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Figure 10 from: Ma X, Nontachaiyapoom S, Jayawardena RS, Hyde KD, Gentekaki E, Zhou S, Qian Y, Wen T, Kang J (2018) Endophytic Colletotrichum species from Dendrobium spp. in China and Northern Thailand. MycoKeys 43: 23-57. https://doi.org/10.3897/mycokeys.43.25081
Figure 10 Colletotrichumorchidophilum.A Colony B Fruiting body C–D Conidiophores E Appressoria F–K Conidia. Scale bars: 200 µm (B), 5 µm (F–K).
Figure 9 from: Ma X, Nontachaiyapoom S, Jayawardena RS, Hyde KD, Gentekaki E, Zhou S, Qian Y, Wen T, Kang J (2018) Endophytic Colletotrichum species from Dendrobium spp. in China and Northern Thailand. MycoKeys 43: 23-57. https://doi.org/10.3897/mycokeys.43.25081
Figure 9 Colletotrichumjiangxiense.A Colony B Colony from below C–F Conidiophores G–H Conidia. Scale bars: 5 µm (C–F), 2.5 µm (G–H).
Figure 5 from: Ng PKL, Mar W (2018) On a new species of freshwater crab, Indochinamon khinpyae, from northern Myanmar (Crustacea, Brachyura, Potamidae). ZooKeys 811: 47-63. https://doi.org/10.3897/zookeys.811.29187
Figure 5 Indochinamonkhinpyae sp. n., paratype female (39.3×31.1 mm) (ZRC 2018.0714). A anterior thoracic sternum and pleon B sternopleonal cavity and vulvae.
Figure 3 from: Ng PKL, Mar W (2018) On a new species of freshwater crab, Indochinamon khinpyae, from northern Myanmar (Crustacea, Brachyura, Potamidae). ZooKeys 811: 47-63. https://doi.org/10.3897/zookeys.811.29187
Figure 3 Indochinamonkhinpyae sp. n. A, B, E, F, H, I holotype male (57.1×43.2 mm) (ZRC 2018.0713) C, G paratype male (47.2×36.4 mm) (ZRC 2018.0714) D paratype male (34.3×26.6 mm) (ZRC 2018.0714). A, C, D anterior thoracic sternum and pleon B posterior thoracic sternum and pleon E sternopleonal cavity F, G right third maxilliped H outer view of right chela I outer view of left chela.
Figure 1 from: Ng PKL, Mar W (2018) On a new species of freshwater crab, Indochinamon khinpyae, from northern Myanmar (Crustacea, Brachyura, Potamidae). ZooKeys 811: 47-63. https://doi.org/10.3897/zookeys.811.29187
Figure 1 Indochinamonkhinpyae sp. n., colour in life, holotype male (57.1×43.2 mm) (ZRC 2018.0713). A dorsal view B ventral view of cephalothorax.
Figure 2 from: Ng PKL, Mar W (2018) On a new species of freshwater crab, Indochinamon khinpyae, from northern Myanmar (Crustacea, Brachyura, Potamidae). ZooKeys 811: 47-63. https://doi.org/10.3897/zookeys.811.29187
Figure 2 Indochinamonkhinpyae sp. n. A, D, F holotype male (57.1×43.2 mm) (ZRC 2018.0713) B, E paratype male (47.2×36.4 mm) (ZRC 2018.0714) C, G paratype male (34.3×26.6 mm) (ZRC 2018.0714). A–C overall habitus D, E frontal view of cephalothorax F, G dorsal view of carapace.
Figure 4 from: Ng PKL, Mar W (2018) On a new species of freshwater crab, Indochinamon khinpyae, from northern Myanmar (Crustacea, Brachyura, Potamidae). ZooKeys 811: 47-63. https://doi.org/10.3897/zookeys.811.29187
Figure 4 Indochinamonkhinpyae sp. n. A–E holotype male (57.1×43.2 mm) (ZRC 2018.0713); F, G paratype male (47.2×36.4 mm) (ZRC 2018.0714) H paratype male (34.3×26.6 mm) (ZRC 2018.0714). A left G1 (ventral view) B left G1 (dorsal view) C terminal segment of left G1 (ventral view) D terminal segment of left G1 (dorsal view) E left G2 F, H left G1 (ventral view, setae not drawn) G left G2 (setae not drawn). Scale bar: 1.0 mm.
Figure 4 from: Khuna S, Suwannarach N, Kumla J, Meerak J, Nuangmek W, Kiatsiriroat T, Lumyong S (2019) Apophysomyces thailandensis (Mucorales, Mucoromycota), a new species isolated from soil in northern Thailand and its solubilization of non-soluble minerals. MycoKeys 45: 75-92. https://doi.org/10.3897/mycokeys.45.30813
Figure 4 Apophysomycesthailandensis SDBR-CMUS26 (holotype). A colony on potato dextrose agar B Colony on malt extract agar C Colony on Czapek agar D Branched, aseptate hyphae E Funnel-shaped apophysis F Slightly trapezoidal sporangiospores. Scale bars: 10 mm (A–C), 10 µm (D–E), 20 µm (F).
Figure 3 from: Khuna S, Suwannarach N, Kumla J, Meerak J, Nuangmek W, Kiatsiriroat T, Lumyong S (2019) Apophysomyces thailandensis (Mucorales, Mucoromycota), a new species isolated from soil in northern Thailand and its solubilization of non-soluble minerals. MycoKeys 45: 75-92. https://doi.org/10.3897/mycokeys.45.30813
Figure 3 Solubilization index of the ability to solve non-soluble mineral by Apophysomycesthailandensis. Data are means of three replicates. Error bar at each point indicates ± SD. Different letters above each graph indicate that the means are significantly different by Tukey's test (P < 0.05)
Figure 2 from: Khuna S, Suwannarach N, Kumla J, Meerak J, Nuangmek W, Kiatsiriroat T, Lumyong S (2019) Apophysomyces thailandensis (Mucorales, Mucoromycota), a new species isolated from soil in northern Thailand and its solubilization of non-soluble minerals. MycoKeys 45: 75-92. https://doi.org/10.3897/mycokeys.45.30813
Figure 2 Solubilization of non-soluble minerals in agar media by Apophysomycesthailandensis SDBR-CMUS26 (holotype). A Ca3(PO4)2B CuCO3•Cu(OH)2C CuO D ZnCO3E FePO4F MnO G Feldspar H Kaolin. Scale bars: 10 mm. Fungal colonies in E and F were cut for the solubilization area (halo zone) observation.
Figure 1 from: Khuna S, Suwannarach N, Kumla J, Meerak J, Nuangmek W, Kiatsiriroat T, Lumyong S (2019) Apophysomyces thailandensis (Mucorales, Mucoromycota), a new species isolated from soil in northern Thailand and its solubilization of non-soluble minerals. MycoKeys 45: 75-92. https://doi.org/10.3897/mycokeys.45.30813
Figure 1 Phylogenetic tree derived from maximum likelihood analysis of a combined ITS, LSU, and H3 genes of 28 sequences. Saksenaeavasiformis and S.erythrospora were used as outgroup. Numbers above branches are the bootstrap statistics percentages (left) and Bayesian posterior probabilities (right). Branches with bootstrap values ≥ 50% are shown at each branch and the bar represents 0.1 substitutions per nucleotide position. The fungal isolates from this study are in bold. Superscript T = type species.
Figures 2-11 from: Czaja A, Cardoza-Martínez GF, Meza-Sánchez IG, Estrada-Rodríguez JL, Saenz-Mata J, Becerra-López JL, Romero-Méndez U, Estrada-Arellano JR, Garza-Martínez MA, Paulín JAD (2019) New genus, two new species and new records of subterranean freshwater snails (Caenogastropoda; Cochliopidae and Lithoglyphidae) from Coahuila and Durango, Northern Mexico. Subterranean Biology 29: 89-102. https://doi.org/10.3897/subtbiol.29.34123
Figures 2-11 Shells and opercula of Phreatomascogosgregoi gen. n. et sp. n. 2, 3 holotype, UJMC 400 4, 5 paratype 1, UJMC 401 6, 7 paratype 2, UJMC 401a, shell apex with protoconch 8 umbilicus almost completely covered by a basal keel, UJMC 401b 9 paratype 3, UJMC 401d, conical specimen 10, 11 opercula 11 operculum showing the strongly campanulate shape. Scale bars: 0.5 mm (2–5, 9–11); 0.3 mm (8).
Figures 12-23 from: Czaja A, Cardoza-Martínez GF, Meza-Sánchez IG, Estrada-Rodríguez JL, Saenz-Mata J, Becerra-López JL, Romero-Méndez U, Estrada-Arellano JR, Garza-Martínez MA, Paulín JAD (2019) New genus, two new species and new records of subterranean freshwater snails (Caenogastropoda; Cochliopidae and Lithoglyphidae) from Coahuila and Durango, Northern Mexico. Subterranean Biology 29: 89-102. https://doi.org/10.3897/subtbiol.29.34123
Figures 12-23 Shells of Balconorbissabinasense sp. n. and Coahuilixparrasense Czaja, Estrada-Rodríguez, Romero-Méndez, Ávila-Rodríguez, Meza-Sánchez & Covich, 2017. 12–14B.sabinasense n. sp., holotype, UJMC 410. 15–18 Paratype 1, UJMC 411. 19–21C.parrasense, UJMC 418, from Nazas River, Durango. 22, 23C.parrasense, fossil specimen from Parras de la Fuente, Coahuila, holotype, UJMC-320, from Czaja et al. 2017c, Fig. 4A, C. Scale bar: 0.5 mm (12–14, 19–23).
Figure 1 from: Czaja A, Cardoza-Martínez GF, Meza-Sánchez IG, Estrada-Rodríguez JL, Saenz-Mata J, Becerra-López JL, Romero-Méndez U, Estrada-Arellano JR, Garza-Martínez MA, Paulín JAD (2019) New genus, two new species and new records of subterranean freshwater snails (Caenogastropoda; Cochliopidae and Lithoglyphidae) from Coahuila and Durango, Northern Mexico. Subterranean Biology 29: 89-102. https://doi.org/10.3897/subtbiol.29.34123
Figure 1 Map of the study area with localization of the sampling sites along the Álamos and Sabinas River in Coahuila and Nazas River in Durango. Sampling sites as in Table 1.
FIGURE 1 in A new species of African snake-eyed skink (Scincidae: Panaspis) from central and northern Namibia
FIGURE 1. Holotype of Panaspis namibiana sp. nov. (CAS 206967). Photo by Luis M. P. Ceríaco.
Figure 3 from: Likhitrakarn N, Golovatch SI, Srisonchai R, Sutcharit C, Panha S (2019) A new species of the millipede genus Cryptocorypha Attems, 1907, from northern Thailand (Polydesmida, Pyrgodesmidae). ZooKeys 833: 121-132. https://doi.org/10.3897/zookeys.833.32413
Figure 3 Cryptocoryphaenghoffi sp. n., ♂ paratype. A, B segments 8, 9, dorsal and ventral views, respectively C cross-section of segment 8, caudal view D paraterga of segment 9, dorsal view E poriferous paratergum of segment 9 F tegument texture in the region of a stricture between pro- and metazonae, dorsal view G–L posterior part of body, dorsal, ventral, lateral, dorsal, ventral and lateral views, respectively.
Figure 1 from: Likhitrakarn N, Golovatch SI, Srisonchai R, Sutcharit C, Panha S (2019) A new species of the millipede genus Cryptocorypha Attems, 1907, from northern Thailand (Polydesmida, Pyrgodesmidae). ZooKeys 833: 121-132. https://doi.org/10.3897/zookeys.833.32413
Figure 1 Cryptocoryphaenghoffi sp. n., A ♀ paratype B a few paratypes C, D holotype A, B habitus, live coloration in their habitat C–E habitus and coloration in alcohol, dorsal, ventral and lateral views, respectively.
Figure 2 from: Likhitrakarn N, Golovatch SI, Srisonchai R, Sutcharit C, Panha S (2019) A new species of the millipede genus Cryptocorypha Attems, 1907, from northern Thailand (Polydesmida, Pyrgodesmidae). ZooKeys 833: 121-132. https://doi.org/10.3897/zookeys.833.32413
Figure 2 Cryptocoryphaenghoffi sp. n., ♂ paratype. A–C anterior part of body, dorsal, ventral and lateral views, respectively D collum, dorsal view E head, ventral view F segments 8, 9, lateral view G antenna, ventral view H–K right antenna H bacilliform sensilla on antennomere 5, sublateral view J, I bacilliform sensilla on antennomere 6, subventral and sublateral views, respectively K tip of right antenna, sublateral view.
Figure 4 from: Likhitrakarn N, Golovatch SI, Srisonchai R, Sutcharit C, Panha S (2019) A new species of the millipede genus Cryptocorypha Attems, 1907, from northern Thailand (Polydesmida, Pyrgodesmidae). ZooKeys 833: 121-132. https://doi.org/10.3897/zookeys.833.32413
Figure 4 Cryptocoryphaenghoffi sp. n., ♂ paratype. A–D left gonopod, sublateral, submesal, suboral, lateral and mesal views, respectively E midbody leg, lateral view F last leg, lateral view. Abbreviations: c, cannula cx, coxite en, endomere ex, exomere sl, solenomere v, velum.
FIGURE 9 in A new species of the genus Parachauliodes (Megaloptera: Corydalidae: Chauliodinae) from Northern Kyushu, Japan
FIGURE 9. (Continued)
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)
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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.