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Fig. 11 in Description of five new and six known species of the genus Basirotyleptus Jairajpuri, 1964 (Nematoda: Dorylaimida: Tylencholaimoidea) from the Western Ghats, India
Fig. 11. Basirotyleptus constrictus sp. nov., ♀ (LM photographs). A, C–F, H–I, K. Paratypes (AMU/ ZD/NC/Basirotyleptus constrictus/2–5). B, G, J. Holotype (AMU/ZD/NC/Basirotyleptus constrictus/1). A. Paratype 5. C. Paratype 7. D–E. Paratype 5. F. Paratype 2. H. Paratype 1. I, K. Paratype 3. A–B. Anterior region. C. Anterior region showing amphid. D. Pharyngeal region. E–F. Pharyngeal bulb. G–H. Genital system. I–J. Posterior region. K. Posterior end. Scale bars = 10 µm.
Fig. 14 in Description of five new and six known species of the genus Basirotyleptus Jairajpuri, 1964 (Nematoda: Dorylaimida: Tylencholaimoidea) from the Western Ghats, India
Fig. 14. Basirotyleptus neocaudatus sp. nov. A, C, E–F, I. Holotype, ♀ (AMU/ZD/NC/Basirotyleptus neocaudatus/1). B, H. Paratype, ♂ (AMU/ZD/NC/Basirotyleptus neocaudatus/4). D. Specimen 10, ♀ (AMU/ZD/NC/Basirotyleptus neocaudatus/6). G. Paratype 1, ♀ (AMU/ZD/NC/Basirotyleptus neocaudatus/2). A. Entire female. B. Entire male. C. Female, anterior region showing amphid. D–E. Female, anterior region. F. Female, pharyngeal region. G. Female, genital system. H. Male, posterior region. I. Female, posterior region.
Fig. 3 in Observations On The Embryonic Development Of Trichuris Sylvilagi (Nematoda, Trichuridae) Under Laboratory Conditions
Fig. 3. Changes in the size of Trichuris sylvilagi eggs during embryogenesis at the temperature of 30 ° C: а — egg length; b — egg width; с — egg plug length; d — egg plug width; е — eggshell thickness (μm). А — zygote stage; В — larval stage; the small squares in the centre corresponds to the median, the lower and upper borders of the large rectangular correspond to the first and the third quartiles, respectively, vertical line segments, directed up and down from the rectangular, correspond to minimum and maximum values; * P <0.05, ** P <0.01, *** P <0.001 — relative to the parameters of eggs at the zygote stage (n = 15).
Fig. 1 in Observations On The Embryonic Development Of Trichuris Sylvilagi (Nematoda, Trichuridae) Under Laboratory Conditions
Fig. 1. Stages of embryonic development Trichuris sylvilagi: а — zygote; b — formation of two blastomeres; с — blastomere cleavage; d — bean-shaped embryo; e — tadpole-shaped embryo; f — larva.
Fig. 1 in The First Record And Description Of Male Of Paralongidorus Rex (Nematoda, Longidoridae) From Ukraine With Comments On Female Uterine Eggs Morphology
Fig. 1. Paralongidorus rex Andrássy, 1986: A — female anterior region; B — part of female genital branch with egg; C — amphid; D — spicules; E — accessory pieces; F — male posterior region; G — supplements. Scale bar A–G, 10 µm.
Fig. 4 in The Viability of Haemonchus Contortus (Nematoda, Strongylida) and Strongyloides Papillosus (Nematoda, Rhabditida) Larvae Exposed to Various Flavourings and Source Materials Used in Food Production
Fig. 4. The effect of alcohol flavourings and their compounds on the viability of larvae of nematodes of Ruminantia: а — β-Ionone, b — Citronellol, с — Acetoin; for explanations see fig. 1.
Fig. 2 in The Viability of Haemonchus Contortus (Nematoda, Strongylida) and Strongyloides Papillosus (Nematoda, Rhabditida) Larvae Exposed to Various Flavourings and Source Materials Used in Food Production
Fig. 2. The effect of acetate flavourings upon the viability of larvae of nematodes of Ruminantia: а — Ethyl acetate, b — Benzyl acetate; for explanations see fig. 1.
Fig. 3 in The Viability of Haemonchus Contortus (Nematoda, Strongylida) and Strongyloides Papillosus (Nematoda, Rhabditida) Larvae Exposed to Various Flavourings and Source Materials Used in Food Production
Fig. 3. The effect of alcohol flavourings and their compounds on the viability of larvae of nematodes of Ruminantia: а — α-Terpineol, b — Benzyl alcohol, с — Citral, d — L-Linalool; for explanations see fig. 1.
Fig. 1 in The Viability of Haemonchus Contortus (Nematoda, Strongylida) and Strongyloides Papillosus (Nematoda, Rhabditida) Larvae Exposed to Various Flavourings and Source Materials Used in Food Production
Fig. 1. The effect of aldehyde flavourings on the viability of larvae of nematodes of Ruminantia: а — p-Anisaldehyde; b — Benzaldehyde; с — γ-Undecalactone; d — Cinnamaldehyde; the ordinate axis indicates the percentage of living nematode larvae in 24-hour experiment; the abscissa axis indicates the concentration of the active substance (%); (К) control, where the concentration of the active substance is 0 %; (L3) infective larvae of S. papillosusor H. contortus; (L1, L2) non-infective larvae of S. papillosus; small square in the centre corresponds to the median, lower and upper edge of the large rectangle corresponds to first and third quartiles, respectively, the vertical segments, directed upward and downward from the rectangles, correspond to minimum and maximum values (n = 8).
Fig. 5 in The Viability of Haemonchus Contortus (Nematoda, Strongylida) and Strongyloides Papillosus (Nematoda, Rhabditida) Larvae Exposed to Various Flavourings and Source Materials Used in Food Production
Fig. 5. The effect of D-limonene on the viability of larvae of nematodes of Ruminantia: for explanations see fig. 1.
Fig. 9 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 9. Morphometric parameters of free-living females of S. papillosus: а — body length; b — body width; c — length of esophagus; d — length of intestine; e — length of tail; f — distance to vulva; g — number of eggs; on the ordinate axis — length in µm, on the abscissa axis — species of host (Ch — Capra hircus, Oc — Oryctolagus cuniculus, Cp — Cavia porcellus).
Fig. 8 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 8. Morphometric parameters of S. papillosus males: a — body length; b – body width; c — length of esophagus; d — length of intestine; e — length of the tail; f — length of spicules; on the ordinate axis — length in µm, on the abscissa axis — species of host (Ch — Capra hircus, Oc — Oryctolagus cuniculus, Cp — Cavia porcellus).
Fig. 7 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 7. Free-living female of S. papillosus: a — general view; b — anterior part (the arrowheads indicate the bulbs); c — uterus with eggs (the pointer indicates the genital opening); scale bars 100 µm.
Fig. 5 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 5. Morphometric parameters of L3: а — body length; b — body width; c — length of esophagus; d — length of intestine; e — length of the tail end; on the ordinate axis — length in µm, on the abscissa axis — species of host (Ch — Capra hircus, Oc — Oryctolagus cuniculus, Cp — Cavia porcellus).
Fig. 6 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 6. Mature male of S. papillosus: a — general view; b — anterior part (arrowheads indicate bulbs); c — caudal part with spicules in lateral view; d — caudal part with spicules in dorsal view; scale bars 100 µm.
Fig. 3 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 3. Morphometric parameters of L2 of S. papillosus: а — body length; b — body width; c — length of esophagus; d — length of intestine; e — length of the tail; on the ordinate axis — length in µm, on the abscissa axis – species of host (Ch — Capra hircus, Oc — Oryctolagus cuniculus, Cp — Cavia porcellus).
Fig. 2 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 2. Morphometric parameters of L1 of S. papillosus: а — body length; b — body width; c — length of esophagus; d — length of intestine; e — length of tail; on the ordinate axis — length in µm, on the abscissa axis — species of host (Ch — Capra hircus, Oc — Oryctolagus cuniculus, Cp — Cavia porcellus).
Fig. 4 in Intraspecific Morphological Variation In Free- Living Stages Of Strongyloides Papillosus (Nematoda, Strongyloididae) Parasitizing Various Mammal Species
Fig. 4. Third-stage larva of S. papillosus: a — general view; b — anterior part (the pointer indicates the place where the esophagus joins the intestine); c — posterior part; scale bars 100 µm.
Fig. 5 in Morphological And Biological Characteristics Of Amidostomum Anseris (Nematoda, Amidostomatidae) From Anser Anser Domesticus
Fig. 5. Transverse striation of cuticle in Amidostomum anseris (n = 20) ♀ (а) and Ơ (b) at: 1 — anterior esophagus; 2 — middle esophagus; 3 — posterior esophagus; 4 — middle of body; 5 — base of cuticle process; 6 — middle of cuticle process; 7 — posterior to vulva; 8 — between vulva and anus; 9 — anus; 10 — between anus and base of the digitate process; 11 — base of the digitate process; 12 — spicule area.
Fig. 6 in Morphological And Biological Characteristics Of Amidostomum Anseris (Nematoda, Amidostomatidae) From Anser Anser Domesticus
Fig. 6. Stages of embryonic development of Amidostomum anseris: а — blastomere cleavage; b — larval formation; с — formation of L1 and L2; d — L3 (infective larva).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.