LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry

Understanding the behaviour and movement of fish populations is crucial to developing plans to properly manage fisheries, and to predict effects of ongoing environmental change. In northern regions, physically tracking fish populations is difficult and expensive for researchers to accomplish at spat...

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Bibliographic Details
Main Author: Edgeworth, Ivan
Format: Master Thesis
Language:English
Published: University of Waterloo 2022
Subjects:
Online Access:http://hdl.handle.net/10012/17980
id ftunivwaterloo:oai:uwspace.uwaterloo.ca:10012/17980
record_format openpolar
spelling ftunivwaterloo:oai:uwspace.uwaterloo.ca:10012/17980 2023-05-15T15:01:49+02:00 LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry Edgeworth, Ivan 2022-01-24 http://hdl.handle.net/10012/17980 en eng University of Waterloo http://hdl.handle.net/10012/17980 geochemistry otolith laser ablation split-stream Master Thesis 2022 ftunivwaterloo 2023-01-28T23:57:36Z Understanding the behaviour and movement of fish populations is crucial to developing plans to properly manage fisheries, and to predict effects of ongoing environmental change. In northern regions, physically tracking fish populations is difficult and expensive for researchers to accomplish at spatial scales that are relevant for populations. Otoliths (fish ear bones) are comprised of metabolically inert aragonite that stores elemental and isotopic data throughout the lifetime of a fish in seasonal growth bands centered around a nucleus. Previous LA-ICP-MS studies have utilized trace element and isotopic data gathered from otoliths to investigate fish migration patterns, discriminate stocks, spawning and rearing sites, and reconstruct characteristics of habitats used, such as relative temperature or pH. Otolith structures can be small and fragile, depending on the species of fish, and may only have room for a single laser transect. Most previous LA-ICP-MS studies have measured isotopic or trace element data across a single transect, limiting the amount of information that can be acquired from a single otolith. This thesis focuses on the development of a new analytical technique that simultaneously quantifies trace element and strontium isotope ratios from a single line transect. A novel, uneven distribution of material in a split-stream configuration couples the laser ablation system with two mass spectrometers. Long-term accuracy assessments of trace element concentrations indicate that measured values are within 5 – 10% of accepted/preferred values of standard reference and in-house reference materials. Isotopic precision varied with respect to laser diameter but is generally fit-for-purpose for otolith studies. The utility of this innovative split stream technique is demonstrated by analyzing three transects on otoliths from two species of fish (lake trout (Salvelinus namaycush) and arctic char (Salvelinus alpinus)). Transects of lake trout and arctic char (25µm and 40µm laser diameter, respectively) were ... Master Thesis Arctic Salvelinus alpinus University of Waterloo, Canada: Institutional Repository Arctic Fish Lake ENVELOPE(-126.228,-126.228,52.508,52.508)
institution Open Polar
collection University of Waterloo, Canada: Institutional Repository
op_collection_id ftunivwaterloo
language English
topic geochemistry
otolith
laser ablation
split-stream
spellingShingle geochemistry
otolith
laser ablation
split-stream
Edgeworth, Ivan
LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
topic_facet geochemistry
otolith
laser ablation
split-stream
description Understanding the behaviour and movement of fish populations is crucial to developing plans to properly manage fisheries, and to predict effects of ongoing environmental change. In northern regions, physically tracking fish populations is difficult and expensive for researchers to accomplish at spatial scales that are relevant for populations. Otoliths (fish ear bones) are comprised of metabolically inert aragonite that stores elemental and isotopic data throughout the lifetime of a fish in seasonal growth bands centered around a nucleus. Previous LA-ICP-MS studies have utilized trace element and isotopic data gathered from otoliths to investigate fish migration patterns, discriminate stocks, spawning and rearing sites, and reconstruct characteristics of habitats used, such as relative temperature or pH. Otolith structures can be small and fragile, depending on the species of fish, and may only have room for a single laser transect. Most previous LA-ICP-MS studies have measured isotopic or trace element data across a single transect, limiting the amount of information that can be acquired from a single otolith. This thesis focuses on the development of a new analytical technique that simultaneously quantifies trace element and strontium isotope ratios from a single line transect. A novel, uneven distribution of material in a split-stream configuration couples the laser ablation system with two mass spectrometers. Long-term accuracy assessments of trace element concentrations indicate that measured values are within 5 – 10% of accepted/preferred values of standard reference and in-house reference materials. Isotopic precision varied with respect to laser diameter but is generally fit-for-purpose for otolith studies. The utility of this innovative split stream technique is demonstrated by analyzing three transects on otoliths from two species of fish (lake trout (Salvelinus namaycush) and arctic char (Salvelinus alpinus)). Transects of lake trout and arctic char (25µm and 40µm laser diameter, respectively) were ...
format Master Thesis
author Edgeworth, Ivan
author_facet Edgeworth, Ivan
author_sort Edgeworth, Ivan
title LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
title_short LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
title_full LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
title_fullStr LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
title_full_unstemmed LASS-ICP-MS collection of trace element and 87Sr/86Sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
title_sort lass-icp-ms collection of trace element and 87sr/86sr isotope data using a novel uneven distribution of sample material for otolith microchemistry
publisher University of Waterloo
publishDate 2022
url http://hdl.handle.net/10012/17980
long_lat ENVELOPE(-126.228,-126.228,52.508,52.508)
geographic Arctic
Fish Lake
geographic_facet Arctic
Fish Lake
genre Arctic
Salvelinus alpinus
genre_facet Arctic
Salvelinus alpinus
op_relation http://hdl.handle.net/10012/17980
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