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Figure 6 – Streptocarpus salesianorum. A. Habit. B. Inflorescence. C. Corolla. D. Mature capsule. E in Five new species of Streptocarpus (Gesneriaceae) from Katanga, D.R. Congo
Figure 6 – Streptocarpus salesianorum. A. Habit. B. Inflorescence. C. Corolla. D. Mature capsule. E. Hairs on the ovary. From E.Hofmann S 1799. Illustration by Eberhard Fischer.
Figure 2 – Streptocarpus malachiticola. A, C. Habit. B. Inflorescence. D in Five new species of Streptocarpus (Gesneriaceae) from Katanga, D.R. Congo
Figure 2 – Streptocarpus malachiticola. A, C. Habit. B. Inflorescence. D. Flower. Photographs taken by Julie Lebrun, Biodiversity and Landscape Unit, Gembloux Agro-Bio Tech, University of Liège at Tshilongo, Kabwe (A–B: © Julie Lebrun, all rights reserved) and Michel Schaijes at Tenke (C–D: © Michel Schaijes, all rights reserved).
Figure 5 – Streptocarpus malaissei. A–B. Habit. C in Five new species of Streptocarpus (Gesneriaceae) from Katanga, D.R. Congo
Figure 5 – Streptocarpus malaissei. A–B. Habit. C. Detail of inflorescence. D–E. Corolla. F. Corolla dissected showing position of stamens and staminodes. G. Stamens. H–I. Staminodes. K. Apex of ovary with style and stigma. L. Hairs on ovary. M. Young capsule. N. Mature capsule. A, C, D, F–N from Bodenghien 30, B from Malaisse 13795, and E from Bodenghien 18. Illustration by Eberhard Fischer.
Figure 1 – Streptocarpus malachiticola. A–B. Habit. C. Inflorescence. D. Flower, frontal view. E. Flower, lateral view. F. Stamen. G. Staminode. H in Five new species of Streptocarpus (Gesneriaceae) from Katanga, D.R. Congo
Figure 1 – Streptocarpus malachiticola. A–B. Habit. C. Inflorescence. D. Flower, frontal view. E. Flower, lateral view. F. Stamen. G. Staminode. H. Calyx with ovary, style, and stigma. I. Style and stigma. K. Tip of ovary, style, and stigma. L. Glandular hairs on calyx. M. Tip of sepal with glandular hairs. N. Hairs on pedicel. A, C–K from Malaisse 11427; B from Schaijes 3850. Illustration by Eberhard Fischer.
Figure 3 – Streptocarpus bampsii. A. Habit. B–C. Flowers. D in Five new species of Streptocarpus (Gesneriaceae) from Katanga, D.R. Congo
Figure 3 – Streptocarpus bampsii. A. Habit. B–C. Flowers. D. Corolla, dissected, showing stamens and staminodes. E. Corolla, lateral view. F. Stamens. G. Staminode. H. Hairs on corolla. From Bamps & Malaisse 8389. Illustration by Eberhard Fischer.
Datasets for Dynamical Habitability of an Earthlike Planet with Two Giant Companions
<p>Two tables are included in this dataset:</p> <ul> <li>"Stability Results" table has the predicted stability outcomes for 80 Earthlike planets for a grid of parameters associated with two giant companions.</li> <li>"Relative Habitablity" has the calculated relative habitability for each configuration of giant planets. The relative habitability quantifies the predicted habitability for an Earthlike planet in a system with two giant planets compared to a system where the Earthlike planet is the only planet.</li> </ul> <p>See the accompanying readme files for more details on the columns of each table and the paper Bailey & Fabrycky 2022 for more information on how these datasets were created.</p>
Fig. 1 in Food Habits Of The Endemic Long Legged Wood Frog, Rana Pseudodalmatina (Amphibia, Ranidae) In Northern Iran
Fig. 1. Map showing the localities of Rana pseudodlmatina (Eiselt & Schmidtler, 1971) samples from Iran. For identification localities numbers, refer to table 1.
Fig. 3 in Morphofunctional Adaption Of The Renal Tissue Of Acipenser Ruthenus (Actinopterygii, Acipenseriformes) Under Transformed Habitation Conditions
Fig. 3. Degenerative changes in the renal corpuscles of the sterlet's mesonephros. Ehrlich's hematoxylin, Hart's fuchselin. ×100.
Fig. 4 in Morphofunctional Adaption Of The Renal Tissue Of Acipenser Ruthenus (Actinopterygii, Acipenseriformes) Under Transformed Habitation Conditions
Fig. 4. Necrosis of the renal corpuscle of the sterlet's mesonephros. Ehrlich's hematoxylin, Hart's fuchselin. ×70.
Fig. 5 in Morphofunctional Adaption Of The Renal Tissue Of Acipenser Ruthenus (Actinopterygii, Acipenseriformes) Under Transformed Habitation Conditions
Fig. 5. The total sterlet's mesonephrolysis. Ehrlich's hematoxylin, Hart's fuchselin. ×100. Рис. 5. Тотальное разрушение мезонефроса стерляди. Гематоксилин Эрлиха, фукселин Харта. ×100.
Fig. 2 in Morphofunctional Adaption Of The Renal Tissue Of Acipenser Ruthenus (Actinopterygii, Acipenseriformes) Under Transformed Habitation Conditions
Fig. 2. Changes in the histological structure of the proximal nephron of the sterlet's mesonephros. Ehrlich's hematoxylin, Hart's fuchselin. ×200.
Fig. 1 in Morphofunctional Adaption Of The Renal Tissue Of Acipenser Ruthenus (Actinopterygii, Acipenseriformes) Under Transformed Habitation Conditions
Fig. 1. The normal structure of the sterlet's mesonephros. Ehrlich's hematoxylin, Hart's fuchselin. ×200.
Fig. 5. Croton echioides Baill. A–B. Habit. C. Flowering branch. D in Croton sertanejus, a new species from Seasonally Dry Tropical Forest in Brazil, and redescription of C. echioides (Euphorbiaceae)
Fig. 5. Croton echioides Baill. A–B. Habit. C. Flowering branch. D. Inflorescence showing pistillate flowers and staminate buds, detail of the pistillate flowers in the insert. E. Pistillate flowers. F. Median portion of an inflorescence with bisexual cymules containing one pistillate flower and one staminate bud. G. Detail of the staminate inflorescence. H. Staminate flowers. I. Staminate flowers and buds. J. Fruit. K. Fruit columella. L. Apex of columella with three slightly ascending tips. M. Seed, dorsal side. N. Seed, ventral side. A, F–I. = Population from Igaporã, Bahia (R.C. Sodré et al. 3284; BOTU); B–E. = Population from Abaíra, Bahia (R.C. Sodré et al. 3314; BOTU); J–N. = V.C. Souza et al. 5495 (ESA). Photographs: R.C. Sodré.
Fig. 10. Zingiber mioga Thunb., Yingzi Ling roadside. A. Habit. B in Taxonomic revision of Zingiber (Zingiberaceae) of Taiwan
Fig. 10. Zingiber mioga Thunb., Yingzi Ling roadside. A. Habit. B. Leaf adaxial (left) and abaxial (right) surface. C. Ligule. D. Rhizome. E. Inflorescence. F. Flower. G. Bracts. H. Calyx tube. I. Corolla lobes. J. Labellum. K. Stamen and pistil. L. Ovary. M. Fruit. N. Seeds. Photos: A = C.T. Chao; B–N = L.P. Hsu.
Fig. 13. Zingiber shuanglongense C.L.Yeh & S.W.Chung, Shuanglung Logging Trail. A. Habit. B in Taxonomic revision of Zingiber (Zingiberaceae) of Taiwan
Fig. 13. Zingiber shuanglongense C.L.Yeh & S.W.Chung, Shuanglung Logging Trail. A. Habit. B. Leaf adaxial (left) and abaxial (right) surface. C. Ligule. D. Rhizome. E. Inflorescence. F. Flower. G. Bracts. H. Calyx tube. I. Corolla lobes. J. Labellum. K. Stamen and pistil. L. Ovary. M. Fruit. N. Seeds. Photos: L.P. Hsu.
Fig. 9. Zingiber chengii Y.H.Tseng, C.M.Wang & Y.C.Lin, Jianshih Township. A. Habit. B. Rhizome. C in Taxonomic revision of Zingiber (Zingiberaceae) of Taiwan
Fig. 9. Zingiber chengii Y.H.Tseng, C.M.Wang & Y.C.Lin, Jianshih Township. A. Habit. B. Rhizome. C. Leaf adaxial (left) and abaxial (right) surface. D. Ligule. E. Inflorescence. F. Flower. G. Bracts. H. Calyx tube. I. Corolla lobes. J. Labellum. K. Stamen and pistil. L. Ovary. M. Fruit. N. Seeds. Photos: L.P. Hsu.
Fig. 12. Zingiber pleiostachyum K.Schum., Chichidashan. A. Habit. B in Taxonomic revision of Zingiber (Zingiberaceae) of Taiwan
Fig. 12. Zingiber pleiostachyum K.Schum., Chichidashan. A. Habit. B. Leaf adaxial (left) and abaxial (right) surface. C. Ligule. D. Rhizome. E. Inflorescence. F. Flower. G. Bracts. H. Calyx tube. I. Corolla lobes. J. Labellum. K. Stamen and pistil. L. Ovary. M. Fruit. N. Seeds. Photos: A = C.T. Chao; B–N = L.P. Hsu.
Fig. 11. Zingiber oligophyllum K.Schum., Chading Trail. A. Habit. B in Taxonomic revision of Zingiber (Zingiberaceae) of Taiwan
Fig. 11. Zingiber oligophyllum K.Schum., Chading Trail. A. Habit. B. Leaf adaxial (left) and abaxial (right) surface. C. Ligule. D. Rhizome. E. Inflorescence. F. Flower. G. Bracts. H. Calyx tube. I. Corolla lobes. J. Labellum. K. Stamen and pistil. L. Ovary. M. Fruit. N. Seeds. Photos: L.P. Hsu.
Figs 50–53 in Morphology of the larvae and biology of the adults of Psilorrhynchus bifasciatus do not confirm previous hypotheses about systematics and feeding habits (Coleoptera: Cantharidae)
Figs 50–53. Habitus of fixed and live Psilorrhynchus specimens. 50–51 – museum specimens of P. bifasciatus (Blanchard) (50) and P. abdominalis (Perty) (51) as presented in the genus revision (Bංൿൿං 2017a) showing a pale-yellow elytral background colouration. 52–53 – live specimens of P. abdominalis from Rio de Janeiro state, showing an intense reddish elytral colouration. Figs 50 and 51 adapted from Bංൿൿං (2017a); 52 by Diogo Luiz (available at inaturalist.org/observations/31961589); 53 by Eric Freitas de Abreu (available at inaturalist.org/observations/56266908).
Figs 39–49 in Morphology of the larvae and biology of the adults of Psilorrhynchus bifasciatus do not confirm previous hypotheses about systematics and feeding habits (Coleoptera: Cantharidae)
Figs 39–49. Morphology of Psilorrhynchus bifasciatus (Blanchard, 1844), second and first instar larvae. 39 – head, second instar; 40 – nasale, second instar; 41–49 – first instar; 41 – head; 42 – nasale; 43–44 – antenna (ventral, dorsal views); 45 – maxillo-labial complex; 46 – foreleg; 47–48 – pretarsus (lateral, ventral views); 49 – apex of abdomen (dorsal view). Scale bars = 0.05 mm, except 39, 41, 46, 49 = 0.1 mm.
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)
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.