Acoustic scattering properties of seagrass: In/ex-situ measurements of Posidonia oceanica

IF 2.3 3区 环境科学与生态学 Q1 MARINE & FRESHWATER BIOLOGY Mediterranean Marine Science Pub Date : 2023-05-30 DOI:10.12681/mms.32324
Erhan MUTLU, Cansu Olguner
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引用次数: 3

Abstract

The marine prairies are paramount to the marine ecosystem playing a crucial role in various ways. Owing to the global atmospheric events inducing hydrospheric changes, marine seaweeds have been negatively affected and are vulnerable. Conventional methods (SCUBA), which were previously used to collect seagrasses, have become a destructive method for deriving unrecoverable damages for their stocks and have been replaced with remote sensing methods. Considering the advantages of the acoustic methods, two different in/ex-situ experiments were conducted to ground-truth the common seagrass, P. oceanica, in time and space of the Turkish Mediterranean water in 2011-2012 using a scientific echosounder with a split beam transducer operated at a frequency of 206 kHz. After the separation of the seagrass from spurious scatterers, the acoustic parameters (Sa: area backscattering strength, Sv: volume backscattering strength, and TS: Target Strength) were correlated and regressed with the biometric variables (Leaf Area Index, biomass, volume, length, width, diameter, or thickness) of different parts (leaf, rhizome, and sheath) of the seagrass. Estimation of biometrics by acoustic methods has been considered a challenge up to now. Statistical relationships between biometrics and acoustics were precisely examined for the species. The relationships were linearly established in the acoustic geometric region. There was a seasonal difference in the relationships. Their rhizomes and sheaths were considered unstable non-linear parts and remained unexplained for the acoustic response. Acoustic response to the leaf density (d, g cm-3), which was a distinguished component in the reflection, was found to be dependent on the seasonal biological activities of P. oceanica. Posidonia, which has a d greater than 1 g/cm3, produced the geometric region. The present study was the first attempt to establish the relationships of the seagrass under protection, and can decrease usage of destructive methods for future studies.
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海草的声散射特性:大洋波西多尼亚的原位/非原位测量
海洋草原对海洋生态系统至关重要,在各个方面发挥着至关重要的作用。由于全球大气事件引起的水圈变化,海洋海藻受到了负面影响,处于脆弱状态。以前用于收集海草的传统方法(水肺)已成为一种破坏性的方法,对其种群造成了不可恢复的损害,并已被遥感方法所取代。考虑到声学方法的优势,2011-2012年,使用频率为206 kHz的分束换能器进行了两次不同的原位/非原位实验,对土耳其地中海水域常见海草P. oceanica的时间和空间进行了地面真实测量。将海草与杂散体分离后,将声学参数(Sa:面积后向散射强度、Sv:体积后向散射强度和TS:目标强度)与海草不同部位(叶、根茎和鞘)的叶面积指数、生物量、体积、长度、宽度、直径或厚度等生物特征变量进行相关回归。利用声学方法估计生物特征一直是一个具有挑战性的问题。生物特征和声学之间的统计关系被精确地检验了。这些关系在声学几何区域内线性建立。这种关系存在季节性差异。它们的根茎和鞘被认为是不稳定的非线性部分,仍然无法解释声响应。对叶片密度(d, g cm-3)的声学响应是反射的一个重要组成部分,它依赖于海洋紫檀的季节性生物活动。波西多尼亚的d大于1 g/cm3,产生了几何区域。本研究首次建立了受保护海草的亲缘关系,为今后的研究减少了破坏性方法的使用。
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来源期刊
Mediterranean Marine Science
Mediterranean Marine Science MARINE & FRESHWATER BIOLOGY-
CiteScore
5.20
自引率
17.90%
发文量
34
审稿时长
>12 weeks
期刊介绍: The journal Mediterranean Marine Science (MMS), published by the Hellenic Centre for Marine Research (HCMR), issues three volumes annually. The journal welcomes original research articles, short communications, New Mediterranean Biodiversity records, extended reviews, comments, and Theme sections in all fields of Oceanography, Marine Biology, Marine Conservation, Fisheries and Aquaculture in the Mediterranean area and the adjacent regions. All content is peer reviewed.
期刊最新文献
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