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FIGURE 1. Thismia bokorensis from the type locality. A–B. Flowers. C in Flora of Bokor National Park VII: Thismia bokorensis (Burmanniaceae), a new species representing a new generic record
FIGURE 1. Thismia bokorensis from the type locality. A–B. Flowers. C. Flowering plant.
FIGURE 13. Collection localities for Psolidium kharlamenkoi n in Psolidium kharlamenkoi-a new species of holothurian (Holothuroidea Dendrochirotida: Psolidae) from the Kuril Islands
FIGURE 13. Collection localities for Psolidium kharlamenkoi n. sp.
Figure 35 in Uncovering Local Endemism in the Kimberley, Western Australia: Description of New Species of the Genus Amplirhagada Iredale, 1933 (Pulmonata: Camaenidae)
Figure 35. SEM photographs of Amplirhagada decora n.sp. (A–C) Shell, paratype AMS C463700: (A) apical whorl viewed from above (scale 1 mm); (B) sculpture on first three whorls viewed from above (scale 1 mm); (C) sculpture on last whorl (scale 100 µm). (D) Jaw, paratype AMS C463698 (scale 100 µm). (E–G) Radula, paratype AMS C463698: (E) central and lateral teeth (scale 20 µm); (F) close-up of lateral teeth (scale 10 µm); (G) inner and middle marginal teeth (scale 20 µm).
Figure 42 in Uncovering Local Endemism in the Kimberley, Western Australia: Description of New Species of the Genus Amplirhagada Iredale, 1933 (Pulmonata: Camaenidae)
Figure 42. SEM photographs of Amplirhagada lamarckiana n.sp., holotype WAM S34612. (A–C) Shell: (A) apical whorl viewed from above (scale 200 µm); (B) sculpture on second to forth whorl viewed from above (scale 200 µm); (C) sculpture on upper part of last whorl (scale 200 µm). (D) Jaw (scale 100 µm). (E–F) Radula: (E) central and lateral teeth (scale 20 µm); (F) middle marginal teeth (scale 10 µm).
Figs. 54–59. Localities. 54 in New species and subspecies of Octavius from South Africa, with a key and additional distribution records (Coleoptera: Staphylinidae: Euaesthetinae)
Figs. 54–59. Localities. 54 – Fort Fordyce NR; 55 – Kogelberg NR; 56 – Mkhambati NR, forest at Mkhambati river; 57 – Mkhambati NR, Vulture Forest; 58 – Kologha State Forest (with Petr Bulirsch at background); 59 – Table Mt. NP, Echo valley.
FIG. 5 in Extraordinary Local Diversity of Disk-winged Bats (Thyropteridae: Thyroptera) in Northeastern Peru, with the Description of a New Species and Comments on Roosting Behavior
FIG. 5. Ventral views of the skulls of A, Thyroptera devivoi (ROM 35588♂); B, Thyroptera discifera (AMNH 16686♀); C, Thyroptera lavali (ROM 104026♀); D, Thyroptera tricolor (AMNH 273160♀); E, Thyroptera wynneae (CEBIOMAS 237♂, holotype). Scale bar = 5 mm.
FIG 5 in Eomakhaira molossus, A New Saber-Toothed Sparassodont (Metatheria: Thylacosmilinae) from the Early Oligocene (?Tinguirirican) Cachapoal Locality, Andean Main Range, Chile
FIG 5. Relative maxilla height and dentary depth (measured at m3–4 embrasure) in sparassodont specimens for which both maxilla and dentary are known, scaled to lower molar row length. Eomakhaira molossus is denoted by a star. Skulls of several taxa are illustrated to highlight variation. Skulls of Arctodictis sinclairi, Acyon myctoderos, Callistoe vincei, and Thylacosmilus atrox modified from Forasiepi (2009), Forasiepi et al. (2006), Babot et al. (2002), and Riggs (1934), respectively. Data for this figure can be found in table S1.
FIG. 5 in New material of Eocene Helaletidae (Perissodactyla, Tapiroidea) from the Irdin Manha Formation of the Erlian Basin, Inner Mongolia, China and comments on Related Localities of the Huheboerhe Area
FIG. 5. Occlusal view of lower cheek teeth of Paracolodon fissus and Desmatotherium mongoliense. A−B, P. fissus; A, left p2−m3 (IVPP V 22640); B, left p2−m3 (AMNH FM 81802); C−D, D. mongoliense; C, left p3−p4 (AMNH FM 81718, reversed); D, left p3−m3 (AMNH FM 20155, reversed).
Fig. 1 in First Precise Locality Data for Onthophagus atriglabrus Howden and Gill and New State Record for Onthophagus anewtoni Howden and Génier (Coleoptera: Scarabaeidae: Scarabaeinae) in Mexico
Fig. 1. Dorsal habitus of a) Onthophagus atriglabrus and b) Onthophagus anewtoni.
Figure 6 in Three new species of Callulina (Amphibia: Anura: Brevicipitidae) highlight local endemism and conservation plight of Africa's Eastern Arc forests
Figure 6. Snout–urostyle length in Callulina, showing mean, minimum, and maximum values.
FIGURE 3. Localities where Paralycaea gracilis and P in Hyperiids (Amphipoda, Hyperiidea) collected during the TALUD cruises in western Mexico. 5. Family Amphithyridae, with the description of a new species of Amphithyropsis Zeidler
FIGURE 3. Localities where Paralycaea gracilis and P. hoylei were captured during this survey.
FIGURE 1 in The Braconinae (Hymenoptera: Braconidae) of Turkey, with new locality records and descriptions of two new species of Bracon Fabricius, 1804
FIGURE 1. Bracon (Bracon) bachtiae Beyarslan sp. n.
Figure 1 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 1 - Distribution of Carabdytes upin, blue dots = sequenced specimens, white dots = other records. Lowland gap indicated by bars in the Bird's neck. Below, detailed map of central Papua New Guinea with localities for sequenced specimens.
Figure 3 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 3 - Morphological characters, above habitus, left Carabdytes upin tindige from the Bird's Head (12.0 mm long), right Carabdytes upin upin from Papua: Aipomek area (12.9 mm long); below left median lobe of aedeagus in lateral view of Carabdytes upin tindige (Carabdytes upin upin is identical), its paramere, right, paramere of Carabdytes upin upin from Papua: Aipomek area. Scale for genitalia is 0.1 mm.
Figure 2 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 2 - Maximum likelihood tree based on cox1 data, the tree was rooted with Rhantus guadalcanalensis Balke (pruned here), colored buttons represent diagnostic nuclear DNA characters and their positions in our sequence alignment (there are found characters supporting the node between Carabdytes 3084 and all others, and one that is shared between 3084 as well as the two specimens 4317 & 4318 in Simbai 138) .
Figures 15-17 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 15-17 - Cunaxoidinae key illustrations. Setae are removed from figures 16–17 for clarity 15a Idiosoma with poorly demarcated dorsal plates 15b Idiosoma with well demarcated dorsal plates 16a Pedipalp tibiotarsus with subapical process and small teeth present 16b Pedipalp tibiotarsus with subapical process and small teeth absent 17a Pedipalp tibiotarsus with a single pointed process 17b Pedipalp tibiotarsus with two pointed processes.
Figures 77-87 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 77-87 - Neoscirula key illustrations 77a Pedipalp basifemoral dorsal seta spine-like 77b Pedipalp basifemoral dorsal seta simple 78a Proterosomal shield with polygonal subcuticular sculpturing present 78b Proterosomal shield with polygonal subcuticular sculpturing absent 79a Sternal shield v-shaped posteriomedially, with polygonal subcuticular sculpturing absent 79b Sternal shield rounded posteriomedially, with polygonal subcuticular sculpturing present 80a Chelicera with dorsomedial reticulations present 80b Chelicera with dorsomedial reticulations absent 81a Pedipalp genua with hook-like apophysis present 81b Pedipalp genua with hook-like apophysis absent 82a Pedipalp tibiotarsal claw with tooth present 82b Pedipalp tibiotarsal claw with tooth absent 83a Pedipalp tibiotarsus with tubercle present 83b Pedipalp tibiotarsus with tubercle absent 84a Hypognathum with ventroapical shield-like process present 84b Hypognathum with ventroapical shield-like process absent 85a Chelicera tapering gradually 85b Chelicera tapering suddenly 86a Proterosomal shield with polygonal subcuticular sculpturing present 86b Proterosomal shield with polygonal subcuticular sculpturing absent 87a Subcapitulum with row of basal subcuticular sculpturing present 87b Subcapitulum with row of basal subcuticular sculpturing absent.
Figures 12-14 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 12-14 - Parabonzia key illustrations. 12a Unbranched pedipalp telofemoral seta 12b Multi-branched pedipalp telofemoral seta 13 Lightly barbed pedipalp tibiotarsal sigmoid seta 14 Spur-like process on femora III.
Figures 63-65 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 63-65 - Dactyloscirus key illustrations. 63a–d Dorsal idiosoma, lateral hysterosomal platelets present 64a–f Dorsal idiosoma, lateral hysterosomal platelet absent 65a Pedipalp telofemur with one apophysis, which is about as long as the width of the telofemur 65b Pedipalp telofemur with one apophysis, which is shorter than the width of the telofemur 65c, d Pedipalp telofemur with two apophyses, one apical and one basal which is flattened and disc-shaped.
Figures 54- 55 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 54- 55 - Cunaxa key illustrations. 54a–e Proterosomal shield, dorsal 54a Proterosomal shield with oval area formed by broken striae around pt present, mps present 54b Proterosomal shield with oval area formed by broken striae around pt absent, mps present 54c Proterosomal shield striated, mps present 54d Proterosomal shield smooth, mps present 54e Proterosomal shield with lps absent 55a Smooth f1, h1 55b Spiculate f1, h1.
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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.