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How difficult is it to achieve compliance with the quality control requirements of the Clinical and Laboratory Standards Institute's guideline M42-A

机译:要达到临床和实验室标准协会指南M42-A的质量控制要求有多困难

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Data accumulated in a multi-laboratory study of disc diffusion susceptibility data for Escherichia coli ATCC 25922 was analysed with respect to the acceptable ranges for this strain specified in the Clinical and Laboratory Standards Institute's M42-A guidelines. Seven laboratories each generated 60 zone size measurements for discs containing five agents for which acceptable ranges had been published. Of the 35 data sets analysed 37% contained >10% of their measurements outside the acceptable ranges. For each agent, between one and four of the seven data sets obtained contained >10% of the zone sizes outside the acceptable ranges. Only one laboratory obtained data sets that for all agents, contained <10% of the zone sizes outside the acceptable. For the other six, non-compliant data sets were obtained for between one and four of the agents. These data suggest that the adherence to a specified test protocol cannot be assumed to result in the achievement of compliance with the quality control requirements of that protocol. They would further suggest that the need to undertake corrective actions, as specified in M42-A, would be frequently required before a laboratory could claim to be using this protocol and could legitimately apply any cut-off values or breakpoints that are or that might be, associated with it use. As laboratories involved in susceptibility testing of bacteria associated with aquaculture frequently handle only a small number of strains per year, the achievement of compliance with the quality control requirements of a standard protocol might require a disproportionate and unacceptable increase in their work load. The data obtained in this retrospective study also demonstrated that, even if all data sets containing >10% non-compliant measurements were eliminated; significant inter-laboratory variation in mean zone sizes would remain. Laboratory-independent cut-off values will be of value only if inter-laboratory variation in disc diffusion data can be reduced to a minimum. It is argued that the data presented here provides strong grounds for questioning whether, particularly in the case of laboratories with small strain throughputs, inter-laboratory variation can be appropriately resolved by rigorous specifications of test protocols and quality control criteria. Thus, they would rather support the development of cut-off values by the application of normalised resistance interpretation. As the cut-off values generated by this approach are laboratory-specific, they are not influenced by inter-laboratory variation.
机译:针对临床和实验室标准协会M42-A指南中指定的此菌株的可接受范围,对在大肠杆菌ATCC 25922的光盘扩散敏感性数据的多实验室研究中累积的数据进行了分析。七个实验室每个都针对包含五种已经公布了可接受范围的试剂的光盘生成了60个区域大小测量值。在分析的35个数据集中,有37%的测量值超出可接受范围的超过10%。对于每个代理,所获得的七个数据集中的一到四个之间包含的区域大小超出可接受范围的> 10%。只有一个实验室获得了所有试剂的数据集,其中包含小于可接受范围的10%的区域大小。对于其他六个,获得了其中一个到四个代理的不合规数据集。这些数据表明,不能假定遵守特定的测试协议会导致该协议的质量控制要求得到遵守。他们进一步建议,在实验室声称可以使用该协议并且可以合法地应用任何可能存在或可能存在的临界值或断点之前,经常需要采取M42-A中规定的纠正措施。 ,与其关联使用。由于参与与水产养殖有关的细菌敏感性测试的实验室每年通常只处理少量菌株,因此要达到标准规程的质量控制要求,可能会增加其工作量,而且是不可接受的。从这项回顾性研究中获得的数据还表明,即使消除了所有包含> 10%不合格测量值的数据集;平均区域大小的实验室间差异仍然很大。仅当光盘扩散数据的实验室间差异可以减小到最小时,与实验室无关的临界值才有意义。有人争辩说,这里提供的数据为质疑,尤其是在小菌株通量的实验室中,实验室间的差异是否可以通过严格的测试规程和质量控制标准得到适当解决提供了有力的依据。因此,他们宁愿通过归一化电阻解释的应用来支持临界值的发展。由于这种方法产生的临界值是实验室特定的,因此不受实验室间差异的影响。

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