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Fig. 3 in The most complete amiid fish from the Coal Creek Member of the Eocene Kishenehn Formation in northwestern Montana
Fig. 3. Amiid fish Amia sp., USNM 618000, from the Spring Site, Montana, USA; the Kishenehn Formation's Coal Creek Member, 43.5 Ma (Eocene). Skull in left dorsolateral view; three-dimensional model (A1), illustration with labeled elements (A2). The letter following the anatomical abbreviation denotes the left (-l) or right (-r) element. Abbreviations: ar, posterior articular element; cl, cleithrum; d, dentary; dpt, dermopterotic; dsp, dermosphenotic; es, extrascapular; fr, frontal; le, lateral ethmoid; n, nasal; op, opercle; pa, parietals; pla, anterior parietal pit line; pmx, premaxilla; po1, po2, postinfraorbitals 1, 2; rar, retroarticular; ro, rostral; so, subinfraorbitals; sop, subopercle; C1, C2, vertebral centra 1, 2.
FIG. 4 in A complete description and conservation assessment of Riella affinis Howe & Underwood (Riellaceae, Sphaerocarpales) new to continental Europe
FIG. 4. — Riella affinis Howe & Underwood: A, habit; B-D, vegetative scales; E, cells from margin of thallus wing; F, female involucre; G, cross-section of female involucre showing seven wings; H, spore in distal view; I, spore in proximal view; J, spore spines from distal face; K, spore spines from proximal face. (all from VAL-Briof. 11.797). Scale bars: A, 5 mm; B, C, D, 100 μm; E, 200 μm; F, G, 500 μm; H, I, 30 μm; J, K, 8 μm.
FIG. 3 in A complete description and conservation assessment of Riella affinis Howe & Underwood (Riellaceae, Sphaerocarpales) new to continental Europe
FIG. 3. — LM and SEM images of spores of Riella affinis Howe & Underwood: A, distal view; B, spines and reticulum from distal pole; C, spines from distal side; D, equatorial row of spines; E, proximal view; F, spines from proximal side; G, distal view; H, spines and reticulum of basal membranes at distal pole; I, spines from distal side; J, proximal view; K, transition between distal and proximal side, showing the equatorial row of distal spines; L, proximal spines and rugose spore surface. (all from VAL-Briof. 11.797). Scale bars: A, E, 50 μm; B, C, D, F, 10 μm; G, J, 30 μm; H, 9 μm; I, 5 μm; K, L, 8 μm.
FIG. 1 in A complete description and conservation assessment of Riella affinis Howe & Underwood (Riellaceae, Sphaerocarpales) new to continental Europe
FIG. 1. — World distribution of Riella affinis Howe & Underwood. Each symbol represents a population. Known records of R. affinis are designated by black dots, new records by a star (populations from Caja and Viso lagoons, Las Lomas, Malaga province, Spain).
FIG. 2 in A complete description and conservation assessment of Riella affinis Howe & Underwood (Riellaceae, Sphaerocarpales) new to continental Europe
FIG. 2. — Habitat, LM and SEM images of Riella affinis Howe & Underwood: A, habitat at the Caja lagoon; B, one individual showing the lobulate wing; C, thallus apex showing a developing winged female involucre with a sporophyte enclosed and antheridia solitary or in small groups in sinuses of the thallus wing (arrowed); D, E, two female involucres showing the variation in involucre wing morphologies; F, SEM image of female involucre showing an interrupted wing (all from VALBriof. 11.797). Scale bars: B, 5 mm; C, 500 μm; D, F, 200 μm; E, 300 μm.
Central Italy Complete Daily Precipitation Series
<p>The "Central Italy Complete Daily Precipitation Series" dataset provides a meticulously gap-filled daily precipitation record for 201 stations in Central Italy from 1951 to 2019. Using quantile mapping, spatial interpolation, machine learning, and multi-strategy merging techniques, the dataset ensures serial completeness and high accuracy. It incorporates data from neighboring stations and ERA5 estimates, validated through quality control measures such as Correlation Coefficient (CC), Root Mean Square Error (RMSE), Relative Bias, and Kling-Gupta Efficiency (KGE). This dataset is ideal for hydroclimatic modeling and projections.</p> <p>The dataset includes a CSV file with essential station information, such as station ID, latitude, longitude, elevation, and station name. The observed, estimated, and final Serially Complete Dataset are available in MAT format, with each column representing a time series of a station in the same order as in the CSV file. Additionally, the Nearby Info file provides the correlation coefficient (CC) and the distance between each target station and its assigned nearby stations, with each column corresponding to a target station in the same order as in the CSV file.</p>
Figure 5. Bayesian Inference tree calculated with complete cox1 in Novel phylogenetic clade of avian Haemoproteus parasites (Haemosporida, Haemoproteidae) from Accipitridae raptors, with description of a new Haemoproteus species
Figure 5. Bayesian Inference tree calculated with complete cox1 (1428 bp), cox3 (753 bp), and cytb (1127 bp) sequences of haemosporidian parasites and Klossiella equi (MH203050) and Klossia razorbacki (MT084562) as the outgroup. Bayesian posterior probabilities and Maximum Likelihood bootstrap values are indicated at most nodes. The scale bar indicates the expected number of substitutions per site according to the model of sequence evolution applied.
Dataset: Complete Solaria, Inc. (CSLRW) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Complete Solaria, Inc. (CSLR) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Figure 3 in Complete Checklist Of Myxomycetes In Latvia
Figure 3. Lamproderma elasticum: A - sporocarp with visible peridium as a collar, columella and capillitium, B - capillitium and dry spores. Photo: J.Kluša.
Figure 1 in Complete Checklist Of Myxomycetes In Latvia
Figure 1. Comatricha meandrispora: A - two sporocarps with visible columella and capillitium, B - spores. Photo: J. Kluša.
MAHTE Climatology Complete Dataset
<p>This dataset contains information for all Mesoscale Airmasses with High Theta-e (MAHTEs) collected from the Automated Surface Observing System (ASOS) for the period of January 2000 through June 2022. Data are provided in a .csv file, with each row corresponding to an individual MAHTE. Each column corresponds to one of the following data points:</p> <ul> <li>station: four letter code corresponding to the ASOS station where the MAHTE was identified</li> <li>index: line within the monthly ASOS text file where the MAHTE was identified (after erroneous/incomplete lines have been removed)</li> <li>datetime: date/time of MAHTE identification</li> <li>mahteflag: series of internal flags detailing MAHTE identification process, appearing in the following order <ul> <li>w1: indicates passage of wind test</li> <li>t1: indicates passage of thermodynamic tests</li> <li>r0/r1: indicates a retrograding/progressive MAHTE, respectively</li> <li>s1: indicates passage of size test</li> <li>w1: unused relic of previous algorithm version</li> </ul> </li> <li>dthte: change in theta-e across the boundary (cool side — warm side, regardless of MAHTE orientation)</li> <li>dtemp: change in temperature across the bounary (cool side — warm side, regardless of MAHTE orientation)</li> <li>u0: ground speed of boundary</li> <li>width: width of MAHTE</li> <li>duration: residence time of MAHTE over the ASOS station</li> <li>thermodelay: time required to obtain the required thermodynamic shift for passage of thermodynamic tests (0 = five minutes, 1 = ten minutes)</li> <li>envdwptdep: dew point depression on the warm side of boundary</li> <li>mahtedwptdep: dep point depression within the MAHTE</li> <li>mahtecape: Convective Available Potential Energy (CAPE) within the MAHTE</li> <li>envcape: CAPE on the warm side of the boudnary</li> <li>mahte06bwd: 0-6 bulk wind difference within the MAHTE</li> <li>env06bwd: 0-6 bulk wind difference on the warm side of the boundary</li> <li>ddwpt: change in dew point depression across the boundary (warm side — cool side, regardless of MAHTE orientation)</li> </ul> <p> </p>
Figure 3 in The complete mitochondrial genome of Barbatula quignardi (Băcescu-Meşter, 1967) (Teleostei, Nemacheilidae)
Figure 3. – Maximum Likelihood phylogenetic tree of Barbatula mitogenomes; bootstrap values beside the nodes.
Figure 1 in The complete mitochondrial genome of Barbatula quignardi (Băcescu-Meşter, 1967) (Teleostei, Nemacheilidae)
Figure 1. – Voucher of the sequenced mitogenome, MNHN- IC-2010-1064 (FFFtag4260), 41.7 mm SL, Lez River at Prades-leLez (Hérault Dept.), 24th Nov. 2010, Denys and ONEMA coll.
Figure 2. – Maximum Likelihood phylogenetic tree inferred with the 13 in The complete mitochondrial genome of Thymallus thymallus (Linnaeus, 1758) (Actinopterygii, Salmonidae) obtained by long range PCRs and double multiplexing
Figure 2. – Maximum Likelihood phylogenetic tree inferred with the 13 protein coding genes. The values of bootstrap are represent- ed beside the nodes.
FIGURE S4 in An unusual new genus of istiodactylid pterosaur from China based on a near complete specimen
FIGURE S4. Close up of part of the large patch of probable skin on ELDM 1000. Scale bar has 1 cm divisions.
FIGURE S1 in An unusual new genus of istiodactylid pterosaur from China based on a near complete specimen
FIGURE S1. Close up of the premaxillary teeth of ELDM 1000 in lateral view. Scale bar has 1cm divisions.
FIGURE 7 in An unusual new genus of istiodactylid pterosaur from China based on a near complete specimen
FIGURE 7. Pes of ELDM 1000. Abbreviations throughout are as follows: t, tibia; tl, tarsals; I, metatarsal I; IV, metatarsal IV; V, metatarsal V. Scale bar is 20 mm.
FIGURE 6 in An unusual new genus of istiodactylid pterosaur from China based on a near complete specimen
FIGURE 6. Manus of ELDM 1000. Abbreviations throughout are as follows: etp, extensor tendon process; mc–I, metacarpal I; wmc, wing metacarpal; I, digit I; II, digit II; III, digit III; IV–1, wing phalanx I. Scale bar is 20 mm.
FIGURE 4 in An unusual new genus of istiodactylid pterosaur from China based on a near complete specimen
FIGURE 4. Chest region of ELDM 1000. Scale bar is 50 mm. Abbreviations throughout are as follows: cdv, cervicodorsal vertebrae; co, coracoid; ep, epiphysis; hu, humerus; mn, mandible; pb, pubis; r, rib; rd, radius; sc, scapula; sf, soft tissues; st, sternum; ul, ulna.
ScienceDex guides
Understand access before you commit
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.