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Response to ‘On the importance of understanding physiology when estimating energetics in cetaceans’

机译:回应“关于在估计鲸类动物的能量学时理解生理学的重要性”

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We are grateful for the interest in our paper by two eminent physiologists and hope this response to their comments will clarify the objectives of our paper. The analysis in Fahlman et al. (2016) was not intended to provide an accurate method to estimate field metabolic rate (FMR) in large mysticetes; the objective was to measure the dynamic changes in physiology associated with recovery from exercise and show that they are important to consider when estimating FMR. While static averages can provide useful estimates of FMR for a variety of situations, these need to be appropriately selected. For example, we illustrate that it is not possible to use selected average values chosen from excised tissues or resting animals (as in Blix and Folkow, 1995) to provide meaningful estimates of FMR for animals at different activities (i.e. the dolphins in our study). Our study highlights the importance of temporal variation in physiological models: the Blix and Folkow (1995) estimates rely on the assumption that only breathing frequency (fR) changes with activity, while we argue that both the tidal volume (VT) and mixed lung O2 content also vary with activity and recovery from a dive (Ridgway et al., 1969). Including this variation in all three parameters reduces temporal uncertainty in the same conceptual model (see Eqn. 1 in Fahlman et al., 2016).
机译:我们感谢两位杰出的生理学家对我们论文的关注,并希望对他们的评论的这种回应将阐明我们论文的目标。 Fahlman等人的分析。 (2016)并非旨在提供一种准确的方法来估计大型神秘菌的田间代谢率(FMR);目的是测量与运动恢复有关的生理动态变化,并表明在估算FMR时必须考虑这些变化。虽然静态平均可以为各种情况提供FMR有用的估计,适当地选择这些需要。例如,我们说明,不可能使用从切除的组织或静息动物中选择的平均值(如Blix和Folkow,1995年)来提供有意义的动物不同活动时FMR的估算值(例如,我们研究中的海豚) 。我们的研究强调了生理模型中时间变化的重要性:Blix和Folkow(1995)的估计基于以下假设:仅呼吸频率(fR)随活动而变化,而我们认为潮气量(VT)和混合肺O2潜水的内容也随活动和潜水而有所不同(Ridgway等,1969)。将这三个参数的变化都包括在内,可以减少同一概念模型中的时间不确定性(请参见Fahlman等人的等式1,2016)。

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