References

Binder, G.A., Metcalf, R., Atlas, Z., and Daniel, K.G., 2018, Evaluation of digestion methods for analysis of trace metals in mammalian tissues and NIST 1577c: Analytical Biochemistry, v. 543, p. 37–42, doi:10.1016/j.ab.2017.11.016.

 

Cooke, S.J. et al., 2024, Animal migration in the Anthropocene: threats and mitigation options: Biological Reviews, v. 99, p. 1242–1260, doi:10.1111/brv.13066. 

 

Costa, R.A., dos Santos, N.A., Corrêa, T.S.M., Wyatt, N.L.P., Chamoun, C.A., Carneiro, M.T.W.D., and Romão, W., 2020, Detection of Pb, Ba, and Sb in Cadaveric Maggots and Pupae by ICP-MS*: Journal of Forensic Sciences, v. 65, p. 2188–2193, doi:10.1111/1556-4029.14526. 

 

Flemming, S.A., Smith, P.A., Kennedy, L.V., Anderson, A.M., and Nol, E., 2022, Habitat alteration and fecal deposition by geese alter tundra invertebrate communities: Implications for diets of sympatric birds: PLOS ONE, v. 17, p. e0269938, doi:10.1371/journal.pone.0269938. 

 

Gohlke, G., Pereira, T.C., Padilha, A.P.F., Andriolli, C.R., Henn, A.S., Picoloto, R.S., Mello, P.A., and Flores, E.M.M., 2025, Edible insect analysis: Development of a feasible method for determining potentially toxic elements: Journal of Food Composition and Analysis, v. 144, p. 107704, doi:10.1016/j.jfca.2025.107704. 

 

Hansson, S.V., Høye, T.T., Bach, L., Mielec, C., Mosbech, A., and Søndergaard, J., 2019, Spiders as biomonitors of metal pollution at Arctic mine sites: The case of the Black Angel Pb-Zn-mine, Maarmorilik, West Greenland: Ecological Indicators, v. 106, p. 105489, doi:10.1016/j.ecolind.2019.105489. 

 

Herzog, C., Reeves, J.T., Ipek, Y., Jilling, A., Hawlena, D., and Wilder, S.M., 2023, Multi-elemental consumer-driven nutrient cycling when predators feed on different prey: Oecologia, v. 202, p. 729–742, doi:10.1007/s00442-023-05431-9. 

 

Holowaty, Y., Leufroy, A., Mazurais, C., Beauchemin, D., and Jitaru, P., 2024, Multi-Elemental Analysis of Edible Insects, Scorpions, and Tarantulas from French (Online) Market and Human Health Risk Assessment Due to Their Consumption: A Pilot Study: Foods, v. 13, p. 2353, doi:10.3390/foods13152353.

 

Kira, C.S., Sakuma, A.M., and Gouveia, N. da C., 2014, Fast and simple multi-element determination of essential and toxic metals in whole blood with quadrupole ICP-MS.:, http://imsear.searo.who.int/handle/123456789/158820 (accessed October 2025).

 

Koleček, J., Reif, J., Šálek, M., Hanzelka, J., Sottas, C., and Kubelka, V., 2021, Global population trends in shorebirds: migratory behaviour makes species at risk: The Science of Nature, v. 108, p. 9, doi:10.1007/s00114-021-01717-1. 

 

McKinnon, L., Picotin, M., Bolduc, E., Juillet, C., and Bêty, J., 2012, Timing of breeding, peak food availability, and effects of mismatch on chick growth in birds nesting in the High Arctic: Canadian Journal of Zoology, v. 90, p. 961–971, doi:10.1139/z2012-064. 

 

Prater, C., Bumpers, P.M., Demi, L.M., Rosemond, A.D., and Jeyasingh, P.D., 2020, Differential responses of macroinvertebrate ionomes across experimental N:P gradients in detritus-based headwater streams: Oecologia, v. 193, p. 981–993, doi:10.1007/s00442-020-04720-x. 

 

Reynolds, M.D. et al., 2017, Dynamic conservation for migratory species: Science Advances, v. 3, p. e1700707, doi:10.1126/sciadv.1700707. 

 

Salau, R.B., 2014, Evaluation and Analysis of Dietary Essential Mineral Micronutrients in Selected Malaysian Foods Using FAAS and ICP-MS:, http://irepo.futminna.edu.ng:8080/jspui/handle/123456789/5270 (accessed October 2025).

 

Shaftel, R. et al., 2021, Predictors of invertebrate biomass and rate of advancement of invertebrate phenology across eight sites in the North American Arctic: Polar Biology, v. 44, p. 237–257, doi:10.1007/s00300-020-02781-5.