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Trobbiani, G. A.

Publications and source records attributed to Trobbiani, G. A..

2 recordsLinked to original sources

Novel use of global occurrence data to indirectly predict suitable habitats for widely distributed marine species in data-scarce regions

This study addresses the challenge of advancing habitat use knowledge of widely distributed marine species populations when regional data is scarce. To achieve this, we use an innovative approach based on ecological niche models (ENMs) calibrated with global presence data to estimate the global niche of species, allowing for indirect predictions of suitable habitats and potential distribution in one or more regions of interest. The method leverages a range of global occurrence records, including scientific papers, government data, biodiversity repositories, and citizen science contributions, to overcome regional data scarcity, which are then integrated with environmental variables to predict habitat suitability. As a case study, we apply this method to predict suitable habitats of copper (Carcharhinus brachyurus) and sand tiger (Carcharias taurus) sharks in the Southwest Atlantic, two species of conservation concern in a region with limited data. Suitable habitats for both species were predicted, information required to guide conservation efforts. Environmental factors were key to shaping predicted distribution patterns of these large predatory sharks, aligning with previous knowledge and historical records of their latitudinal ranges. The results have significant implications for the conservation planning and sustainable management of shark populations in the Southwest Atlantic, contributing to broader efforts of marine biodiversity preservation. Additionally, the study highlights the potential of ENMs to identify essential habitats even in the absence of effort data, underscoring their value in marine conservation. This study not only advances the use of niche modelling in marine systems but also demonstrates its applicability for area-based conservation initiatives, particularly in data-poor regions.

ecology↗

"Toki", a light low-cost video system for seabed research: performance and precision of Tehuelche scallop (Aequipecten tehuelchus) survey estimates in San Jose Gulf, Argentina

Studies of benthic abundance and biodiversity are essential for fisheries management and environmental impact assessments. In the case of commercial species, such as Tehuelche scallop (Aequipecten tehuelchus), accurate information on the stocks and their densities is crucial. The standard survey method used to estimate abundance of Tehuelche scallops in San Jose Gulf, Argentina Patagonia, based on visual counts obtained by divers is labor-intensive and limited to diving depths. This study introduces a light low-cost video remote system, named "Toki", for monitoring scallop beds from small boats. Toki consists of a steel pyramidal structure that houses two cameras, capable of capturing georeferenced high-definition images. The performance of Toki for estimating the density and size composition of scallops was evaluated. The results demonstrate that Toki provides efficient and accurate density estimates, with variations that can be attributed to observer experience and environmental factors such as bottom algal cover. The size frequency distributions obtained from Toki aligned well with those from hand collection, which allows such measurement for beds beyond diveable depths. Toki offers advantages in terms of spatial coverage and permanent data records. While there are some limitations, such as processing time for image analysis, future developments based on artificial intelligence can overcome these challenges. Toki has the potential to improve the monitoring of scallop beds and data collection. HighlightsO_LIToki offers a low-cost solution for scallops beds monitoring. C_LIO_LIToki efficiently estimates scallops density within beds. C_LIO_LISize-frequency distributions obtained from remote videos were accurate. C_LIO_LIToki contributes to overcoming depth limitations of dive-based scallop surveys. C_LI

ecology↗