Emilia Trudnowska
Emilia Trudnowska
Institute of Oceanology Polish Academy of Sciences
Zweryfikowany adres z iopan.gda.pl
TytułCytowane przezRok
Foraging closer to the colony leads to faster growth in little auks
D Jakubas, E Trudnowska, K Wojczulanis-Jakubas, L Iliszko, D Kidawa, ...
Marine Ecology Progress Series 489, 263-278, 2013
362013
Multidimensional zooplankton observations on the northern West Spitsbergen Shelf
E Trudnowska, J Szczucka, L Hoppe, R Boehnke, H Hop, ...
Journal of Marine Systems, 2012
292012
Visual prey availability and distribution of foraging little auks (Alle alle) in the shelf waters of West Spitsbergen
L Stempniewicz, M Darecki, E Trudnowska, K Błachowiak-Samołyk, ...
Polar Biology 36 (7), 949-955, 2013
252013
Plankton patchiness in the Polar Front region of the West Spitsbergen Shelf
E Trudnowska, M Gluchowska, A Beszczynska-Möller, ...
Marine Ecology Progress Series 560, 1-18, 2016
202016
Parental efforts of an Arctic seabird, the little auk Alle alle, under variable foraging conditions
D Kidawa, D Jakubas, K Wojczulanis-Jakubas, L Stempniewicz, ...
Marine Biology Research 11 (4), 349-360, 2015
202015
Mid-summer mesozooplankton biomass, its size distribution, and estimated production within a glacial Arctic fjord (Hornsund, Svalbard)
E Trudnowska, SL Basedow, K Blachowiak-Samolyk
Journal of Marine Systems 137, 55-66, 2014
192014
Fine-scale zooplankton vertical distribution in relation to hydrographic and optical characteristics of the surface waters on the Arctic shelf
E Trudnowska, S Sagan, S Kwasniewski, M Darecki, ...
Journal of Plankton Research 37 (1), 120-133, 2015
142015
Variations in the structural and functional diversity of zooplankton over vertical and horizontal environmental gradients en route to the Arctic Ocean through the Fram Strait
M Gluchowska, E Trudnowska, I Goszczko, AM Kubiszyn, ...
PloS one 12 (2), 2017
92017
Large versus small zooplankton in relation to temperature in the Arctic shelf region
K Balazy, E Trudnowska, M Wichorowski, K Błachowiak-Samołyk
Polar Research 37 (1), 1427409, 2018
22018
Comparison of acoustical and optical zooplankton measurements using an acoustic scattering model: A case study from the Arctic frontal zone
J Szczucka, E Trudnowska, Ł Hoppe, K Błachowiak-Samołyk
Polish Polar Research 37 (1), 67-88, 2016
12016
Unravelling the dynamics of pelagic ecosystems by quantitative observation of morphological attributes of marine snow: a case study in the Arctic.
E Trudnowska, L Lacour, A Rogge, JO Irisson, AM Waite, M Babin, ...
Ocean Sciences Meeting 2020, 2020
2020
Taxonomic and size structures of zooplankton communities in the fjords along the Atlantic water passage to the Arctic
E Trudnowska, L Stemmann, K Blachowiak-Samołyk, S Kwasniewski
Journal of Marine Systems, 103306, 2020
2020
Dynamics of Calanus Copepodite Structure during Little Auks’ Breeding Seasons in Two Different Svalbard Locations
K Balazy, E Trudnowska, K Błachowiak-Samołyk
Water 11 (7), 1405, 2019
2019
Remote sensing of zooplankton swarms
SL Basedow, D McKee, I Lefering, A Gislason, M Daase, E Trudnowska, ...
Scientific reports 9 (1), 1-10, 2019
2019
Spatial variability and size structure of particles and plankton in the Fram Strait
E Trudnowska, S Sagan, K Błachowiak-Samołyk
Progress in Oceanography 168, 1-12, 2018
2018
Taxonomical and functional diversity in zooplankton communities from boreal and arctic waters
M Głuchowska, E Trudnowska, S Kwasniewski
PeerJ Preprints, 2018
2018
Nowe techniki w badaniach morskich ekosystemów polarnych.
E Trudnowska, P Bałazy
Kosmos 62 (3), 419-426, 2013
2013
Acoustical studies of arctic zooplankton
J Szczucka, E Trudnowska, Ł Hoppe
Hydroacoustics 16, 2013
2013
THE CONTENT OF GLACIAL SOUP IN SVALBARD WATERS AND ITS IMPORTANCE FOR FOOD WEB INTERACTIONS
E Trudnowska, R Boehnke, K Draganska-Deja, K Deja, AM Kubiszyn, ...
Polar Systems under Pressure, 192, 0
PHENOLOGY OF CALANUS GLACIALIS–COMPARISON BETWEEN ARCTIC AND ATLANTIC DOMAINS AND ITS IMPLICATIONS FOR REPRODUCTIVE SUCCESS OF LITTLE AUKS
K Balazy, E Trudnowska, K Blachowiak-Samolyk
Polar Systems under Pressure, 30, 0
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