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首页> 外文期刊>The Journal of Applied Ecology >Simple study designs in ecology produce inaccurate estimates of biodiversity responses
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Simple study designs in ecology produce inaccurate estimates of biodiversity responses

机译:简单的研究设计在生态产生不准确的估计生物多样性的反应

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1. Monitoring the impacts of anthropogenic threats and interventions to mitigate these threats is key to understanding how to best conserve biodiversity. Ecologists use many different study designs to monitor such impacts. Simpler designs lacking controls (e.g. Before–After (BA) and After) or pre‐impact data (e.g. Control–Impact (CI)) are considered to be less robust than more complex designs (e.g. Before– After Control‐Impact (BACI) or Randomized Controlled Trials (RCTs)). However, we lack quantitative estimates of how much less accurate simpler study designs are in ecology. Understanding this could help prioritize research and weight studies by their design's accuracy in meta‐analysis and evidence assessment. 2. We compared how accurately five study designs estimated the true effect of a simulated environmental impact that caused a step‐change response in a population's density. We derived empirical estimates of several simulation parameters from 47 ecological datasets to ensure our simulations were realistic. We measured design performance by determining the percentage of simulations where: (a) the true effect fell within the 95% Confidence Intervals of effect size estimates, and (b) each design correctly estimated the true effect's direction and magnitude. We also considered how sample size affected their performance. 3. We demonstrated that BACI designs performed: 1.3–1.8 times better than RCTs; 2.9–4.2 times versus BA; 3.2–4.6 times versus CI; and 7.1–10.1 times versus After designs (depending on sample size), when correctly estimating true effect's direction and magnitude to within ±30%. Although BACI designs suffered from low power at small sample sizes, they outperformed other designs for almost all performance measures. Increasing sample size improved BACI design accuracy, but only increased the precision of simpler designs around biased estimates. 4. Synthesis and applications. We suggest that more investment in more robust designs is needed i
机译:1. 和干预以减轻这些威胁了解如何最好地保护的关键生物多样性。设计监控这些影响。缺乏控制(例如之后(BA)后)或提前影响数据(例如Control-Impact(CI))被认为是不如更健壮复杂的设计(例如之前——之后(一部分)或随机对照控制量的影响相关的试验)。多少的不准确的估计更简单的研究在生态设计。帮助优化研究和体重的研究他们在元分析和设计的准确性证据的评估。准确地估计真正的五个研究设计效应的模拟环境的影响一个步骤变化导致人口的响应密度。几个来自47个生态模拟参数数据集,以确保我们的模拟现实的。确定的比例模拟地点:(a)内的真实效果下降95%置信区间效应大小的估计,和(b)每个设计正确估计真实的影响的方向和大小。样本大小如何影响他们的性能。比相关的执行:1.3 - -1.8倍;和7.1与-10.1倍设计(取决于样本大小),当正确估计真正影响的方向和大小在±30%。从低功率小样本大小,他们优于其他几乎所有的设计性能的措施。改进的一部分设计精度,但只会增加简单设计的精度有偏见估计。建议更多的投资在更健壮设计是需要我

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