Identification of spectral signature for in situ real-time monitoring of smoltification

We describe the use of an optical hyperspectral sensing technique to identify the smoltification status of Atlantic salmon (Salmo salar) based on spectral signatures, thus potentially providing smolt producers with an additional tool to verify the osmoregulatory state of salmon. By identifying wheth...

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Bibliographic Details
Published in:Applied Optics
Main Authors: Svendsen, Eirik, Volent, Zsolt, Schellewald, Christian, Tsarau, Andrei, Bjorgan, Asgeir, Venås, Birger, Bloecher, Nina, Bondø, Morten Steen, Føre, Martin, Jónsdóttir, Kristbjörg Edda, Stefansson, Sigurd Olav
Format: Article in Journal/Newspaper
Language:English
Published: Optical Society of America 2021
Subjects:
Online Access:https://hdl.handle.net/11250/2826299
https://doi.org/10.1364/AO.420347
Description
Summary:We describe the use of an optical hyperspectral sensing technique to identify the smoltification status of Atlantic salmon (Salmo salar) based on spectral signatures, thus potentially providing smolt producers with an additional tool to verify the osmoregulatory state of salmon. By identifying whether a juvenile salmon is in the biological freshwater stage (parr) or has adapted to the seawater stage (smolt) before transfer to sea, negative welfare impacts and subsequent mortality associated with failed or incorrect identification may be reduced. A hyperspectral imager has been used to collect data in two water flow-through and one recirculating production site in parallel with the standard smoltification evaluations applied at these sites. The results from the latter have been used as baseline for a machine-learning algorithm trained to identify whether a fish was parr or smolt based on its spectral signature. The developed method correctly classified fish in 86% to 100% of the cases for individual sites, and had an overall average classification accuracy of 90%, thus indicating that analysis of spectral signatures may constitute a useful tool for smoltification monitoring. publishedVersion