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Characterization of measurement errors using structure-from-motion and photogrammetry to measure marine habitat structural complexity

机译:使用从动结构和摄影测量法测量海洋测量误差的特征,以测量海洋栖息地的结构复杂性

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Abstract Habitat structural complexity is one of the most important factors in determining the makeup of biological communities. Recent advances in structure-from-motion and photogrammetry have resulted in a proliferation of 3D digital representations of habitats from which structural complexity can be measured. Little attention has been paid to quantifying the measurement errors associated with these techniques, including the variability of results under different surveying and environmental conditions. Such errors have the potential to confound studies that compare habitat complexity over space and time. This study evaluated the accuracy, precision, and bias in measurements of marine habitat structural complexity derived from structure-from-motion and photogrammetric measurements using repeated surveys of artificial reefs (with known structure) as well as natural coral reefs. We quantified measurement errors as a function of survey image coverage, actual surface rugosity, and the morphological community composition of the habitat-forming organisms (reef corals). Our results indicated that measurements could be biased by up to 7.5% of the total observed ranges of structural complexity based on the environmental conditions present during any particular survey. Positive relationships were found between measurement errors and actual complexity, and the strength of these relationships was increased when coral morphology and abundance were also used as predictors. The numerous advantages of structure-from-motion and photogrammetry techniques for quantifying and investigating marine habitats will mean that they are likely to replace traditional measurement techniques (e.g., chain-and-tape). To this end, our results have important implications for data collection and the interpretation of measurements when examining changes in habitat complexity using structure-from-motion and photogrammetry.
机译:摘要人居结构的复杂性是决定生物群落组成的最重要因素之一。动感结构和摄影测量学的最新进展导致了栖息地的3D数字表示的泛滥,从中可以测量结构的复杂性。很少注意量化与这些技术相关的测量误差,包括在不同的勘测和环境条件下结果的可变性。这样的错误可能会混淆比较生境在空间和时间上的复杂性的研究。这项研究通过对人造礁石(已知结构)和天然珊瑚礁进行反复调查,评估了从运动结构和摄影测量得出的海洋栖息地结构复杂性的测量结果的准确性,精度和偏差。我们将测量误差量化为调查图像覆盖率,实际表面皱纹度以及形成栖息地的生物(珊瑚礁)的形态群落组成的函数。我们的结果表明,根据任何特定调查中出现的环境条件,测量结果可能会导致所观察到的结构复杂性总范围的7.5%产生偏差。在测量误差与实际复杂度之间发现正相关,当珊瑚形态和丰度也用作预测因子时,这些关系的强度会增加。运动定量和摄影测量技术在量化和研究海洋栖息地方面的诸多优势将意味着它们很可能会取代传统的测量技术(例如,链带)。为此,当使用动感结构和摄影测量法研究栖息地复杂性变化时,我们的结果对数据收集和测量解释具有重要意义。

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