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Fig. 5 in Re-appraisal of the families and subfamilies of Trapezioidea Miers, 1886, with establishment of a new family, Ectaesthesiidae (Crustacea: Decapoda: Brachyura)
Fig. 5. Frontal view of cephalothorax showing epistome, orbits, antennules, and antenna. A, Tetralia cinctipes, male (9.5 × 9.5 mm) (ZRC 2019.0701), Japan; B, Trapezia cymodoce, male (11.6 × 9.9 mm) (ZRC 1999.2385), Singapore; C, Sphenomerides trapezioides, male (7.8 × 5.9 mm) (ZRC 2000.2103), Madagascar; D, Calocarcinus africanus, male (9.3 × 7.2 mm) (ZRC 2008.1281), New Caledonia; E, Domecia acanthophora, male (7.4 × 5.4 mm) (ZRC 2000.1551), Caribbean Sea, Panama; F, Cherusius triunguiculatus, female (6.4 × 4.6 mm) (ZRC 2016.0121), Easter Island.
Fig. 1. Dorsal habitus. A in Re-appraisal of the families and subfamilies of Trapezioidea Miers, 1886, with establishment of a new family, Ectaesthesiidae (Crustacea: Decapoda: Brachyura)
Fig. 1. Dorsal habitus. A, Ectaesthesius bifrons, male (12.8 × 9.0 mm) (LACM 1938.56), Galápagos Islands; B, Ectaesthesius bifrons, female (11.2 × 8.0 mm) (LACM 1938.56), Galápagos Islands; C, Tetralia cinctipes, male (9.5 × 9.5 mm) (ZRC 2019.0701), Japan; D, Tetraloides heterodactylus, male (7.6 × 7.1 mm) (ZRC 2019.0699), Japan.
FIG. 11 in A new Cretaceous psocodean family from the Charente-Maritime amber (France) (Insecta, Psocodea, Psocomorpha)
FIG. 11. — Strict consensus cladogram of the Psocomorpha including Arcantipsocus n. gen. and Electrentomum Enderlein, 1911. See Appendix for the matrix of character state used. *, all the genera belonging to the family.
Data for Cost Optimization of Shedding Mechanisms as a Product Family
<p>This the data from the numerical examples presented in "Accelerating Cost Optimization of Existing Product Family Designs Using Sensitivity Analysis on Component Commonalities" article. It contains the data of the results for the cost optimization of a shedding mechanism as a product family from two types of optimization: (i) brute-force and (ii) guided optimization: proposed method which uses sensitivity analysis on component commonalities. Each datum (.mat file) contains design variables (length of the four-bar mechanisms and motor locations) of a specific commonality matrix.</p>
Species and sex specific chemical composition in a concealed gland from an internal gland-like tissue of an African frog family
<p><span>Intraspecific chemical communication in frogs is understudied and the few published cases are limited to externally visible and male-specific breeding glands. Frogs of the family Odontobatrachidae, a West African endemic complex of five morphologically cryptic species, have large, fatty gland-like strands along their lower mandible. We investigated the general anatomy of this strand and analyzed its chemical composition. We found the strand to be present in males and females of all species. The strand varies in markedness, with well-developed strands usually found in reproductively active individuals. Although the strands are situated under the skin, they are connected to particular skin sections, the vocal sac in male frogs and a respective area in females. Gas-chromatography/mass spectrometry and multivariate analysis revealed, that the strands contain sex- and species-specific chemical profiles, which are consistent across geographically distant populations. The profiles varied between reproductive and non-reproductive individuals. Our results indicate that the gland-like strand in the Odontobatrachidae comprise a so far overlooked type of breeding related organ, potentially a gland, that most likely plays a role in the mating and/or breeding behavior of the five Odontobatrachus species. Our results highlight the relevance of multimodal signaling in anurans, and indicate that chemical signaling may not be restricted to sexually dimorphic, apparent skin glands.</span></p>
Short tandem repeat expansions in LRP12 are absent in familial and sporadic amyotrophic lateral sclerosis patients of European ancestry
<p>In patients of Asian ancestry, a heterozygous CGG repeat expansion of >100 units in <i>LRP12</i> is the cause of oculopharyngodistal myopathy type 1 (OPDM1), and has been associated with amyotrophic lateral sclerosis (ALS) when repeat lengths are between 61-100 units, although with unusually long disease duration and without significant upper motor neuron involvement. This study investigated if <i>LRP12</i> CGG tandem repeats were expanded in ALS patients of European ancestry. We screened whole-genome sequencing data from 608 sporadic ALS patients, 35 familial ALS probands, and 4,703 neurologically normal controls for the <i>LRP12</i> CGG expansion using ExpansionHunter v4. All individuals had <i>LRP12 </i>CGG repeat lengths between 3-25 units. Our results suggest that <i>LRP12 </i>CGG repeat expansions may only be present in ALS patients of Asian ancestry with atypical clinical presentations.</p>
Figure 2 in Review of the family Serranidae (Perciformes) from the Canary Islands (eastern-central Atlantic), with the first records of Serranus hepatus and Epinephelus aeneus
Figure 2. – Serranus hepatus from Tenerife, Canary Islands (GBIF-CFM-IEOCA 1199, 86.0 mm TL, 69.2 mm SL) (Credits: J.F. González-Jiménez, 2020).
Figure 1 in Review of the family Serranidae (Perciformes) from the Canary Islands (eastern-central Atlantic), with the first records of Serranus hepatus and Epinephelus aeneus
Figure 1. – The Canary Islands. Collection and sighting locations: (Ê) Serranus hepatus; (■) Epinephelus aeneus; (●) Epinephelus costae (map adapted from BlueChart Atlantic v9.5).
Figure 11 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 11. Typhlodromus (Anthoseius) suecicus (Sellnick) (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermatheca; (D) Chelicera; (E) Tarsus leg IV.
Figure 12 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 12. Typhlodromus (Typhlodromus) baccettii Lombardini (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermatheca; (D) Chelicera; (E) Tarsus leg IV.
Figure 6 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 6. Proprioseiopsis sharovi (Wainstein) (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermathecae; (D) Chelicera; (E) Leg IV.
Figure 5 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 5. Proprioseiopsis gallus Karg (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermathecae; (D) Chelicera; (E) Leg IV.
Figure 4 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 4. Amblyseius meridionalis Berlese (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermatheca; (D) Chelicera; (E) Leg IV.
Figure 10 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 10. Typhlodromus (Anthoseius) kerkirae Swirski & Ragusa (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermathecae; (D) Chelicera; (E) Leg IV.
Figure 9 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 9. Typhloseiulus peculiaris (Kolodochka) (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermatheca; (D) Leg IV.
Figure 8 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 8. Neoseiulus insularis (Athias-Henriot) (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermatheca; (D) Chelicera; (E) Leg IV.
Figure 1 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 1. Kampimodromus florinensis Papadoulis, Emmanouel & Kapaxidi (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermathecae; (D) Chelicera; (E) Ventrianal shield, a variation; (F) Leg IV.
Figure 13 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 13. Metaseiulus (Metaseiulus) smithi (Schuster) (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermathecae; (D) Chelicera; (E) Leg IV.
Figure 3 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 3. Amblyseius herbicolus (Chant) (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Chelicera; (D) Spermatheca; E – Leg IV.
Figure 2 in Some new species records of the predatory mite family Phytoseiidae (Acari: Mesostigmata) from The Netherlands
Figure 2. Kampimodromus langei Wainstein & Arutunjan (Female): (A) Idiosoma, dorsal view; (B) Idiosoma, ventral view; (C) Spermathecae; (D) Chelicera; (E) Leg IV.
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.