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FIGURE 8 in Testing hypothesis of skeletal unity using bone histology: The case of the sauropod remains from the Howe-Stephens and Howe Scott quarries (Morrison Formation, Wyoming, USA)
FIGURE 8. View of outer cortex of SMA 0015 "David" femur with the characteristic orange, diagenetic coloration which can be observed in all the SMA 0015 "David" samples. This image was taken from the outer cortex of SMA 0015 "David" femur.
Analysis of Customer Satisfaction of Using Kios-K Machine in Fast Food Services: Case of Indonesian
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Supplementary material 1 from: Balzan MV, Debono I (2018) Assessing urban recreation ecosystem services through the use of geocache visitation and preference data: a case-study from an urbanised island environment. One Ecosystem 3: e24490. https://doi.org/10.3897/oneeco.3.e24490
Supplementary Information
Figure 2 from: Lavesque N, Daffe G, Grall J, Zanol J, Gouillieux B, Hutchings P (2019) Guess who? On the importance of using appropriate name: case study of Marphysa sanguinea (Montagu, 1813). ZooKeys 859: 1-15. https://doi.org/10.3897/zookeys.859.34117
Figure 2 Marphysasanguinea (MNHN-IA-TYPE 1856): A parapodium from anterior chaetiger B parapodium from mid-body C parapodia from posterior chaetiger D parapodium from posterior chaetiger. Abbreviation: SH, Subacicular hook. Scale bars: 1 mm (B), 500µm (A, C), 100µm (D).
Figure 1 from: Lavesque N, Daffe G, Grall J, Zanol J, Gouillieux B, Hutchings P (2019) Guess who? On the importance of using appropriate name: case study of Marphysa sanguinea (Montagu, 1813). ZooKeys 859: 1-15. https://doi.org/10.3897/zookeys.859.34117
Figure 1 Marphysasanguinea: A anterior part, dorsolateral view (MNHN-IA-TYPE 1856) B anterior part, ventral view (MNHN-IA-TYPE 1856) C anterior part, lateral view (MNRJP002048) D Maxillae, dorsal view (MNHN-IA-TYPE 1856). Key: white arrow showing eye; MI to MV, maxillae I to V, Mc, maxillary carriers. Scale bars: 2 mm (A–C), 1mm (D).
Figure 4 from: Lavesque N, Daffe G, Grall J, Zanol J, Gouillieux B, Hutchings P (2019) Guess who? On the importance of using appropriate name: case study of Marphysa sanguinea (Montagu, 1813). ZooKeys 859: 1-15. https://doi.org/10.3897/zookeys.859.34117
Figure 4 Maximum Likelihood tree of valid species of Marphysa and different Marphysasanguinea available in GenBank, based on cytochrome oxidase I (COI) sequences and Kimura-2-parameters model. Bootstrap values on nodes if >50. Sequence accession numbers refer to Table 1.
Figure 3 from: Lavesque N, Daffe G, Grall J, Zanol J, Gouillieux B, Hutchings P (2019) Guess who? On the importance of using appropriate name: case study of Marphysa sanguinea (Montagu, 1813). ZooKeys 859: 1-15. https://doi.org/10.3897/zookeys.859.34117
Figure 3 SEM images of Marphysasanguinea: A isodont, symmetrical pectinate chaetae from anterior chaetiger (AM W.49086, 3rd chaetiger) B isodont, symmetrical pectinate chaetae from mid-body chaetiger (AM W.49086, chaetiger 108) C the two types of pectinate chaetae (AM W.49086, far posterior chaetiger) D subacicular bifid hook (AM W.49086, chaetiger 142). Numbers in white circles indicate the type of pectinate chaetae.
Fig. 3. Acanthamoeba specific PCR using JDP1 in First Report of a Case of Prostatitis Due to Acanthamoeba in a Dog
Fig. 3. Acanthamoeba specific PCR using JDP1/JDP2 primers. Lane 1: Molecular Weight Marker 100bp ladder; Lane 2: Prostate Fluid; Lane 3: Non-Nutrient Agar Amoebic Culture; Lane 4: Axenic culture; Lane 5: Positive control Acanthamoeba castellani Neff ATCC 30010 DNA; Lane 6: Negative control, bidistilled water.
Fig. 2 in The Use of Testate Amoebae in Monitoring Peatland Restoration Management: Case Studies from North West England and Ireland
Fig. 2. Top: The sampling site on Astley bog in 1998 when the samples described in Davis and Wilkinson (2004) were taken. Bottom: Danes Moss in 1999 when the samples described in Davis and Wilkinson (2004) were taken.
Fig. 6. A in The Use of Testate Amoebae in Monitoring Peatland Restoration Management: Case Studies from North West England and Ireland
Fig. 6. A: Surface testate samples from a raised 'hummock' site on Holcroft Moss. B: Surface testate samples from bare peat on a path at Holcroft Moss. Note that in the older literature (including all the more accessible identification guides) Archerella flavum is refered to as Amphitrema flavum.
Fig. 1 in The Use of Testate Amoebae in Monitoring Peatland Restoration Management: Case Studies from North West England and Ireland
Fig. 1. Left: map of UK and Ireland showing locations of sites mentioned in text. Right Top: NW England, showing 1. Chat Moss (Astley Moss as cut-out), 2. Holcroft Moss and 3. Danes Moss. Right Bottom: Location of Ardagullion Bog, Co. Longford.
Fig. 3 in The Use of Testate Amoebae in Monitoring Peatland Restoration Management: Case Studies from North West England and Ireland
Fig. 3. Top: A general view across the current (in 2012) surface of Holcroft Moss from close to our core site. Bottom: The edge of Holcroft Moss (in 2011) showing both the fence designed to keep the sheep used for conservation grazing on the bog and – between the fence and the taller vegetation – the plastic piling sunk into the peat to try and maintain a wetter bog surface.
Multi-Robot Cell Use Case - Prism System Model
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Dataset of the article : Socio-ecological metabolism and rural livelihood conditions: two case studies on forest litter uses in France and Poland (1875-1910)
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Articles using 3 case tests
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Articles using 4 case tests
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DEVELOPING AUTONOMOUS SKILLS OF LANGUAGE LEARNERS USING AI: CASE STUDIES FROM FERGANA STATE UNIVERSITY AND TUIT FERGANA BRANCH UNIVERSITY
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Figure 1 from: Samyn Y, Sonet G, d'Acoz C (2021) Exploring the use of micro-computed tomography (micro-CT) in the taxonomy of sea cucumbers: a case-study on the gravel sea cucumber Neopentadactyla mixta (Östergren, 1898) (Echinodermata, Holothuroidea, Phyllophoridae). ZooKeys 1054: 173-184. https://doi.org/10.3897/zookeys.1054.67088
Figure 1 Neopentadactyla mixta (Östergren, 1898) A focus-stacked view of the dorsal-lateral view of dissected specimen B focus-stacked view of the ventral–lateral view of dissected specimen C focus-stacked view of the dorsal–lateral view of a non-dissected specimen D focus-stacked view of the ventral–lateral view of a non-dissected specimen ESEM view of the rosettes from the shaft of a tentacle FSEM view of the 2-pillared tables from the introvert GSEM view of the rods and rosettes from a tentacle tip HSEM view of the 4-pillared tables from the dorsal body wall ISEM view of the 4-pillared tables from the ventral body wall JSEM view of the plates from the dorsal tube feet KSEM view of the plates from the ventral tube feet LSEM view of half of an end-plate from a ventral tube foot. Scale bars: 1 cm (A–D); 50 μm (E–L).
Figure 2 from: Samyn Y, Sonet G, d'Acoz C (2021) Exploring the use of micro-computed tomography (micro-CT) in the taxonomy of sea cucumbers: a case-study on the gravel sea cucumber Neopentadactyla mixta (Östergren, 1898) (Echinodermata, Holothuroidea, Phyllophoridae). ZooKeys 1054: 173-184. https://doi.org/10.3897/zookeys.1054.67088
Figure 2 Neopentadactyla mixta (Östergren, 1898) A micro-CT scan visualizing the position of the calcareous ring B lateral view with micro-CT imaging of the anterior part of the calcareous ring (AR: most anterior radial piece; AIR: most anterior interradial pieces; SAR: subsequent anterior radial pieces; SAIR: subsequent interradial anterior pieces; Mesh: meshwork of radial and interradial median to distal pieces) C oblique view with micro-CT imaging showing a guttered internal side of the calcareous ring D focus-stacked view of the calcareous ring and associated structures (T: tentacles; LM: longitudinal muscle with bifurcation point (BfP); PV: Polian vesicle: SC: stone canal). Scale bars: 1 cm (A–D).
FIG. 2 in First Systematic Study using the Variability of the Residual Colour Patterns: The Case of the Paleogene Seraphsidae (Mollusca, Gastropoda, Stromboidea)
FIG. 2. — Variability of the extant species Terebellum terebellum (Linnaeus, 1758) in dorsal view and normal light: A-D, T. terebellum form punctulorum (RÖding, 1798); E, T. terebellum form delicatum Kuroda & Kawamoto, 1961, MNHN IM, Segond Channel, Santo, Vanuatu; F-J, T. terebellum form nebulosum (RÖding, 1798); A, MNHN IM, Grand Récif Sud, New Caledonia; B, MNHN IM, Grand Récif Sud, New Caledonia; C, MNHN IM, Secteur de Balabio, New Caledonia; D, MNHN IM, Grand Récif Sud, New Caledonia; F, MNHN IM, Plateau des Chesterfield; G, MNHN IM, Plateau des Chesterfield); H, MNHN IM, Aésé Island, Santo, Vanuatu; I, MNHN IM, Baie des Citrons, Nouméa, New Caledonia; J, MNHN IM, Quatre Bancs de l'Ouest, lagoon of Nouméa, New Caledonia; K, T. terebellum, MNHN IM, Plateau des Chesterfield. Scale bars: 10 mm. Photographs by C. Lemzaouda (MNHN).
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.