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Timing and technique impact the effectiveness of road‐based mobile acoustic surveys of bats

机译:时间和技术会影响蝙蝠基于道路的移动声学调查的有效性

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摘要

Mobile acoustic surveys are a common method of surveying bat communities. However, there is a paucity of empirical studies exploring different methods for conducting mobile road surveys of bats. During 2013, we conducted acoustic mobile surveys on three routes in north‐central Indiana, U.S.A., using (1) a standard road survey, (2) a road survey where the vehicle stopped for 1 min at every half mile of the survey route (called a “start‐stop method”), and (3) a road survey with an individual using a bicycle. Linear mixed models with multiple comparison procedures revealed that when all bat passes were analyzed, using a bike to conduct mobile surveys detected significantly more bat passes per unit time compared to other methods. However, incorporating genus‐level comparisons revealed no advantage to using a bike over vehicle‐based methods. We also found that survey method had a significant effect when analyses were limited to those bat passes that could be identified to genus, with the start–stop method generally detecting more identifiable passes than the standard protocol or bike survey. Additionally, we found that significantly more identifiable bat passes (particularly those of the Eptesicus and Lasiurus genera) were detected in surveys conducted immediately following sunset. As governing agencies, particularly in North America, implement vehicle‐based bat monitoring programs, it is important for researchers to understand how variations on protocols influence the inference that can be gained from different monitoring schemes.
机译:移动声学调查是调查蝙蝠群落的一种常用方法。但是,缺乏实证研究,探索了进行蝙蝠流动道路调查的不同方法。 2013年,我们使用(1)标准道路勘测,(2)道路勘测使车辆在勘测路线的每半英里处停了1分钟,在美国印第安纳州中北部的三条路线上进行了声学移动勘测(称为“起停方法”);(3)与个人一起骑自行车进行道路勘测。具有多种比较程序的线性混合模型显示,在分析所有蝙蝠传球时,与其他方法相比,使用自行车进行移动调查发现每单位时间的蝙蝠传球次数显着增加。但是,结合属类比较后发现,与基于车辆的方法相比,使用自行车没有任何优势。我们还发现,当分析仅限于可以识别为属的蝙蝠传球时,调查方法会产生重大影响,起止方法通常比标准协议或自行车调查检测到更多可识别的传球。此外,我们发现在日落之后立即进行的调查中发现了明显更多的可识别蝙蝠传球(尤其是Eptesicus和Lasiurus属的传球)。随着管理机构(尤其是在北美)实施基于车辆的蝙蝠监视程序,对研究人员而言,重要的是要了解协议的变化如何影响可以从不同监视方案中得出的推论。

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