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Figure 2 from: Wood KR, Wagner WL (2017) Athyrium haleakalae (Athyriaceae), a new rheophytic fern species from East Maui, Hawaiian Islands: with notes on its distribution, ecology, and conservation status. PhytoKeys 76: 115-124. https://doi.org/10.3897/phytokeys.76.11637
Figure 2 - Map showing known distribution of Athyrium haleakalae, East Maui, HI, with upper right red dot indicating colonies in the headwaters of Kawakoe and Mokulehua, upper left in Helele'ike'oha, and lower red in Kīpahulu, near Palikea.
Figure 1 from: Wood KR, Wagner WL (2017) Athyrium haleakalae (Athyriaceae), a new rheophytic fern species from East Maui, Hawaiian Islands: with notes on its distribution, ecology, and conservation status. PhytoKeys 76: 115-124. https://doi.org/10.3897/phytokeys.76.11637
Figure 1 - Athyrium haleakalae K.R. Wood & W.L. Wagner. A–B habit C detail of adaxial pinnule showing venation and fleshy spines D detail of abaxial pinnule showing range of sori shapes E–F lower stipe scales G rhizome scale. A–G from Perlman et al. 23964 (BISH, PTBG, UC, US) (Illustration by Alice Tangerini).
Figure 7 from: Berneck BVM, Giaretta AA, Brandão RA, Cruz CAG, Haddad CFB (2017) The first species of Aplastodiscus endemic to the Brazilian Cerrado (Anura, Hylidae). ZooKeys 642: 115-130. https://doi.org/10.3897/zookeys.642.10401
Figure 7 - One of the four most parsimonious trees recovered. Asterisks indicate 100% Parsimony Jackknife absolute frequency; only values above 75% are shown. See Suppl. material 2 for details and complete locality names.
Figure 6 from: Berneck BVM, Giaretta AA, Brandão RA, Cruz CAG, Haddad CFB (2017) The first species of Aplastodiscus endemic to the Brazilian Cerrado (Anura, Hylidae). ZooKeys 642: 115-130. https://doi.org/10.3897/zookeys.642.10401
Figure 6 - A The habitat of Aplastodiscus lutzorum sp. n.: flooded gallery forests B A male in calling activity at Fazenda Água Limpa, Brasília, Distrito Federal, Brazil.
Figure 5 from: Berneck BVM, Giaretta AA, Brandão RA, Cruz CAG, Haddad CFB (2017) The first species of Aplastodiscus endemic to the Brazilian Cerrado (Anura, Hylidae). ZooKeys 642: 115-130. https://doi.org/10.3897/zookeys.642.10401
Figure 5 - Geographic distribution of Aplastodiscus cochranae (pink triangles), Aplastodiscus perviridis (green circle), and Aplastodiscus lutzorum sp. n. (blue squares, blue star indicates its type-locality). Note that Aplastodiscus lutzorum shows a disjunctive distribution regarding the other Aplastodiscus species, occurring deep within Cerrado Biome.
Figure 1 from: Berneck BVM, Giaretta AA, Brandão RA, Cruz CAG, Haddad CFB (2017) The first species of Aplastodiscus endemic to the Brazilian Cerrado (Anura, Hylidae). ZooKeys 642: 115-130. https://doi.org/10.3897/zookeys.642.10401
Figure 1 - Holotype of Aplastodiscus lutzorum sp. n. (AAG-UFU 864). A Lateral view of head B dorsal view of head C plantar view D palmar view. Scale bar 12 mm.
Figure 4 from: Berneck BVM, Giaretta AA, Brandão RA, Cruz CAG, Haddad CFB (2017) The first species of Aplastodiscus endemic to the Brazilian Cerrado (Anura, Hylidae). ZooKeys 642: 115-130. https://doi.org/10.3897/zookeys.642.10401
Figure 4 - A comparison between duration and frequency peak time of Aplastodiscus lutzorum (N = 12 males) and Aplastodiscus perviridis (N = 5 males). In both samples, calls are of topotypes.
Figure 3 from: Berneck BVM, Giaretta AA, Brandão RA, Cruz CAG, Haddad CFB (2017) The first species of Aplastodiscus endemic to the Brazilian Cerrado (Anura, Hylidae). ZooKeys 642: 115-130. https://doi.org/10.3897/zookeys.642.10401
Figure 3 - Above, audiospectrogram and oscillogram of three advertisement calls of the holotype of Aplastodiscus lutzorum sp. n. (Chapada dos Veadeiros, 12 December 2011, air temperature 20 °C); the background calls are from another male calling in antiphony. Bellow, audiospectrogram and oscillogram of three advertisement call of Aplastodiscus perviridis (Serra da Bocaina, 10, January 2012, air temperature 16 °C).
Figures 115-116 from: van Nieukerken E, Doorenweerd C, Nishida K, Snyers C (2016) New taxa, including three new genera show uniqueness of Neotropical Nepticulidae (Lepidoptera). ZooKeys 628: 1-63. https://doi.org/10.3897/zookeys.628.9805
Figures 115-116 - Hesperolyra gen. n., venation. 115 Hesperolyra diskusi, male paratype, slide EvN4501 116 Hesperolyra saopaulensis, female, veins labelled, slide EvN4505. Scale bars: 200 µm.
Figure 115 from: Tauber CA, Sosa F, Albuquerque GS, Tauber MJ (2017) Revision of the Neotropical green lacewing genus Ungla (Neuroptera, Chrysopidae). ZooKeys 674: 1-188. https://doi.org/10.3897/zookeys.674.11435
Figure 115 - Ungla chacranella (Banks): Variation in head markings, (a, b) head, dorsal (c, d) head, frontal (Argentina, La Rioja, male, FSCA).
FIGURE 115 in New records and description of fifty-four new species of aquatic beetles in the genus Hydraena Kugelann from South America (Coleoptera: Hydraenidae)
FIGURE 115. Hydraena ecuadormica, holotype, dorsal and lateral habitus, and venter.
FIGURE 115 in Revision of the metallic Lasioglossum (Dialictus) of eastern North America (Hymenoptera: Halictidae: Halictini)
FIGURE 115. Distribution map of Lasioglossum georgeickworti (stars) and L. halophitum (circles).
FIGURE 115 in Deep-water bony fishes collected by the B/O Miguel Oliver on the shelf edge of Pacific Central America: an annotated, illustrated and DNA-barcoded checklist
FIGURE 115. Monolene maculipinna.
Figure 4 from: Surveswaran S, Kumar P, Sun M (2017) Spiranthes himalayensis (Orchidaceae, Orchidoideae) a new species from Asia. PhytoKeys 89: 115-128. https://doi.org/10.3897/phytokeys.89.19978
Figure 4 - Comparison of morphological characters of allied species. ASpiranthes himalayensis: 1 Close-up of inflorescence 2 A flower 3 Floral bract 4 Dorsal sepal 5 Lateral sepal 6 Petal 7 Ovary with column and labellum 8 Labellum (side view) 9 Labellum (top view) 10 Close-up showing glandular hairs on labellum and ovary 11 Ovary with column (side view) 12 Ovary with column (ventral view) BS. sinensis: 1 Close-up of inflorescence 2 A flower 3 Floral bract 4 Dorsal sepal 5 Lateral sepal 6 Petal 7 Ovary with column and labellum 8 Labellum (side view) 9 Labellum (top view) 10 Ovary with column (side view) 11 Ovary with column (ventral view) CS. hongkongensis: 1 Close-up of inflorescence 2 A flower 3 Floral bract 4 Dorsal sepal 5 Lateral sepal 6 Petal 7 Ovary with column and labellum; 8. Labellum (side view) 9 Labellum (top view) 10 Close-up showing glandular hairs on labellum and ovary 11 Ovary with column (side view) 12 Ovary with column (ventral view) DS. nivea: 1. Close-up of inflorescence; 2. A flower 3 Floral bract 4 Dorsal sepal 5 Lateral sepal 6 Petal 7 Ovary with column and labellum 8 Labellum (side view) 9 Labellum (top view) 10 Close-up showing glandular hairs on labellum and ovary 11 Ovary with column (side view) 12 Ovary with column (ventral view). Note: The pinkish/bluish hue on petals of S. himalayensis, S. nivea and S. hongkongensis is due to the black background in the plates while the flowers appear fully white in natural light.
Figure 3 from: Surveswaran S, Kumar P, Sun M (2017) Spiranthes himalayensis (Orchidaceae, Orchidoideae) a new species from Asia. PhytoKeys 89: 115-128. https://doi.org/10.3897/phytokeys.89.19978
Figure 3 - Spiranthes himalayensis Survesw., Kumar & Mei Sun, sp. nov. A Complete plant B Inflorescence C Floral bract D Dorsal sepal E Lateral sepal F Petal G Ovary with column and labellum H Close-up showing the glandular hairs on flower and ovary I Side view of labellum J Top view of labellum K Side view of ovary with column L Front view of ovary and column M Front view of pollinarium N Side view of pollinarium. Note: The pinkish/bluish hue on petals of S. himalayensis is due to the black background in the plates while the flowers appear fully white in natural light.
Figure 2 from: Surveswaran S, Kumar P, Sun M (2017) Spiranthes himalayensis (Orchidaceae, Orchidoideae) a new species from Asia. PhytoKeys 89: 115-128. https://doi.org/10.3897/phytokeys.89.19978
Figure 2 - Habitat and habit of Spiranthes himalayensis Survesw., Kumar & Mei Sun, sp. nov. A Habitat (type location) - along the bunds of paddy fields B Habit of S. himalayensis C Close-up of the inflorescence showing white coloured flowers with densely covered glandular hairs.
Figure 1 from: Surveswaran S, Kumar P, Sun M (2017) Spiranthes himalayensis (Orchidaceae, Orchidoideae) a new species from Asia. PhytoKeys 89: 115-128. https://doi.org/10.3897/phytokeys.89.19978
Figure 1 - Bayesian phylogenetic tree indicating Spiranthes himalayensis Survesw., Kumar & Mei Sun sp. nov. Sequences generated for this study are indicated in bold, specimen identification numbers and area of collection are indicated beside the species names. Bayesian probability supports are indicated at the nodes.
Figure 115 from: Hamilton CA, Hendrixson BE, Bond JE (2016) Taxonomic revision of the tarantula genus Aphonopelma Pocock, 1901 (Araneae, Mygalomorphae, Theraphosidae) within the United States. ZooKeys 560: 1-340. https://doi.org/10.3897/zookeys.560.6264
Figure 115 - Aphonopelma parvum sp. n. A–E cleared spermathecae A APH_1104 B APH_1109 C APH_1599 D APH_1600 E APH_1622.
Figure 115 from: Liebherr JK (2015) The Mecyclothorax beetles (Coleoptera, Carabidae, Moriomorphini) of Haleakala-, Maui: Keystone of a hyperdiverse Hawaiian radiation. ZooKeys 544: 1-407. https://doi.org/10.3897/zookeys.544.6074
Figure 115 - Mecyclothorax vitreus group species, dorsal habitus view. A Mecyclothorax vitreus (Ukulele Camp Pipeline, 1495 m) B Mecyclothorax vitreus (Waikamoi, 1420 m) C Mecyclothorax perkinsianus ("Haleakala, 1902", RCLP) D Mecyclothorax kipwilli (Kuhiwa, 2070–2100 m) E Mecyclothorax kipwilli (Kuhiwa, 1590 m).
Figure 2 from: Ito T, Fukuda T, Morimune T, Hosoya K (2017) Evolution of the connection patterns of the cephalic lateral line canal system and its use to diagnose opsariichthyin cyprinid fishes (Teleostei, Cyprinidae). ZooKeys 718: 115-131. https://doi.org/10.3897/zookeys.718.13574
Figure 2 - Diagram of the cephalic lateral line canal systems in the opsariichthyin fishes. A Candidia barbata, FKUN 34180, 94.8 mm SL B C. pingtungensis, FKUN 35215, 72.9 mm SL C Nipponocypris koreanus, FKUN 40587, 94.1 mm SL. Scale bar 5 mm. D N. sieboldii, FKUN 40571, 90.5 mm SL E N. temminckii, FKUN 40575, 94.5 mm SL F Opsariichthys bidens, LBM 8852, 94.8 mm SL. Scale bar 5 mm. G O. evolans, FKUN 35199, 81.1 mm SL H O. kaopingensis, KUN-P40545, 80.0 mm SL I O. pachycephalus, FKUN 35181, 69.4 mm SL. Scale bar 5 mm. J O. uncirostris, FKUN 16487, 219.0 mm SL K Parazacco spilurus, KUN-P45852, 57.5 mm SL L Zacco platypus, FKUN 40558, 93.0 mm SL. Scale bar 5 mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.