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1,492 results for “species delimitation”
FIGURE 25 in Torrenticola trimaculata n. sp. (Parasitengona: Torrenticolidae), a three-spotted water mite from eastern North America: taxonomic history, species delimitation, and survey of external morphology
FIGURE 25: Torrenticola trimaculata n. sp. male genital skeleton. A – line drawing depicting moderately developed branchia distalia (bd), well-developed branchia proximalia (bp), weak carina anterior (ca), very large cella proximalis (cp), and reduced processus proximalis (pp); B – compound light micrograph.
Figure 1 from: Egan AN (2015) Species delimitation and recognition in the Pediomelum megalanthum complex (Fabaceae) via multivariate morphometrics. PhytoKeys 44: 65-87. https://doi.org/10.3897/phytokeys.44.8750
Figure 1 - Dendrogram based on all characters for all specimens using Ward's cluster analysis.
Figure 4 from: Huemer P, Karsholt O (2018) Revision of the genus Megacraspedus Zeller, 1839, a challenging taxonomic tightrope of species delimitation (Lepidoptera, Gelechiidae). ZooKeys 800: 1-278. https://doi.org/10.3897/zookeys.800.26292
Figure 4 Terminology of important characters in male genitalia of Megacraspedusgranadensis sp. n.
Figure 2 from: Huemer P, Karsholt O (2018) Revision of the genus Megacraspedus Zeller, 1839, a challenging taxonomic tightrope of species delimitation (Lepidoptera, Gelechiidae). ZooKeys 800: 1-278. https://doi.org/10.3897/zookeys.800.26292
Figure 2 Adult head with pecten on antennal scape of Megacraspedusniphorrhoa (Meyrick, 1926).
Figure 9 from: Singh G, Aptroot A, Rico VJ, Otte J, Divakar PK, Crespo A, Cáceres ME da S, Lumbsch HT, Schmitt I (2018) Neoprotoparmelia gen. nov. and Maronina (Lecanorales, Protoparmelioideae): species description and generic delimitation using DNA barcodes and phenotypical characters. MycoKeys 44: 19-50. https://doi.org/10.3897/mycokeys.44.29904
Figure 9 Neoprotoparmeliacrassa Elix39818. Scale bar: 1 mm.
Figure 4 from: Singh G, Aptroot A, Rico VJ, Otte J, Divakar PK, Crespo A, Cáceres ME da S, Lumbsch HT, Schmitt I (2018) Neoprotoparmelia gen. nov. and Maronina (Lecanorales, Protoparmelioideae): species description and generic delimitation using DNA barcodes and phenotypical characters. MycoKeys 44: 19-50. https://doi.org/10.3897/mycokeys.44.29904
Figure 4 Neoprotoparmeliaamerisidiata, holotype Lendemer 20995 (NY). Scale bar: 1 mm.
Figure 13 from: Singh G, Aptroot A, Rico VJ, Otte J, Divakar PK, Crespo A, Cáceres ME da S, Lumbsch HT, Schmitt I (2018) Neoprotoparmelia gen. nov. and Maronina (Lecanorales, Protoparmelioideae): species description and generic delimitation using DNA barcodes and phenotypical characters. MycoKeys 44: 19-50. https://doi.org/10.3897/mycokeys.44.29904
Figure 13 Neoprotoparmeliasiamisidiata, v.d. Boom 46872 (Hb. v.d. Boom). Scale bar: 1 mm.
Figure 5 from: Singh G, Aptroot A, Rico VJ, Otte J, Divakar PK, Crespo A, Cáceres ME da S, Lumbsch HT, Schmitt I (2018) Neoprotoparmelia gen. nov. and Maronina (Lecanorales, Protoparmelioideae): species description and generic delimitation using DNA barcodes and phenotypical characters. MycoKeys 44: 19-50. https://doi.org/10.3897/mycokeys.44.29904
Figure 5 Neoprotoparmeliaaustralisidiata, holotype Kantvilas 289/07 (HO 545660). Scale bar: 1 mm.
Figure 10 from: Singh G, Aptroot A, Rico VJ, Otte J, Divakar PK, Crespo A, Cáceres ME da S, Lumbsch HT, Schmitt I (2018) Neoprotoparmelia gen. nov. and Maronina (Lecanorales, Protoparmelioideae): species description and generic delimitation using DNA barcodes and phenotypical characters. MycoKeys 44: 19-50. https://doi.org/10.3897/mycokeys.44.29904
Figure 10 Neoprotoparmeliaisidiata, holotype Aptroot 31494 (BR). Scale bar: 1 mm.
Data from: Delimiting species in recent radiations with low levels of morphological divergence: a case study in Australian Gehyra geckos
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Data from: Limitations of species delimitation based on phylogenetic analyses: a case study in the (Hypogymnia hypotrypa) group (Parmeliaceae, Ascomycota)
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Data from: Species delimitation of the cochineal insects (Dactylopius) using molecular phylogenetics and morphology (Ph.D. thesis)
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FIGURES 21–24 in COI mtDNA barcoding and morphology for species delimitation in the spider genus Ixchela Huber (Araneae: Pholcidae), with the description of two new species from Mexico
FIGURES 21–24. Ixchela zapatai sp. nov. Female epigynum: 21, ventral view. 22, dorsal view. 23, frontal view. 24, lateral view. MSE: median septum of epigynum, PP: pore plates. Scale bars: 0.5 mm.
FIGURES 10–13 in COI mtDNA barcoding and morphology for species delimitation in the spider genus Ixchela Huber (Araneae: Pholcidae), with the description of two new species from Mexico
FIGURES 10–13. Ixchela panchovillai sp. nov. Female epigynum: 10, ventral view. 11, dorsal view. 12, frontal view. 13, lateral view. MSE: median septum of epigynum, PP: pore plates. Scale bars: 0.5 mm (Figs 12, 13), 1 mm (Figs 10, 11).
FIGURE 2 in COI mtDNA barcoding and morphology for species delimitation in the spider genus Ixchela Huber (Araneae: Pholcidae), with the description of two new species from Mexico
FIGURE 2. Maximum Likelihood gene tree (highest log: -3749.87), constructed with COI barcode sequences of Ixchela. Colors in the branches indicate species; same colors are in the bars, which represent the different species delimitation methods used for their validation. Red branches + blue circles indicate the new species. Numbers below the bars represent the species recovered in each species delimitation method (not considering the outgroup: P. dugesi): 1: morphology (M). 2: neighbor-joining (NJ). 3: GMYC. 4: ABGD with recursive partitions (RP). 5: ABGD with initial partitions (IP). 6: bPTP with IB. 7: bPTP with ML. Numbers above branches are Bootstrap support values (>50% significant), number below are posterior probabilities (PP) support values under BI.
FIGURE 1 in COI mtDNA barcoding and morphology for species delimitation in the spider genus Ixchela Huber (Araneae: Pholcidae), with the description of two new species from Mexico
FIGURE 1. Neighbour-Joining (NJ) with p-distances tree constructed with COI barcode sequences from different specimens and species of Ixchela. Colors in the branches indicate species, red branches + blue circles indicate the new species. Male cheliceral, male palps, and female epigyna are showed for each species to show morphological structures taxonomically important at species level. Number on branches represent Bootstrap support values (>50% significant).
FIGURE 31 in COI mtDNA barcoding and morphology for species delimitation in the spider genus Ixchela Huber (Araneae: Pholcidae), with the description of two new species from Mexico
FIGURE 31. Type localities of Ixchela panchovillai sp. nov. (green circle) and Ixchela zapatai sp. nov. (red circle), in the state of Oaxaca, Mexico.
Figure 1 in Assessment of morphometric characters to delimit species of Apolpium Chamberlin, 1930 (Pseudoscorpiones, Olpiidae)
Figure 1. Measurements taken for the study. (a) Carapace (b) Pedipalp (c) Chela (d) Chelicera (e) Leg I (f) Leg IV. Scale lines A = 2 mm. B = 500 um. C, D, E = 200 um. For numbering of measurements see Table 2.
FIGURE 5 in Restoring the species status of Catharus maculatus (Aves: Turdidae), a secretive Andean thrush, with a critique of the yardstick approach to species delimitation
FIGURE 5. Scatterplots of principal component scores, derived from four variables calculated from recorded songs from Mesoamerica (C. d. dryas) and South America (C. d. maculatus). Ellipses encompass ¿95% of measured individuals.
FIGURES 14–19 in Host associations of Melanterius Erichson (Coleoptera: Curculionidae: Cleogonini), with a diagnosis and delimitation of the genus and description of five new species
FIGURES 14–19. Dorsal view of habitus and aedeagi of Melanterius acaciae Lea and M. antennalis Lea. 14–16: M. acaciae; 14: male (South Africa, Witelsbos); 15: aedeagus (New South Wales, Kangaroo Valley); 16: aedeagus (New Caledonia, Noumea). 17–19: M. antennalis; 17: male (New South Wales, Araluen); 18: underside of rostrum, showing lateral flanges (New South Wales, Gibraltar Range NP); 19: adeagus (New South Wales, Gibraltar Range NP).
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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)
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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.