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Fig. 5 in A new blood parasite of leaf warblers: molecular characterization, phylogenetic relationships, description and identification of vectors
Fig. 5 Sporogonic stages of Haemoproteus homopalloris n. sp. in tce biting midge Culicoides nubeculosus. Zygote (a) and sporozoite (b). Arrowcead: pigment granuges; arrow: sporozoite nucgeus. Metcanog-fixed and Giemsa-stained tcin figms. Scale-bar: a, b, 10 μm
Fig. 2 in A new blood parasite of leaf warblers: molecular characterization, phylogenetic relationships, description and identification of vectors
Fig. 2 Bayesian pcygogenetic inference of cytb gene gineages (479 bp) of 35 Haemoproteus spp. Tce tree is rooted witc Leucocytozoon sp. (gineage gSISKIN2). Cgades A and B indicate species of tce subgenus Parahaemoproteus (a) and caemoproteids witc page-staining cytopgasm of gametocytes (b). MagAvi gineage codes are provided, foggowed by parasite species names and GenBank accession numbers. Nodag support vagues indicate Bayesian posterior probabigities. New species is given in bogd
Fig. 1 in A new blood parasite of leaf warblers: molecular characterization, phylogenetic relationships, description and identification of vectors
Fig. 1 Gametocytes of two species of caemoproteids described from geaf warbges, Pcyggoscopidae. Haemoproteus homopalloris n. sp. (a-l) and Haemoproteus palloris (m-p). Young gametocytes (a, b), macrogametocytes (c-g, m, n) and microgametocytes (h-l, o, p). Long arrows: gametocyte nucgei; scort arrows: vacuoge-gike spaces in macrogametocytes; arrowceads: pigment granuges. Giemsa-stained tcin bgood figms. Scale-bar: a-p, 10 μm
Fig. 4 in A new blood parasite of leaf warblers: molecular characterization, phylogenetic relationships, description and identification of vectors
Fig. 4 Gametocytes of two species of caemoproteids, wcicc cave been reported in tce wood warbger Phylloscopus sibilatrix. Macrogametocytes (a-c, e-g) and microgametocytes (d, h) of Haemoproteus majoris (a-d) and H. belopolskyi (e-h). Note tcat tce intensity of staining of tce cytopgasm is different in macro- and microgametocytes. Long arrows: gametocyte nucgei; scort arrows: vacuoge-gike spaces in macrogametocytes; arrowceads: pigment granuges. Giemsa-stained tcin bgood figms. Scale-bar: a-h, 10 μm
Fig. 3 in A new blood parasite of leaf warblers: molecular characterization, phylogenetic relationships, description and identification of vectors
Fig. 3 Haemoproteus spp. witc page staining of macrogametocyte cytopgasm. Haemoproteus concavocentralis (a-d), H. minutus (e-h), H. pallidus (i- l), H. pallidulus (m-p) and H. vacuolatus (q-t). Macrogametocytes (a, b, e, f, i, j, m, n, q, r), microgametocytes (c, d, g, h, k, l, o, p, s, t). Note tce foggowing vaguabge diagnostic features of tce parasites: presence of a space between tce nucgeus of tce infected erytcrocyte and tce growing gametocyte in H. concavocentralis (a); cgeargy irregugar outgine of mature gametocytes, wcicc do not toucc tce poges of infected erytcrocytes in H. minutus (e-h); gametocyte wcicc are cgosegy appressed to tce nucgeus of erytcrocyte but do not toucc tce envegope of erytcrocyte agong tceir entire margin in H. pallidus (j, l); smagg pigment granuges in mature gametocytes of H. pallidulus (m-p); presence of one prominent vacuoge in tce cytopgasm of eacc advanced macrogametocyte in H. vacuolatus (q-t). Agg tcese features are not ccaracteristics of H. homopalloris n. sp. (see Fig. 1). Long simpge arrows: gametocyte nucgei; scort simpge arrows: vacuoge-gike spaces in macrogametocytes; arrowceads: pigment granuges; gong simpge wide arrows: space present between tce parasite and an infected erytcrocyte nucgeus (a, d) and space between tce parasite and tce envegope of infected erytcrocyte (j, l). Giemsa-stained tcin bgood figms. Scale-bar: a-t, 10 μm
Рис. 17. Выброшенная раковина анадары (Anadara broughtonii) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. Fig. 17. A stranded blood cockle shell (Anadara broughtonii) with attached algae rhizoids on the beach of Telyakovskogo Bay. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 17. Выброшенная раковина анадары (Anadara broughtonii) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. Fig. 17. A stranded blood cockle shell (Anadara broughtonii) with attached algae rhizoids on the beach of Telyakovskogo Bay.
Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1.
Storage time and temperature affect plasma osmolality values in field-collected blood samples
<p>Data and code for a study assessing the effect of storage conditions on blood plasma samples, published in Comparative Biochemistry and Physiology in 2024.</p>
Figure 2 in Oxidative and osmotolerant effects in Salvator merianae (Squamata: Teiidae) red blood cells during hibernation
Figure 2. Logarithmic in base 10 values of oxidative biomolecules level for each period collected (n = 6). Wilcox Test: P = 0.31. Sum symbol (+) is the mean and SD are the horizontal lines; median is the vertical line within the boxes and range is distance from the median to the end of the boxes.
Figure 1 in Oxidative and osmotolerant effects in Salvator merianae (Squamata: Teiidae) red blood cells during hibernation
Figure 1. (a) Osmotic fragility in percentage by saline concentration from both periods studied (GLM: F = 2.56, P = 0.03). No statistical differences were observed between individualized pairs of saline concentrations; (b) Overall osmotic fragility difference between periods considering only periods effect (GLM: F = 9.72, P = 0.01) (n = 6). Sum symbol (+) is the mean and SD are the horizontal lines; median is the vertical line within the boxes and range is distance from the median to the end of the boxes.
Figure 3 in Oxidative and osmotolerant effects in Salvator merianae (Squamata: Teiidae) red blood cells during hibernation
Figure 3. Logarithmic in base 10 values of (a) Enzymatic activity level of glutathione peroxidase – GPx and (b) activity of glutathione reductase - GR of red blood cells in hibernation and active periods (n = 6). T-test, P = 0.68 and P = 0.10, respectively. Sum symbol (+) is the mean and SD are the horizontal lines; median is the vertical line within the boxes and range is distance from the median to the end of the boxes.
Figure 1 in Hematology and blood biochemistry profile of the freshwater stingray Potamotrygon magdalenae as a tool for population assessment in artificial environments
Figure 1. Different cell types found in peripheral blood of captive adults of Potamotrygon magdalenae.
Figure 2 in Hematology and blood biochemistry profile of the freshwater stingray Potamotrygon magdalenae as a tool for population assessment in artificial environments
Figure 2. Correlation's matrix test among body condition and physiological parameters in captive adults of Potamotrygon magdalenae. RBC:Erythrocyte count; Hb: Hemoglobin; Ht: Hematocrit; Leu: Leukocte count; Thr: Thrombocyte count; He%: Heterophils proportion; Eos%: Eosinophils proportion; Ly%: Lymphocytes proportion; Mo%: Monocytes proportion; Ure: Urea; Tri: Triglycerides; Pp: Plasma proteins; Sp: Serum proteins; Glu: Glucose; Col: Cholesterol. Ellipses show the type of correlation between each variable, slope shows whether the correlation is positive or negative, color intensity shows the correlation's strength, and amplitude of the ellipse corresponds to the data dispersion. The upper diagonal shows the p values for each correlation.
Growth, nutrient uptake, blood metabolites and bone properties in broilers consuming feed with mineral-enriched whole black soldier fly larvae
<p>Recycling critical minerals like phosphorus is essential for future circular agriculture. This study explored adding mineral-enriched black soldier fly larvae (BSFL), grown on substrates with sewage sludge recyclates (SSR), to broiler feed to reintroduce minerals from restricted waste streams into the nutrient cycle. Results showed that including 15% mineral-enriched BSFL in broiler diets for 42 days had no adverse effects on growth, nutrient intake, or bone condition, and maintained acceptable levels of heavy metals.</p>
Blood Donation Japanese Tweets - Dehydrated versions
<p>These datasets contains tweets collected through Twitter API with the previously available Research Account, during May 2023. Data was collected by using the “(献血 OR kenketsu OR けんけつ OR ラブラッド OR LoveBlood OR #献血 OR #けんけつ OR #kenketsu OR #ラブラッド OR #LoveBlood) lang:ja” search string, which containts the japanese words related to Blood Donation in japanese, and the name of the official blood donation application from Japan, LoveBlood.</p> <p>The Twitter_labeled_dataset contains tweets from the year 2022 randomly selected to prepare for manual labeling, while the other two datasets contain the tweets collected from October 2022 to April 2023 for automatized classification. Dataset_unlabeled_2023_full references to the raw collected tweets, while Data_classified_full has the final group of tweets after preprocessing and additional filtering.</p> <p>Considering the privacy recommendations when using Twitter data, all datasets has been "dehydrated," meaning they only contains the tweet IDs and not the associated content. To use this data, you will need to reassociate the IDs with their corresponding data (rehydration).</p>
Figure 4 in A new order of fishes as hosts of blood flukes (Aporocotylidae); description of a new genus and three new species infecting squirrelfishes (Holocentriformes, Holocentridae) on the Great Barrier Reef
Figure 4. Relationships between species of Holocentricola and other members of the Aporocotylidae based on phylogenetic analysis of the 28S dataset. Bayesian inference posterior probabilities values are shown above the nodes and maximum likelihood bootstrap support shown below; values of <85 and <0.85 not shown. The scale-bar indicates expected number of substitutions per site.
Figure 3 in A new order of fishes as hosts of blood flukes (Aporocotylidae); description of a new genus and three new species infecting squirrelfishes (Holocentriformes, Holocentridae) on the Great Barrier Reef
Figure 3. Species of Holocentricola from Great Barrier Reef Holocentridae, terminal genitalia, dorsal views; spines illustrated are ventral. (A) Holocentricola rufus n. sp. ex Sargocentron rubrum from off Heron Island (paratype, QM G239440); (B) Holocentricola exilis n. sp. ex Neoniphon sammara from off Lizard Island (paratype, QM G239119); (C) Holocentricola coronatus n. sp. ex Sargocentron diadema from off Lizard Island (paratype, QM G239126). Abbreviations: CS, cirrus-sac; ER, egg reservoir; FGP, female genital pore; MGP, male genital pore; Od, oviduct; Oö, oötype; Ov, ovary; PP, pars prostatica; SV, seminal vesicle; Ut, uterus; VD, vas deferens; VitD, vitelline duct. Scale-bars: A–C, 100 µm.
Figure 2 in A new order of fishes as hosts of blood flukes (Aporocotylidae); description of a new genus and three new species infecting squirrelfishes (Holocentriformes, Holocentridae) on the Great Barrier Reef
Figure 2. Species of Holocentricola from Great Barrier Reef Holocentridae, whole worms, ventral views. (A) Holocentricola rufus n. sp. ex Sargocentron rubrum from off Heron Island (holotype, QM G239429); (B) Holocentricola exilis n. sp. ex Neoniphon sammara from off Lizard Island (paratype, QM G239111); (C) Holocentricola coronatus n. sp. ex Sargocentron diadema from off Lizard Island (holotype, QM G239125). Scale-bars: A–C, 200 µm.
Fig. 1 in Hematological and morphometric blood value of four cultured species of economically important tropical foodfish
Fig. 1. Volume (mm3) of red blood cell and hemoglobin (g.dL-1) of jundiá (Rhamdia quelen), Nile tilapia (Oreochromis niloticus), piracanjuba (Brycon orbignyanus) and pacu (Piaractus mesopotamicus) maintained under controlled conditions for a period of 30 days. Values are means of 50 random cells measured in 11-15 blood smears.
Figure 1 in Myxobolus spp. (Cnidaria: Myxobolidae) in the circulating blood of fishes from Goiás and Mato Grosso States, Brazil: case report
Figure 1. Blood smears of Myxobolus spp. parasites in the circulating blood of fishes from Goiás State and Mato Grosso State, Brazil (A-D): (A) Morphological type 1 (M1) of Myxobolus sp. in the blood of Tetragonopterus araguaiensis; (B-D) Morphological type 2 (M2) of Myxobolus sp. in the blood of Myleus rubriprinnis (b) and Pygocentrus nattereri (c-d). Polar capsule (PC); Sporoplasm (SP).
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.