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Figure 99 from: Wood JR.I, Muñoz-Rodríguez P, Williams BR.M, Scotland RW (2020) A foundation monograph of Ipomoea (Convolvulaceae) in the New World. PhytoKeys 143: 1-823. https://doi.org/10.3897/phytokeys.143.32821
Figure 99 Ipomoea schomburgkii. A habit B portion of stem C outer sepal D inner sepal E corolla opened out to show stamens F ovary and style. Drawn by Rosemary Wise from Wood & Soto 27914.
Figure 2 from: Mitkov J, Kondeva-Burdina M, Zlatkov A (2019) Synthesis and preliminary hepatotoxicity evaluation of new caffeine-8-(2-thio)-propanoic hydrazid-hydrazone derivatives. Pharmacia 66(3): 99-106. https://doi.org/10.3897/pharmacia.66.e37263
Figure 2 Effect of the hydrazid-hydrazones 6a–i, administered alone at concentration 100 µM, on isolated rat liver microsomes.
Supplementary material 1 from: Gruntman M, Segev U (2024) Effect of residence time on trait evolution in invasive plants: review and meta-analysis. NeoBiota 91: 99-124. https://doi.org/10.3897/neobiota.91.109251
Supplementary information
Figure 99 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 99 Habit, bark and foliage of ErythrophleeaeAErythrophleum fordii Oliv. at Hùng Temple, Vietnam B bark of Erythrophleum couminga Baill. in Madagascar CPachyelasma tessmannii (Harms) Harms in Congolian rainforest D, E, HErythrophleum chlorostachys Baill. D rugous bark E tree in northern Australian savannas H foliage FErythrophleum lasianthum Corbishley foliage GErythrophleum suaveolens (Guill. & Perr.) Brenan foliage and terminal inflorescences, Ntumbachusi falls, Zambia. Photo credits A Hungda (https://tropical.theferns.info/image.php?id=Erythrophleum+fordii) B Solofo Eric Rakotoarisoa, iNaturalist (https://www.inaturalist.org/photos/42581094) C Bart Wursten (https://www.flickr.com/photos/zimbart/8212743587/in/photolist-dvJsxn-dvJnwi) D, E, H G Mahajan (https://alchetron.com/Erythrophleum-chlorostachys) F JMK (https://wikiwand.com/en/Erythrophleum_lasianthum) G MG Bingham (https://malawiflora.com/speciesdata/image-display.php?species_id=126540&image_id=8).
Comprehensive analysis of type 2 diabetes-associated gene polymorphisms in a cohort of 99 anonymized metastatic colorectal cancer patients, including their frequency.
Open the record for dataset details and reuse information.
Fig. 99. C in Belgian Journal of Entomology
Fig. 99. C. drumonti sp. nov., holotype.
Supplementary material 1 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure S1. Type specimen of Calceolaria asperula Phil. (SGO 055831)
Figure 6 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure 6 Habitat of Calceolaria flavidaA NW-facing slopes dominated by Puya coerulea var. coerulea, Lithraea caustica and Gochnatia foliolosa (Natural Sanctuary Cerro El Roble, Región Metropolitana, Chile) B, C habit of Calceolaria flavida.
Figure 5 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure 5 Calceolaria flavidaA habit B upper side view of flower C lateral view of flower D frontal view of flower with upper lip open E frontal view of flower F detail of abaxial side of leaf G detail of adaxial side of leaf H detail of stems I detail of early-flowering inflorescence.
Figure 4 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure 4 Lateral cross-section view of flowers of Calceolaria and detail of elaiophores A, BCalceolaria asperula (Lavandero 409 (SGO)) C, DCalceolaria flavida (Lavandero & Santilli 201027 (SGO)) E, FCalceolaria petioalaris (B. Rosende s/n).
Figure 2 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure 2 Indumentum type in leaves of CalceolariaA, C, E upper leaf surface B, D, F lower leaf surface A, BCalceolaria asperula (Lavandero 409 (SGO)) C, DCalceolaria flavida (Lavandero & Santilli 201027 (SGO)) E, FCalceolaria petioalaris (B. Rosende s/n). Scale bar: 1 mm.
Figure 3 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure 3 Lateral and frontal view of flowers (from left to right) of CalceolariaA, BCalceolaria asperula (Lavandero 409 (SGO)) C, DCalceolaria flavida (Lavandero & Santilli 201027 (SGO)) E, FCalceolaria petioalaris (B. Rosende s/n).
Figure 1 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755
Figure 1 Distribution map of Calceolaria flavida (triangles) in Chile. Roman numbers represent administrative regions (IV Coquimbo, V Valparaiso, RM Metropolitan Region, VI O'Higgins, VII Maule). Green polygons represent protected areas (La Campana National Park and Natural Sanctuary Cerro El Roble).
Figures 99–104 in Somalibuthus sabae sp. n., a new buthid scorpion from Kenya (Scorpiones: Buthidae)
Figures 99–104: Somalibuthus sabae sp. n., metasoma and telson under UV fluorescence. Figures 99–101. Paratype male, metasoma and telson in dorsal (99), left lateral (100) and ventral (101) views. Figures 102–104. Paratype female, metasoma and telson in dorsal (102), left lateral (103) and ventral (103) views. Scale bars: 2 mm (99–101), 2 mm (102–104).
Figure 1 from: Hernández M, Bauzá MA, Backeljau T (2022) Genital anatomy, jaw and radula of Guladentia subtussulcata (Helicoidea, Cepolidae), endemic to western Cuba. ZooKeys 1080: 99-106. https://doi.org/10.3897/zookeys.1080.73194
Figure 1 Shells of Guladentia subtussulcataA–C (A and B lateral views and C ventral view), Jeanneretia parraianaD–F (D and E lateral views and F ventral view), Cepolis cepaG–I (G and H lateral views and I ventral view). Scale bar = 5 mm.
Figure 2 from: Hernández M, Bauzá MA, Backeljau T (2022) Genital anatomy, jaw and radula of Guladentia subtussulcata (Helicoidea, Cepolidae), endemic to western Cuba. ZooKeys 1080: 99-106. https://doi.org/10.3897/zookeys.1080.73194
Figure 2 Genital anatomy of Guladentia subtussulcataA genitalia B auxiliary copulatory organ details) C details of the distal portion of the auxiliary copulatory organ D drawing of the fertilization pouch–spermathecal complex E drawing of the details of the verge. Abbreviations: aco = auxiliary copulatory organ, ag = albumen gland, agl = accessory gland, as = atrial sac, bc = bursa copulatrix, bcd = bursa-copulatrix duct, e = proximal epiphallus, fl = flagellum, fp = fertilization pouch, fpsc = fertilization pouch–spermathecal complex, hd = hermaphroditic duct, mp = muscular papilla, ncs = non-calcareous structure, pe = penis + distal epiphallus, ov = oviduct, pmg = pedunculated mucus gland, pg = prostatic gland, prm = penial retractor muscle, so = spermoviduct, ss = single spermatheca, v = verge, vd = vas deferens.
Figure 3 from: Hernández M, Bauzá MA, Backeljau T (2022) Genital anatomy, jaw and radula of Guladentia subtussulcata (Helicoidea, Cepolidae), endemic to western Cuba. ZooKeys 1080: 99-106. https://doi.org/10.3897/zookeys.1080.73194
Figure 3 Scanning Electron Microscope photographs of the jaw and radula of Guladentia subtussulcata. A jaw B central and lateral teeth, central teeth marked with a black arrow C transitional and marginal teeth, the latter with their ectocones (e), mesocones (m), and endocones (ed).
Figure 1 from: Lin Y, Yan X, Li S (2022) Two new species of the genus Chilobrachys (Araneae, Theraphosidae) from China. ZooKeys 1081: 99-109. https://doi.org/10.3897/zookeys.1081.77072
Figure 1 Chilobrachys spp. nov., live males AChilobrachys dominus sp. nov. BC. jinchengi sp. nov. Photos by Qianle Lu, Zhengzhong Huang.
Figure 5 from: Lin Y, Yan X, Li S (2022) Two new species of the genus Chilobrachys (Araneae, Theraphosidae) from China. ZooKeys 1081: 99-109. https://doi.org/10.3897/zookeys.1081.77072
Figure 5 Chilobrachys jinchengi sp. nov., holotype (B–H) and paratype (A) males A male habitus, dorsal B ocular tubercle C right palp maxillae D sternum E stridulatory lyra, lateral view F same, ventral view G chelicerae, retrolateral view H same, prolateral view.
Figure 6 from: Lin Y, Yan X, Li S (2022) Two new species of the genus Chilobrachys (Araneae, Theraphosidae) from China. ZooKeys 1081: 99-109. https://doi.org/10.3897/zookeys.1081.77072
Figure 6 Chilobrachys jinchengi sp. nov., holotype, right palp bulb, rotated horizontally A retrolateral view B prolateral view.
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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.