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Improving the efficiency of sediment charcoal image analysis

机译:提高沉积物木炭图像分析的效率

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Imaging of charcoal particles extracted from lake sediments provides an important way to understand past fire regimes. Imaging of large numbers of particles can be time consuming. In this note we explore the effects of subsampling and extrapolation of area on estimates of sum charcoal area, using resampling of real and simulated data sets and propose a protocol in which all particles are counted with only the first 100 encountered being imaged. Extrapolated estimates of sum total area of charcoal for 40 real samples were nearly identical to actual values, and error introduced due to subsampling was low (Coefficient of variation 0.2) for all but samples originally containing fewer than 50 particles. Similarly, error was low for simulated data (CV 0.02). Extrapolation provided better estimates of charcoal area than did a regression-based approach. Our results suggest that imaging a fixed number of pieces of charcoal ( n  = 100) and counting any additional pieces represents a time efficient way to estimate charcoal area while at the same time retaining useful information on particle size and shape.
机译:从湖泊沉积物中提取的木炭颗粒的成像提供了了解过去的火灾制度的重要途径。大量粒子的成像可能是耗时的。在本说明中,我们使用Real和模拟数据集的重新采样来探讨用于总和木炭区域估计的区域对估计的影响,并提出了一种协议,其中所有粒子仅用于被成像的第一次数计算。用于40个真实样本的木炭总结构的外推与实际值几乎与实际值相同,并且由于较少的样品含有少于50个颗粒的样品而引入的误差(变异系数为0.2)。类似地,模拟数据(CV <0.02)误差低。外推提供了比基于回归的方法更好地估计木炭区域。我们的结果表明,成像固定数量的木炭(n = 100)并计数任何额外的块表示估计木炭面积的时间有效的方法,同时保持有关粒度和形状的有用信息。

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