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Effects of Epiphytes and Depth on Seagrass Spectral Profiles: Case Study of Gulf St. Vincent South Australia

机译:附生植物和深度对海草光谱特征的影响:以南澳大利亚圣文森特海湾为例

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摘要

Seagrasses are a crucial indicator species of coastal marine ecosystems that provide substratum, shelter, and food for epiphytic algae, invertebrates, and fishes. More accurate mapping of seagrasses is essential for their survival as a long-lasting natural resource. Before reflectance spectra could properly be used as remote sensing endmembers, factors that may obscure the detection of reflectance signals must be assessed. The objectives in this study are to determine the influence of (1) epiphytes, (2) water depth, and (3) seagrass genus on the detection of reflectance spectral signals. The results show that epiphytes significantly dampen bottom-type reflectance throughout most of the visible light spectrum, excluding 670–679 nm; the depth does influence reflectance, with the detection of deeper seagrasses being easier, and as the depth increases, only Heterozostera increase in the exact “red edge” wavelength at which there is a rapid change in the near-infrared (NIR) spectrum. These findings helped improve the detection of seagrass endmembers during remote sensing, thereby helping protect the natural resource of seagrasses.
机译:海草是沿海海洋生态系统的重要指示物种,可为附生藻类,无脊椎动物和鱼类提供底层,庇护所和食物。海草作为长期的自然资源的生存,更准确的海图绘制至关重要。在将反射光谱适当地用作遥感终端成员之前,必须先评估可能遮挡反射信号检测的因素。本研究的目的是确定(1)附生植物,(2)水深和(3)海草属对反射光谱信号检测的影响。结果表明,附生植物显着抑制了除670–679 nm以外的大部分可见光谱中的底部反射率。深度的确会影响反射率,更容易检测到更深的海草,并且随着深度的增加,仅杂藻类的确切“红色边缘”波长会增加,在该波长处近红外(NIR)光谱会快速变化。这些发现有助于改善遥感过程中对海草末端成员的检测,从而有助于保护海草的自然资源。

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