首页> 外文OA文献 >Using simulation techniques to investigate methods to determine resistance of helminths to anthelmintic treatment
【2h】

Using simulation techniques to investigate methods to determine resistance of helminths to anthelmintic treatment

机译:使用模拟技术研究确定蠕虫对驱虫药的抵抗力的方法

摘要

The widespread and increasing resistance of internal parasites to anthelmintic control is a serious problem for the Australian sheep and wool industry. As part of control programmes, laboratories use the Faecal Egg Count Reduction Test (FECRT) to determine resistance to anthelmintics. It is important to have confidence in the measure of resistance, not only for the producer planning a drenching programme but also for companies investigating the efficacy of their products. The determination of resistance and corresponding confidence limits as given in anthelmintic efficacy guidelines of the Standing Committee on Agriculture (SCA) is based on a number of assumptions. ududThis study evaluated the appropriateness of these assumptions for typical data and compared the effectiveness of the standard FECRT procedure with the effectiveness of alternative procedures. Several sets of historical experimental data from sheep and goats were analysed to determine that a negative binomial distribution was a more appropriate distribution to describe pre-treatment helminth egg counts in faeces than a normal distribution. Simulated egg counts for control animals were generated stochastically from negative binomial distributions and those for treated animals from negative binomial and binomial distributions. ududThree methods for determining resistance when percent reduction is based on arithmetic means were applied. The first was that advocated in the SCA guidelines, the second similar to the first but basing the variance estimates on negative binomial distributions, and the third using Wadley’s method with the distribution of the response variate assumed negative binomial and a logit link transformation. These were also compared with a fourth method recommended by the International Co-operation on Harmonisation of Technical Requirements for Registration of Veterinary Medicinal Products (VICH) programme, in which percent reduction is based on the geometric means. A wide selection of parameters was investigated and for each set 1000 simulations run. Percent reduction and confidence limits were then calculated for the methods, together with the number of times in each set of 1000 simulations the theoretical percent reduction fell within the estimated confidence limits and the number of times resistance would have been said to occur. These simulations provide the basis for setting conditions under which the methods could be recommended. ududThe authors show that given the distribution of helminth egg counts found in Queensland flocks, the method based on arithmetic not geometric means should be used and suggest that resistance be redefined as occurring when the upper level of percent reduction is less than 95%. At least ten animals per group are required in most circumstances, though even 20 may be insufficient where effectiveness of the product is close to the cut off point for defining resistance.
机译:内部寄生虫对驱虫药的广泛耐药性是澳大利亚绵羊和羊毛工业的一个严重问题。作为控制计划的一部分,实验室使用减少粪便卵数测试(FECRT)来确定对驱虫药的抵抗力。对抵抗力的测量方法有信心是很重要的,这不仅对于生产商计划了浸水程序,而且对于调查其产品功效的公司也很重要。农业常务委员会(SCA)的驱虫效力指南中给出的抗药性和相应置信度的确定基于许多假设。 ud ud这项研究评估了这些假设对典型数据的适用性,并将标准FECRT程序的有效性与替代程序的有效性进行了比较。分析了绵羊和山羊的几组历史实验数据,以确定负二项式分布比正态分布更适合描述粪便中治疗前蠕虫卵的计数。对照动物的模拟卵数是从负二项分布随机产生的,模拟处理的卵是从负二项分布和二项分布随机产生的。 ud ud应用了三种基于算术平均值的减量确定阻力的方法。第一个是SCA指南中提倡的,第二个类似于第一个,但将方差估计基于负二项式分布,而第三个使用Wadley方法,响应变量的分布假定为负二项式和logit链接变换。这些方法还与国际兽药产品注册技术要求协调合作计划(VICH)推荐的第四种方法进行了比较,在该方法中,减少的百分比基于几何平均值。研究了各种各样的参数,并为每组进行了1000次仿真。然后计算出该方法的减少百分比和置信度极限,以及每组1000次模拟中的次数,理论减少百分比在估计的置信度极限之内,并且据说发生电阻的次数。这些模拟为设置条件提供了基础,在这些条件下可以推荐这些方法。 ud ud作者表明,鉴于昆士兰羊群中蠕虫卵计数的分布,应使用基于算术而不是几何均值的方法,并建议将抗性重新定义为当降低百分比的上限水平低于95%时发生。在大多数情况下,每组至少需要十只动物,但如果产品的有效性接近定义抗药性的临界点,甚至可能不足二十只。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号