储存在存储器单元中。此外,多个章节中的每一个都包含至少一个描述使用试剂盒的教学图像。微处理器单元被构型成用于至少控制和调节用户界面和存储器单元。而且,用户界面、微处理器单元和存储器单元被可操作性地连接并被构型成用于事件驱动的基于章节地在可视显示器上向用户显示教学图像。
在方法1200的步骤1220中,通过以事件驱动的基于章节的方式在用户界面的可视显示器上显示教学图像而指导用户使用试剂盒。
一旦了解本发明公开的内容,本领域技术人员将意识到,根据本发明实施例的方法可以包括执行本文描述的根据本发明实施例的试剂盒和分析计量仪的功能特性的步骤。例如,根据本发明的方法的启动步骤可以包括启动相应于本发明的实施例而描述的任何适当的计量仪。
根据本发明的分析计量仪、试剂盒和方法的优势在于它们以使用简单并且可视的方式为用户提供了教学内容(即,事件驱动的基于章节的构型)。当仅特定的一部分教学内容(即一个章节)与用户相关时,事件驱动的特性消除了冗长乏味地查找整个教学或用户操作手册的可能。根据本发明的分析计量仪、试剂盒和方法的事件驱动且基于章节的特性因而提供了向用户仅仅显示相关的教学图像的一种理性方式。
应当理解,本文描述的本发明实施例的各种可选方式可以用于实施本发明。希望随后的权利要求书限定了本发明的范围,并且从而覆盖那些落入这些权利要求的范围内的结构和方法以及它们的等同替换。

Claims (10)

1.一种用于指导用户使用试剂盒测定体液样品中的分析物的方法,该方法包括:
启动用于测定体液样品中的分析物的试剂盒的分析计量仪,所述分析计量仪包括:
基于显示器的教学模块,所述教学模块带有:
包含可视显示器的用户界面;
储存教学内容的存储器单元,所述教学内容具有多个章节,多个章节中的每一个都含有至少一个图示试剂盒使用的教学图像;以及
微处理器单元,被构造成用于至少控制和调节所述用户界面和存储器单元,
其中,所述用户界面、微处理器单元和存储器单元被可操作性地连接并被构造成用于事件驱动的基于章节地将教学图像在可视显示器上显示给用户,以及
通过以事件驱动的基于章节的方式显示教学图像指导用户使用试剂盒。
2.根据权利要求1的方法,其中,所述分析计量仪被构造成用于测定全血样品中的葡萄糖。
3.根据权利要求1的方法,其中,基于显示器的教学模块包括用户可操作的教学按钮,并且其中,指导步骤中事件驱动的基于章节地显示教学图像包括通过用户下压用户可操作的教学按钮的事件而被驱动的至少一个事件驱动的基于章节地显示教学图像。
4.根据权利要求1的方法,其中,指导步骤中事件驱动的基于章节地显示教学图像包括显示动画序列的教学图像。
5.根据权利要求1的方法,其中,所述可视显示器被构造成显示分析物浓度。
6.根据权利要求1的方法,其中,指导步骤中事件驱动的基于章节地显示教学图像为基于分析测试条插入分析计量仪事件。
7.根据权利要求1的方法,其中,指导步骤中事件驱动的基于章节地显示教学图像为基于定量量取体液事件。
8.根据权利要求1的方法,其中,指导步骤中事件驱动的基于章节地显示教学图像包括显示描述定量量取体液的教学图像。
9.根据权利要求1的方法,其中,指导步骤中事件驱动的基于章节地显示教学图像包括显示描述分析测试条插入分析计量仪的教学图像。
10.根据权利要求1的方法,其中,指导步骤中事件驱动的基于章节地显示教学图像包括显示描述采用分析计量仪模拟测定体液样品中的分析物的教学图像。
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EP1897487A1 (en) 2008-03-12
US20080057484A1 (en) 2008-03-06
RU2007133237A (ru) 2009-03-10
ES2336375T3 (es) 2010-04-12
DE602007003532D1 (de) 2010-01-14
CA2600167A1 (en) 2008-03-05
US20080058626A1 (en) 2008-03-06
CN101363793A (zh) 2009-02-11
ATE447881T1 (de) 2009-11-15
RU2530833C2 (ru) 2014-10-20
EP1897488B1 (en) 2009-12-02
EP1897487B1 (en) 2009-11-11
ES2334847T3 (es) 2010-03-16
RU2007133236A (ru) 2009-03-10
BRPI0703520A (pt) 2008-04-22
EP1897488A1 (en) 2008-03-12
HK1115288A1 (en) 2008-11-28
JP2008070361A (ja) 2008-03-27
JP2008111827A (ja) 2008-05-15
BRPI0703444A (pt) 2008-04-22
ATE450196T1 (de) 2009-12-15
JP5139755B2 (ja) 2013-02-06
CA2600166A1 (en) 2008-03-05
DE602007003156D1 (de) 2009-12-24
CN101271058A (zh) 2008-09-24

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