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Fig. 2 in Freshwater bryozoans of Korea-observations on living colonies and three new records
Fig. 2. Lophopodella carteri (Hyatt, 1866). A, Colony (white arrow); B, Floatoblast. Scale bars: A = 3 mm, B = 500 μm.
Fig. 1. Map showing the sampling localities from 2014 in Freshwater bryozoans of Korea-observations on living colonies and three new records
Fig. 1. Map showing the sampling localities from 2014 to 2016. 1, Hyangho Reservoir; 2, Sunpo Wetland; 3, Maok Reservoir; 4, Banbyeon Stream; 5, Sangju Weir; 6, Nakdan Weir; 7, Chilgok Weir; 8, Samunjin Bridge; 9, Dalseong Weir; 10, Hapcheon-Changnyeong Weir; 11, Changnyeong-Haman Weir; 12, Namji Bridge; 13, Ojori Pond; 14, Wonmul Pond; 15, Geumoreum; 16, Sasaengi Pond; 17, Suwori Pond; 18, Bungurut Pond; 19, Yongsu Reservoir; 20, Susan Reservoir; 21, Songhyeon Reservoir; 22, Jogang Reservoir; 23, Juksan Weir; 24, Yeongsan River; 25, Seungchon Weir; 26, Cheongam Pond; 27, Gwangju Reservoir; 28, Dongrim Reservoir; 29, Aedang Reservoir; 30, Andeok Reservoir; 31, Chongho Reservoir; 32, Mangyeong Stream; 33, Mangyeong River; 34, Daewi Reservoir; 35, Wonsu Reservoir; 36, Geumma Reservoir; 37, Dochon Reservoir; 38, Sungrim Reservoir; 39, Seoji Reservoir; 40, Geumgang Estuary; 41, Heungrim Reservoir; 42, Bongseon Reservoir; 43, Ungpo Bridge; 44, Mujigae Bridge; 45, Tapjeong Reservoir; 46, Hwangsan Bridge; 47, Juhang Reservoir; 48, Bocheong Stream; 49, Daecheong Reservoir; 50, Gap Stream; 51, Sejong Weir; 52, Daegyo Stream; 53, Gongju Weir; 54, Bakje Weir; 55, Changgi Reservoir; 56, Suryong Reservoir; 57, Malli Reservoir; 58, Jakcheon Reservoir; 59, Nongdari Stone Bridge; 60, Chopyeong Reservoir; 61, Baekgok Stream; 62, Miho Stream; 63, Baekgok Reservoir; 64, Daetgol Reservoir; 65, Chungju Reservoir; 66, Mungwang Reservoir; 67, Gwanghyewon Reservoir; 68, Gangcheon Weir; 69, Yeoju Weir; 70, Ipo Weir.
Fig. 4. A, B. Tetraedriella tumidulum, C, D. T. spinigera, EG. Cyclonexis erinus, H in New records of freshwater algae from Korea
Fig. 4. A, B. Tetraedriella tumidulum, C, D. T. spinigera, EG. Cyclonexis erinus, H. Arthrospira platensis. Scale bars = 10 μm.
Fig. 2. A. Cylindrocapsa geminella, B. Botryococcus protuberans, C. Korshikoviella gracilipes, D. Oocystis naegelii, E. O in New records of freshwater algae from Korea
Fig. 2. A. Cylindrocapsa geminella, B. Botryococcus protuberans, C. Korshikoviella gracilipes, D. Oocystis naegelii, E. O. ovalis. Scale bars= 10 μm.
Freshwater resources under success and failure of the Paris climate agreement
<p>This dataset represents the core output of the analysis presented in: Heinke, J., Müller, C., Lannerstad, M., Gerten, D., and Lucht, W.: Freshwater resources under success and failure of the Paris climate agreement, Earth Syst. Dynam., 10, 205-217, 10.5194/esd-10-205-2019, 2019. Please refer to this publication for a comprehensive description of methods and references to the datasets and materials used to produce this data.</p> <p>When using the data, cite it as follows: Heinke, Jens, Müller, Christoph, Lannerstad, Mats, Gerten, Dieter, & Lucht, Wolfgang (2019). Freshwater resources under success and failure of the Paris climate agreement [Data set]. Zenodo. http://doi.org/10.5281/zenodo.2562056. Please also cite the reference article that this dataset belongs to.</p> <p> </p> <p>Files:</p> <ul> <li>frac_drought_19gcm_8gmt.nc contains the fraction of drought months for 19 GCM patterns and 8 levels of global mean temperature increase</li> <li>frac_drought_ref.nc contains the fraction of drought months for the reference case (equivalent to global mean temperature increase in 2009)</li> <li>mean_annual_discharge_19gcm_8gmt.nc contains mean annual discharge for 19 GCM patterns and 8 levels of global mean temperature increase</li> <li>mean_annual_discharge_ref.nc contains mean annual discharge for the reference case (equivalent to global mean temperature increase in 2009)</li> <li>q10_19gcm_8gmt.nc contains 5-day average peak flow exceeded in 1 of 10 years for 19 GCM patterns and 8 levels of global mean temperature increase</li> <li>q10_ref.nc contains 5-day average peak flow exceeded in 1 of 10 years for the reference case (equivalent to global mean temperature increase in 2009)</li> <li>water_crowding_1950-2010.nc contains estimates of grid-based water crowding for the historic period (1950-2010)</li> <li>water_crowding_2011-2100_5ssp.nc contains estimates of grid-based water crowding for the scenario period (2011-2100) for 5 different SSPs.</li> </ul> <p>All data have a spatial resolution of 0.5° x 0.5° and cover the global land area except Antarctica.</p> <p> </p> <p> </p> <p> </p>
Data from: Hydrology induces intraspecific variation in freshwater fish morphology under contemporary and future climate scenarios
<p>Datasets for manuscript "Andres, K. J., Chien, H., and Knouft, J. H. Hydrology induces intraspecific variation in freshwater fish morphology under contemporary and future climate scenarios. Science of the Total Environment. <a href="https://doi.org/10.1016/j.scitotenv.2019.03.292">https://doi.org/10.1016/j.scitotenv.2019.03.292</a>"</p> <p>landmarks.zip: landmarks digitized on images of 1081 specimens using TpsDig2 software.</p> <p>streamflow_estimates.csv: Contemporary (1980-2009) and future (2070-2099) streamflow estimates [avg: average annual streamflow discharge (m3 s-1); cv: coefficient of variation of annual discharge] in sub-basins containing populations of 6 minnow species in IL, USA</p>
Data from: Inbreeding does not alter the response to an experimental heat wave in a freshwater snail
<p>Data are saved as a tab-delimited text file (data.txt).</p> <p>The data file has the following columns:</p> <p>population - snail population (1 = Zurichberg, 2 = Adlisberg)<br> family - snail family (27 families)<br> temperature - temperature treatment (15C, 25C)<br> mating_type - mating type category (0 = produced through outcrossing, 1 = produced through forced self-fertilization, 2 = produced through self-fertilization despite access to a mate)<br> block - blocks of the experiment (3 blocks)<br> reproduction - reproductive status of experimental snails (0 = did not oviposit, 1 = did oviposit)<br> eggs - number of eggs oviposited by experimental snails<br> length - shell length of experimental snails (mm)<br> PO_activity - phenoloxidase-like activity of haemolymph of experimental snails<br> antibacterial_activity - antibacterial activity of haemolymph of experimental snails</p>
Datasets for "The hydro-climate and freshwater supply of High-Mountain Asia under warming climate conditions"
<p>This repository contains ensemble-mean fields and corresponding standard deviations of post-processed outputs of CMIP5 models for three RCP scenarios (RCP2.6, RCP4.5 and RCP8.5) described in a manuscript "The hydro-climate and freshwater supply of High-Mountain Asia under warming climate conditions".</p> <p>Each netcdf file contains one field (either an ensemble mean of a standard deviation). The fields are the following: Positive Degree Days (PDD), Total Precipitation (Ptotal), Liquid Precipitation (PLiquiq), Frozen Precipitation (Pfrozen) and Glaciers Mass Balance (MB).</p>
Freshwater transport from the Atlantic to the Pacific Ocean through the atmosphere
<p>emp_eul_lagrang.mat: This mat file contains global evaporation - precipitation (E-P) data obtained from ERA-Interim, Eulerian and Lagrangian method. The validation of the atmospheric water-mass version of TRACMASS had been done using this data.</p> <p>psixz_ep_eastward.zip: This zip file contains 12 netcdf files corresponding to each month. These files were used to compute E - P, atmospheric freshwater transport as a function of month and atmospheric zonal water-mass stream function for the water-mass traveling from the Atlantic to Pacific Ocean over Afro-Eurasia. </p> <p>psixz_ep_westward.zip: Same as above but for the water-mass traveling from the Atlantic to Pacific Ocean over America. </p> <p>resdt_eastward.nc: This netcdf file consists of atmospheric water residence time extracted from water-mass trajectories traveling from the Atlantic to Pacific Ocean over Afro-Eurasia.</p> <p>resdt_westward.nc: Same as above but from water-mass trajectories traveling from the Atlantic to Pacific Ocean over America.</p> <p>resdt_all.nc: This netcdf file consists of atmospheric water residence time computed from water-mass trajectories traveling from the Atlantic to Pacific Ocean regardless of its pathway (Eastward over Afro-Eurasia + Westward over America).</p> <p>resdt_all_global.nc: This netcdf file consists of global atmospheric water residence time calculated from the global TRACMASS run.</p> <p> </p>
FIG. 2. A in Zoochorous dispersal of freshwater peaclams (Bivalvia: Sphaeriidae): potential role of aquatic insects
FIG. 2. A. Dorsal and ventral views of the Aeshna juncea (Linnaeus, 1758) dragonfly nymph (Omolon River basin, Magadan Oblast, Russia). B. Euglesa globularis attached to the leg of the Common Hawker dragonfly nymph. C. Dorsal, ventral, and lateral views of the Callicorixa sp. nymph (a small unnamed lakelet near Orotukan settlement, Magadan Oblast, Russia). D. Euglesa parvula attached to the leg of the water boatmen nymph. Scale bars: (A, C) – 1 mm; (B, D) – 0.5 mm. Photos by Aksenova O.V.
РИС. 1. Карта района исследований в бассейне реки Колыма (МагаданскаЯ область, РоссиЯ) (1) оЗеро рЯдом с поселком Оротукан; (2) ОЗеро Лебединое рЯдом с селом Омолон. Фотографии Аксёновой О.В. (1) и Соколовой С.Е. (2). in Zoochorous dispersal of freshwater peaclams (Bivalvia: Sphaeriidae): potential role of aquatic insects
РИС. 1. Карта района исследований в бассейне реки Колыма (МагаданскаЯ область, РоссиЯ) (1) оЗеро рЯдом с поселком Оротукан; (2) ОЗеро Лебединое рЯдом с селом Омолон. Фотографии Аксёновой О.В. (1) и Соколовой С.Е. (2).
Figs 1–5 in A Description of Cochliopodium a Freshwater Habitat megatetrastylus n. sp. Isolated from
Figs 1–5. Light microscopic and fine structure images of Cochliopodium megatetrastylus n. sp. 1–3. Morphology of living C. megatetrastylus n. sp. during locomotion. 1 – locomoting amoebae with anterior hyaloplasm fringe; 2 – morphology of the relatively short subpseudopodia that become adhesive laterally and posteriorly, and attach to the substratum; 3 – aggregation and fusion of amoebae (inset shows a large and nearby small cyst). All scale bars: 20 µm; 4 – fine structure of a cell in cross-section showing the nucleus (N) and prominent nucleolus (Nu), vacuole (V), emergent pseudopodia (Ps) from the ventral surface, and showing scales (arrow) covering the dorsal surface. Scale bar: 2 µm; 5 – tubulo-cristate mitochondria (M) near the cell periphery, coated with surface scales (arrows) shown in profile. Double-headed arrows indicate the distance (~ 0.2 µm) between the bases of a pair of opposite styles that support the apical collar. Scale bar: 0.5 µm.
Fig. 6. Maximum likelihood tree for 327 in Ultrastructure of Diplophrys parva, a New Small Freshwater Species, and a Revised Analysis of Labyrinthulea (Heterokonta)
Fig. 6. Maximum likelihood tree for 327 heterokonts emphasizing Labyrinthulea and Eogyrea of phylum Bigyra and the non-heterokont outgroups. Internal branches for the five clades at the top of the tree are collapsed, but are being published separately (Cavalier-Smith and Scoble in press); the numbers to their right indicate how many sequences were included in each. Bootstrap supports for bipartitions are based on 1,000 resamplings using GTRMIX option of RAxML. Black bullets indicate 100% bootstrap support. The sequence attributed to 'Labyrinthuloides haliotidis' might be from a thraustochytrid contaminant rather than from Aplanochytrium (=Labyrinthuloides) haliotidis (Leander and Porter 2001).
Figs 6, 7 in A Description of Cochliopodium a Freshwater Habitat megatetrastylus n. sp. Isolated from
Figs 6, 7. Fine structure details of the nucleus of Cochliopodium megatetrastylus n. sp. 6 – examples of nuclei varying from somewhat rounded with undulating margin to those with lobe-like extensions (arrow); 7 – a lenticular shaped nucleus viewed in one plane of section. Scale bars: 1 µm.
Fig. 10 in A Description of Cochliopodium a Freshwater Habitat megatetrastylus n. sp. Isolated from
Fig. 10. Diagram of C. megatetrastylus n. sp. scale showing the grid-like base plate and the apical conical collar supported on four styles. Scale bar: 0.1 µm.
Fig. 1 in Heterotrophic Flagellates from Freshwater and Soil Habitats in Subtropical China (Wuhan Area, Hubei Province)
Fig. 1. Location of studied sites. 1 – Yangtze River, 2 – Moshan hill, 3 – Donghu Lake, 4 – Luojiashan hill.
Fig. 4. 1, 2 in Heterotrophic Flagellates from Freshwater and Soil Habitats in Subtropical China (Wuhan Area, Hubei Province)
Fig. 4. 1, 2 – Petalomonas minuta (small cell with single anterior flagellum and longitudinal groove); 3, 4 – P. pusilla (small cell with single anterior flagellum and truncate anterior end); 5–7 – Phalansterium sp. (colonies of unikont spherical cell surrounded by mucilage); 8–12 – Phyllomitus apiculatus (cells with visible flagellar pocket, two heterodynamic flagella, anterior flagellum curves back over the rostrum (8), big food vacuoles), (12) whole mount (TEM); 13, 14 – Protaspa simplex (gliding spherical cells, cell body wags in unison with the flagellar beat); 15, 16 – Pteridomonas pulex (single apical flagellum emerging from a slight depression at the top of the cell, flagellum is surrounded by 12 stiffarms, body attaches to substrate by thin stalk); 17–19 – Rhynchomonas nasuta (oval cell bears undulating proboscis and long posterior flagellum), (19) whole mount (TEM); 20, 21 – Salpingoeca amphoridium (cell with narrow neck inside amphora-like lorica); 22 – S. gracilis (cylindrical cell inside cyathiform lorica); 23–25 – S. minor (spherical cell with narrow neck inside round lorica); 26–29 – Spongomonas uvella, (spherical cells with two isokont long acronematic flagella form colonies surrounded minute granules) (29) whole mount (TEM). Scale bars: 4 µm (3, 4), 5 µm (18, 23–25, 28, 29), 6 µm (1, 2), 8 µm (5, 7, 17, 19), 10 µm (6, 8–10, 12–14, 20, 27), 15 µm (11, 15, 21, 22, 26), 25 µm (16).
Figure 3 in The ecology of freshwater bivalves in the Lake Sapanca basin, Turkey
Figure 3. Length–frequency distribution of (a) Unio crassus, (b) Unio pictorum, (c) Anodonta anatina, (d) Anodonta cygnea in the Lake Sapanca basin.
Figure 2 in Occurrence of regenerated tail in Indian freshwater spiny eel, Macrognathus pancalus Hamilton, 1822 (Teleostei: Mastacembelidae), in northern West Bengal, India
Figure 2. Lateral view, preopercular spines, scales, and X-ray impression of regenerated tail of Macrognathus pancalus.
Figure 2 in Relative tolerance of some tropical freshwater microcrustaceans to acidification
Figure 2. Gradual changes in physicochemical parameters of pond water with decreasing pH upon addition of HCl.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.