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血小板减少范围内自动血小板计数程序的可能性与局限性。

Possibilities and limitations of automated platelet counting procedures in the thrombocytopenic range.

作者信息

Kunz D

机构信息

Institut für Klinische Chemie und Pathobiochemie, Universitätsklinikum der RWTH, Aachen, Germany.

出版信息

Semin Thromb Hemost. 2001 Jun;27(3):229-35. doi: 10.1055/s-2001-15252.

Abstract

The clinical decision to proceed with prophylactic platelet transfusions is widely based on trigger points for platelet counts being equal to 20, 10, or even 5 x 10(9)/L. But an increasing number of publications show evidence that the conventional automated platelet counting methods are unable to provide consistently accurate results in this lower thrombocytopenic range. These measurement errors are mainly associated with the most commonly used impedance principle; optical methods seem to be more precise. The problems of counting imprecision in the low thrombocytopenic range can be avoided with direct or indirect immunological counting methods using monoclonal antibodies or by time-consuming manual procedures. But how should new counting procedures be evaluated? Which method should be used as the "gold standard" for platelet counting? A way out of this apparent dilemma is the application of a statistical procedure as proposed by Gautschi et al. This mathematical model allows a reference method independent evaluation of new methods by calculation of the limits of detection (LD) and limits of quantification (LQ) based on the imprecision profile of the investigated method. Using this evaluation procedure, it can be shown that immunological automated counting methods can provide reliable, sufficient, and prompt platelet counts, especially in the thrombocytopenic range.

摘要

进行预防性血小板输注的临床决策广泛基于血小板计数等于20、10甚至5×10⁹/L的触发点。但越来越多的出版物表明,传统的自动血小板计数方法在这种较低的血小板减少范围内无法始终提供准确的结果。这些测量误差主要与最常用的阻抗原理有关;光学方法似乎更精确。使用单克隆抗体的直接或间接免疫计数方法或通过耗时的手工操作可以避免低血小板减少范围内计数不精确的问题。但是应该如何评估新的计数程序呢?哪种方法应该用作血小板计数的“金标准”?摆脱这一明显困境的方法是应用Gautschi等人提出的统计程序。这种数学模型允许通过基于所研究方法的不精密度曲线计算检测限(LD)和定量限(LQ),对新方法进行独立于参考方法的评估。使用这种评估程序,可以表明免疫自动计数方法可以提供可靠、充分且快速的血小板计数,尤其是在血小板减少范围内。

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