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214 results for “Evolutionary systematics”
Supplementary material 5 from: Wongpim T, Komsuwan J, Janmanee C, Thongchot P, Limsampan S, Wichiannarat N, Chaowatut W, Suwanrat S, Dechruksa W, Veeravechsukij N, Glaubrecht M, Krailas D (2023) Freshwater pulmonate snails and their potential role as trematode intermediate host in a cercarial dermatitis outbreak in Southern Thailand. Evolutionary Systematics 7(2): 293-315. https://doi.org/10.3897/evolsyst.7.107847
Some characters of Schistosoma spindale found in this study and the reference sources
Supplementary material 6 from: Wongpim T, Komsuwan J, Janmanee C, Thongchot P, Limsampan S, Wichiannarat N, Chaowatut W, Suwanrat S, Dechruksa W, Veeravechsukij N, Glaubrecht M, Krailas D (2023) Freshwater pulmonate snails and their potential role as trematode intermediate host in a cercarial dermatitis outbreak in Southern Thailand. Evolutionary Systematics 7(2): 293-315. https://doi.org/10.3897/evolsyst.7.107847
Some characters of Clinostomum giganticum found in this study and the reference sources
Supplementary material 4 from: Wongpim T, Komsuwan J, Janmanee C, Thongchot P, Limsampan S, Wichiannarat N, Chaowatut W, Suwanrat S, Dechruksa W, Veeravechsukij N, Glaubrecht M, Krailas D (2023) Freshwater pulmonate snails and their potential role as trematode intermediate host in a cercarial dermatitis outbreak in Southern Thailand. Evolutionary Systematics 7(2): 293-315. https://doi.org/10.3897/evolsyst.7.107847
Some characters of Schistosoma indicum found in this study and the reference sources
Supplementary material 2 from: Wongpim T, Komsuwan J, Janmanee C, Thongchot P, Limsampan S, Wichiannarat N, Chaowatut W, Suwanrat S, Dechruksa W, Veeravechsukij N, Glaubrecht M, Krailas D (2023) Freshwater pulmonate snails and their potential role as trematode intermediate host in a cercarial dermatitis outbreak in Southern Thailand. Evolutionary Systematics 7(2): 293-315. https://doi.org/10.3897/evolsyst.7.107847
Some characters of Echinostoma spiniferum found in this study and the reference sources
Supplementary material 3 from: Wongpim T, Komsuwan J, Janmanee C, Thongchot P, Limsampan S, Wichiannarat N, Chaowatut W, Suwanrat S, Dechruksa W, Veeravechsukij N, Glaubrecht M, Krailas D (2023) Freshwater pulmonate snails and their potential role as trematode intermediate host in a cercarial dermatitis outbreak in Southern Thailand. Evolutionary Systematics 7(2): 293-315. https://doi.org/10.3897/evolsyst.7.107847
Some characters of Echinostoma revolutum found in this study and the reference sources
Supplementary material 1 from: Wongpim T, Komsuwan J, Janmanee C, Thongchot P, Limsampan S, Wichiannarat N, Chaowatut W, Suwanrat S, Dechruksa W, Veeravechsukij N, Glaubrecht M, Krailas D (2023) Freshwater pulmonate snails and their potential role as trematode intermediate host in a cercarial dermatitis outbreak in Southern Thailand. Evolutionary Systematics 7(2): 293-315. https://doi.org/10.3897/evolsyst.7.107847
Some characters of Echinoparyphium recurvatum found in this study and the reference sources
Figure 4 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications
Figure 4. - Scales of Obaichthys africanus (MRS 45). A-B: Cross section of two scales (transmitted natural light), showing the three superimposed layers: pluristratified ganoine (g), dentine (d) and bony basal plate (bp); A: MNHN-Histos 1960. The arrowheads point to five ridges of ganoine. The basal plate (bp) is avascular; B: MNHN-Histos 1963. The arrowheads point to three ridges of ganoine. A vascular canal (vc) crosses the whole scale; C-H: Cross sections of scales (transmitted natural light); C: MNHN-Histos 1960. Detail of A showing the two median ridges (arrowheads) constituted of pluristratified ganoine (g), each one above a dentine unit (d). The two ridges lie on an avascular bony basal plate crossed by numerous canaliculi of Williamson. Two sections of vascular canals just below the right dentine unit are visible (arrows). Notice the growth marks (gm) in the basal plate (bp); D: MNHN-Histos 1964. Detail of the ganoine layer (g) showing two odontode bases (arrows) and a resorbed area (asterisk) characterized by its irregular alveolate walls. Two minor remodelling areas (arrowheads) are seen in the ganoine layer; E: MNHN-Histos 1964. Detail of an odontode base (arrow) in the ganoine layer. One can also show two canaliculi of Williamson crossing the ganoine strata (arrowheads); F: MNHN-Histos 1964. Detail of a dentine unit (d) organized above a vascular loop coming from the basal plate (bp), with numerous odontoblastic canalicles (black asterisks). (g = ganoine); G: MNHN-Histos 1964. Detail of a dentine bulk (d) subtending a ganoine ridge (g). The odontoblastic canalicles radiating from the vascular ramification are visible. A canaliculus of Williamson (arrowhead), and some osteocytes in the bony basal plate (white asterisk) are visible; H: MNHN-Histos 1963). Detail of the bony basal plate showing a dichotomized canaliculus of Williamson (arrow). Scale bars: A, B = 1 mm; C = 250 µm; D, F = 100 µm; E = 100 µm).
Figure 2 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications
Figure 2. - Scales of Bawitius (SEM). Upper surface. A: A ridged scale. The circles and the arrowheads localize respectively the areas of the observation of ganoine microreliefs and vascular apertures; B: Detail of the posterior extremity of a ganoine ridge. The contact between the ganoine and the dentine looks regular. Vascular apertures on the ganoine surface are visible (arrowheads); C: Detail of a ganoine ridge showing its contact with dentine (black arrowheads). The white arrowheads and arrows point to holes indicating vascular canal apertures respectively at the surface of ganoine and at the surface of dentine; D: Detail of ganoine near the dentine layer showing some microtubercles on the right and elongate hollows on the left; E: Detail of ganoine at the surface of a ridge showing the thin elongate hollows. (d = dentine; g = ganoine). Scale bars: A = 500 µm; B = 25 µm; C = 100 µm; D, E = 10 µm.
Figure 1 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications
Figure 1. - Isolated scales of the Kem Kem beds. A, C-H: Scales studied by Tabaste (1963). A: Adrianaichthys sp. (fig. 9, Pl X); B: Adrianaichthys sp., scale sampled by one of us D.D.; C-E: Obaichthys sp. (figs 6, 7, 9, Pl XI); F,H: Bawitius sp. (figs 4, 5, Pl XI); G, I: Palaeonisciformes (figs 1, 2, Pl XI). Scale bars: A, B, F-I = 1 cm; C-E = 5 mm.
Data from: Organellar phylogenomics inform systematics in the green algal family Hydrodictyaceae (Chlorophyceae) and provide clues to the complex evolutionary history of plastid genomes in the green algal Tree of Life.
Open the record for dataset details and reuse information.
Data from: Mapping a systematic ribozyme fitness landscape reveals a frustrated evolutionary network for self-aminoacylating RNA
Open the record for dataset details and reuse information.
A systematic p53 mutation library links differential functional impact to cancer mutation pattern and evolutionary conservation
GEO Series GSE115072. Homo sapiens. 47 samples. Type: Other.
Figure 5 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications
Figure 5. - Legends on opposite page.
Figure 5 in Intraspecific versus interspecific variation in Miocene Great Basin mylagaulids: implications for systematics and evolutionary history
Figure 5. Cranial morphology of UCMP 316437, the skull of a juvenile Alphagaulus vetus. A, ventral view; B, lateral view.Scale bar = 1 cm.
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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.