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Modeling canopy openness and understory gap patterns based on image analysis and mapped tree data

机译:基于图像分析和映射树数据对树冠开放度和林下缝隙模式进行建模

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Ecological relationships beneath a forest canopy are related spatially to the pattern of canopy gaps and sunlight penetration. Methods to characterize and predict canopy light patterns from easily gathered site inventory data are not readily available. We developed a model to estimate the proportion and distribution of canopy openings visible from the under-story, in lieu of hemispherical photography or field instrumentation. An automated procedure for constructing vertical wide-angle views of forest canopies using standard computer-aided design (CAD) software was applied to canopy structure data collected on individual mapped trees in old-growth plots. Vertical hemispherical photos of actual canopies were paired with constructed CAD views of the same point to evaluate the correspondence between the two. Using image analysis software, we assessed total canopy openness (CO) and largest gap size (GAP) on 324 image pairs from seven different plots. With the exception of one plot, a single quadratic model form fit the remaining observations, resulting in r(2) values over 50% between CAD and photo images. We could not adequately model a plot with heavy non-tree understory vegetation. We also compared contour maps of CO gradients from the CAD images and estimates from the regression model to the photographic images to evaluate whether spatial distributions of canopy openings were correctly captured by the constructed model approach. Visual observations of the gradient map show peaks and valleys in canopy openness that visually match openness on photos at corresponding locations in the plot. Lastly, we found a relatively stable correspondence in the distribution of gap sizes between photographic and CAD images. The models presented here may be applied to known or simulated patterns of tree data to derive a spatially-explicit estimation of gap patterns without the need for corresponding photography or instrumentation.
机译:森林冠层下的生态关系在空间上与冠层间隙和阳光穿透的模式有关。从容易收集的站点清单数据中表征和预测冠层光模式的方法尚不可用。我们开发了一个模型来估计从地下层可见的树冠开口的比例和分布,而不是半球摄影或野外仪器。使用标准计算机辅助设计(CAD)软件自动构建森林冠层垂直广角视图的自动程序,用于在旧样地中从各个映射树收集的冠层结构数据。将实际树冠的垂直半球照片与相同点的已构建CAD视图配对,以评估两者之间的对应关系。使用图像分析软件,我们评估了来自七个不同地块的324对图像上的总冠层开放度(CO)和最大间隙尺寸(GAP)。除一个图外,单个二次模型形式适合其余的观察结果,从而导致CAD和照片图像之间的r(2)值超过50%。我们无法对非树下繁茂的植被进行充分建模。我们还比较了来自CAD图像和从回归模型到摄影图像的估计值的CO梯度等高线图,以评估构造的模型方法是否正确捕获了冠层开口的空间分布。视觉观察到的渐变图显示了冠层开放度中的峰和谷,这些峰和谷在视觉上与图中相应位置的照片的开放度相匹配。最后,我们发现摄影和CAD图像之间的间隙大小分布相对稳定。此处介绍的模型可以应用于树数据的已知或模拟模式,以在不需要相应的摄影或仪器的情况下得出间隙模式的空间显式估计。

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