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Arctic Biodiversity: Arctic Vascular Plants
Biogeography and other attributes for Arctic organisms, various sources.<p></p>
Fig. 5 in Same same but different: a stunning analogy between tracheal and vascular supply in the CNS of different arachnids
Fig. 5 Correspondences between intraganglionic tracheae (Opiliones) and arteries (Scorpiones). a Histological sagittal section through the suboesophageal ganglion showing the supraoesophageal midline tracheae (purple annotation) in Mitostoma chrysomelas, Opiliones. b Histological sagittal section through the suboesophageal ganglion showing the supraoesophageal midline arteries (red annotation) in Buthacus arenicola, Scorpiones. The red arrowheads indicate other intraganglionic arteries. c Lateral view of a single leg hemineuropil (np) and the surrounding intraganglionic tracheae (it) in Mitostoma chrysomelas, Opiliones. d: Lateral view of a leg neuropil (np) and the surrounding intraganglionic
FIGURE 1 in Counting counts: revised estimates of numbers of accepted species of flowering plants, seed plants, vascular plants and land plants with a review of other recent estimates
FIGURE 1. Accepted names at species rank as a function of all published species names for selected seed plant families (all published in WCSP).
FIGURE 1 in Moving from modern toward post-modern science: comment on "An integrated assessment of the vascular plants of the Americas"
FIGURE 1. (A) Single most parsimonious tree of 165315 steps (CI = 0.7561, RI = 0.4323) resulted the Parsimony Analysis of Endemicity (reviewed in Morrone (2009)) based on 12 artificial geographical areas/124,993 species from the Checklist of the New World vascular plants (Ulloa Ulloa et al., 2017). The bootstrap values (1000 replicates) showed above branches. Analysis conducted in PAUP * version 4.0a (Swofford, 2002). (B) Political map of the New World showing 12 geographical areas used in the 124,993 species New World Checklist of vascular plants (Ulloa Ulloa et al., 2017). Modified from Ulloa Ulloa et al. (2017). (C) Alfred Russell Wallace's Neotropical region and its sub-regions (Wallace, 1876; Morrone, 2014). Modified from Morrone (2014).
FIGURE 3 in Critical checklist of the endemic vascular plants of Egypt
FIGURE 3. Number of endemic taxa by administrative regions in Egypt. See Figure 1 for administrative regions acronyms.
FIGURE 4 in Critical checklist of the endemic vascular plants of Egypt
FIGURE 4. Agglomerative hierarchical cluster (AHC) dividing the administrative regions in Egypt into three groups: I (Eastern Egypt), II (Western Egypt) and III (Middle Egypt). In white colour are the six regions that were not included in the analysis due to absence of endemic taxa. See Figure 1 for administrative regions acronyms.
FIGURE 2 in Critical checklist of the endemic vascular plants of Egypt
FIGURE 2. The proportion of Egyptian endemic taxa by families. The number next to each bar represents the percentage of the endemic flora. Families included in 'Others' are Cistaceae, Euphorbiaceae, Molluginaceae, Plumbaginaceae, Poaceae, Primulaceae, Rosaceae and Santalaceae, which are represented by only one endemic taxon.
FIGURE 1 in Critical checklist of the endemic vascular plants of Egypt
FIGURE 1. Map of Egypt showing the twenty-seven administrative regions. Alexandria (ALE), Assiut (ASS), Aswan (ASW), Behira (BEH), Beni-Suef (BES), Cairo (CAI), Dakahlyia (DAK), Damietta (DAM), Fayoum (FAY), Gharbia (GHA), Giza (GIZ), Ismailia (ISM), Kafr Elsheikh (KAS), Luxor (LUX), Matrouh (MAT), Menoufia (MEN), Minia (MIN), New Valley (NEV), North Sinai (NSI), Port-Said (POS), Qalyubia (QAL), Qena (QEN), Red Sea (RES), Sharqia (SHA), Sohag (SOH), South Sinai (SSI) and Suez (SUE).
FIGURE 5 in Critical checklist of the endemic vascular plants of Egypt
FIGURE 5. Logarithmic number of total and endemic taxa against Log area (km2) of some Mediterranean and neighbouring countries compared with those of Egypt (the present study). Sources: Davis (1988), Davis et al. (1994), Aedo et al. (2013), Conti et al. (2005), Dimopoulos et al. (2013), Peruzzi et al. (2014), Rankou et al. (2013), Tohme & Tohme (2007), Greuter (1991), Hegazy & Lovett-Doust (2016), Olivier et al. (1995), Krigas et al.(2017), Boulos (1997), Gomez-Campo et al. (1984) and Enriquez & Gomez-Campo (1991).
FIGURE 9 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 9. Lectotype of the name Mandragora officinarum L., "Lipsiae ut Monspellii in horti" Herb. Burser IX: 26 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons. org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 12 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 12. Lectotype of the name Salvia sclarea L., "In hortis passim, Florentia sponte" Herb. Burser XIII: 108 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons.org/ licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 13 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 13. Lectotype (designated here) of the name Saponaria bellidifolia Sm., "Globularia lutea montana" in Colonna, Ekphrasis: 153. 1606.
FIGURE 6 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 6. Lectotype of the name Digitalis ferruginea L., "In Italia sponte, autem [...], Lipsii in horti" Herb. Burser XIII: 164 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http:// creativecommons.org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 3 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 3. Lectotype of the name Centaurea collina L., "in alpibus passim" Herb. Burser XV(2): 35 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons. org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 5 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 5. Lectotype of the name Cytisus nigricans L., "In Austria, Bohemia, Italia" Herb. Burser XXII: 11, left specimen (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http:// creativecommons.org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 2 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 2. Lectotype of the name Andryala integrifolia L., "In [...] locis" Herb. Burser VI: 57 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons.org/licenses/ by/4.0), Museum of Evolution, Uppsala University.
FIGURE 8 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 8. Lectotype of the name Juniperus sabina L., "Basileae in horto [...]" Herb. Burser XXV: 59 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons. org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 1 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 1. Lectotype of the name Allium subhirsutum L., "Parisiis in horto [...], Basileae in horto [...]" Herb. Burser III: 109 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http:// creativecommons.org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 7 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 7. Lectotype of the name Andropogon hirtus L., "In Italia" Herb. Burser I: 119 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons.org/licenses/by/4.0), Museum of Evolution, Uppsala University.
FIGURE 4 in An inventory of the names of native, non-endemic vascular plants described from Italy, their loci classici and types
FIGURE 4. Lectotype of the name Cistus salviifolius L., "Florentiae ut Monspellii horti" Herb. Burser, XXIV: 54 (UPS). Reproduced under the terms of the Creative Commons Attribution License [CC BY 4.0] (http://creativecommons.org/ licenses/by/4.0), Museum of Evolution, Uppsala University.
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.