Leal-Ramirez Cecilia, Echavarria-Heras Hector
Centro de Investigación Científica y Educación Superior de Ensenada, Carretera Ensenada-Tijuana No. 3918, Zona Playitas, 22860 Ensenada, BC, Mexico.
ScientificWorldJournal. 2014;2014:786896. doi: 10.1155/2014/786896. Epub 2014 May 4.
Despite the ecological importance of eelgrass, nowadays anthropogenic influences have produced deleterious effects in many meadows worldwide. Transplantation plots are commonly used as a feasible remediation scheme. The characterization of eelgrass biomass and its dynamics is an important input for the assessment of the overall status of both natural and transplanted populations. Particularly, in restoration plots it is desirable to obtain nondestructive assessments of these variables. Allometric models allow the expression of above ground biomass and productivity of eelgrass in terms of leaf area, which provides cost effective and nondestructive assessments. Leaf area in eelgrass can be conveniently obtained by the product of associated length and width. Although these variables can be directly measured on most sampled leaves, digital image methods could be adapted in order to simplify measurements. Nonetheless, since width to length ratios in eelgrass leaves could be even negligible, noise induced by leaf humidity content could produce misidentification of pixels along the peripheral contour of leaves images. In this paper, we present a procedure aimed to produce consistent estimations of eelgrass leaf area in the presence of the aforementioned noise effects. Our results show that digital image procedures can provide reliable, nondestructive estimations of eelgrass leaf area.
尽管鳗草具有重要的生态意义,但如今人为影响已在全球许多草甸中产生了有害影响。移植区通常被用作一种可行的修复方案。鳗草生物量及其动态特征是评估自然种群和移植种群总体状况的重要依据。特别是在恢复区,希望对这些变量进行无损评估。异速生长模型可以根据叶面积来表示鳗草的地上生物量和生产力,这提供了具有成本效益的无损评估方法。鳗草的叶面积可以通过叶长和叶宽的乘积方便地得出。虽然这些变量可以在大多数采样叶片上直接测量,但可以采用数字图像方法来简化测量。然而,由于鳗草叶片的宽长比可能很小,叶片湿度引起的噪声可能会导致沿叶片图像外围轮廓的像素误识别。在本文中,我们提出了一种方法,旨在在存在上述噪声影响的情况下,对鳗草叶面积进行一致的估计。我们的结果表明,数字图像方法可以提供可靠的、无损的鳗草叶面积估计。