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Fig. 2 in Not the same: phylogenetic relationships and ecological niche comparisons between two different forms of Aglaoctenus lagotis from Argentina and Uruguay
Fig. 2 Map showing the sampling localities for genetic and ecological niche analyses of A. lagotis. Sampled locations are indicated by colored symbols according to the identification of the individuals
Fig. 5 in Not the same: phylogenetic relationships and ecological niche comparisons between two different forms of Aglaoctenus lagotis from Argentina and Uruguay
Fig. 5 Species tree and chronogram inferred from mitochondrial genes (cox1, 12S, and 16S+ L1 + nad1) and the nuclear intron tif5A with *BEAST under partition scheme by gene and strict clock. Numbers above branches denote Bayesian posterior probabilities clade
Fig. 18 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 18 Characters relative to the female and male genitalia of specimens sampled in the present analysis: a Isala spiralis comb. nov., dorsal view of the epigynal plate. b Stephanopis armata, dorsal view of the epigynal plate. c Paratobias championi sp. rev., ventral view of the epigynal plate. d Coenypha nodosa comb. nov., ventral view of the epigynal plate. e Stephanopis lata, ventral view of the epigynal plate. f Borboropactus cinerascens, ventral view of the epigynal plate (arrows indicate the epigynal teeth). g Stephanopis flagellata, left palp. h Sidymella bicuspidata, left palp
Fig. 21 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 21 Characters relative to the male genitalia of specimens sampled in the present analysis: a Stephanopis barbipes, left palp. b Isala cambridgei comb. nov., left palp. c Onocolus intermedius, left palp. d Sidymella longispina, left palp. e Paratobias sp. 1, left palp. f Tmarus polyandrus, left palp. g Stephanopis altifrons, left palp (lower arrows indicate the pair of ventral filamentous setae on tibiae). h Stephanopis bicornis, retrolateral view of left palp (detail of the cymbial setae brush)
Fig. 8 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 8 Characters relative to dorsal habitus and prosoma of specimens sampled in the present analysis: a Stephanopis lata, frontal view. b Sidymella excavata, frontal view. c Stephanopis pentacanha, carapace. d Epicadinus trispinosus, carapace. e Tmarus polyandrus, carapace. f Isala arenata comb. nov., dorsal habitus. g Epicadus granulatus, sternum. h Borboropactus nyerere, sternum
Fig. 6 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 6 Character transformations, detailed topology of the relationships between "ditissima clade" (blue) and Sidymella (stricto sensu); emergence of the "pentacantha clade" (purple) as part of the "Epicadus group"
Fig. 13 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 13 Characters relative to carapace and legs of specimens sampled in the present analysis: a Stephanopis pentacantha, prosoma (detail of the procurve posterior eye row). b Paratobias championi sp. rev. (detail of the recurve posterior eye row). c Stephanopis fissifrons, prosoma (detail of the straight posterior eye row). d Stephanopis barbipes, prosoma (arrows indicate MOQ macrosetae). e Borporopactus cinerascens, prosoma (canoeshaped tapetum). f Tmarus elongatus, tibiae I (trichobothria linearly distributed). g Stephanopis pentacantha, tibiae I (clustered trichobothria). h Coenypha edwardsi, leg I (arrows indicate mesial and ectal apophysis on femur)
Fig. 5 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 5 Character transformations and detail of the dichotomy between the Isala and Paratobias gen. rev. based on the topology of the most congruent tree (K = 17.89). Filled squares represent synapomorphies
Fig. 2 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 2 Hypothetical reconstruction of the relationships of Stephanopis and Sidymella based on the strict consensus of the most congruent tree (K = 17.89) obtained after implied weighted analysis. Nodal stability is represented by the "Navajo rugs" along the branches (analysis recovering
Fig. 4 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 4 Character transformations in Stephanopis (stricto sensu) based on the topology of the most congruent tree (K = 17.89). Filled squares represent synapomorphies and those in white are homoplastic
Fig. 3 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 3 Clade supports obtained by relative Bremer index (above the branches) and symmetric resampling analysis (below the branches). A colour scheme is applied to represent the geographical distribution of the clades represented on the working phylogenetic hypothesis
Fig. 1 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 1 Topologic comparison between consensuses trees obtained under equal weighting parsimony (EW) and Bayesian inference (BI)
Fig. 20 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 20 Characters relative to the male genitalia of specimens sampled in the present analysis: a Stephanopis fissifrons, grooved RTA. b Sidymella lucida, nodose RTA. c Isala palliolata comb. nov., smooth RTA. d Epicadus taczanowskii, canoe-shaped RTAbvr. e Sidymella hirsuta, spoon-shaped RTAvbr. f Coenypha ditissima comb. nov., left palp. g Sidymella furcillata, left palp. h Isala spiralis comb. nov., left palp
Fig. 15 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 15 Characters relative to legs, claws and opisthosoma of specimens sampled in the present analysis: a Epicadus heterogaster, patella I. b Stephanopis pentacantha, patella I. c Isala cambridgei comb. nov., male tibial brushes. d Epicadus caudatus, trichobothrium and duster-shaped setae. e Tmarus elongatus, tarsal claws of the right leg I (mesial view). f Epicadus taczanowskii, tarsal claws of the right leg I (ectal view). g Epicadus heterogaster, tibia I. h Epicadus trituberculatus, opisthosoma
Fig. 7 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 7 Section of the working phylogenetic hypothesis detailing the character transformations and relationships between the "angularis clade" (orange), Sidymella rubrosginata (red), "trapezia clade" (blue)
Fig. 19 in Phylogenetic relationships in Stephanopinae: systematics of Stephanopis and Sidymella based on morphological characters (Araneae: Thomisidae)
Fig. 19 Characters relative to the male genitalia of specimens sampled in the present analysis: a Epicadus trituberculatus, left palp. b Stephanopis pentacantha, left palp (arrow indicates the prolateral macrosetae). c Geraesta hirta, left palp. d Sidymella lucida, retrolateral view of left palp. e Borboropactus nyerere, left palp. f Isala cambridgei comb. nov., retrolateral view of left palp. g Stephanopis nigra, retrolateral view of left palp. h Stephanopis altifrons, detail of the RTA
FIGURE 2 in Phylogenetic relationships of Malesian Lady Ferns (Athyrium) provide insight into long-standing species complexes
FIGURE 2. Sampling localities of Athyrium in Malesia. 1) West Java, Mount Gede-Pangrango; 2 West Java, Mount Burangrang and Mount Bukit Tunggul; 3. Mt. Patuha; 4) Bali, Mount Batukaru; 5) West Sulawesi, Mount Gandang Dewata.
FIGURE 7 in Phylogenetic relationships of Malesian Lady Ferns (Athyrium) provide insight into long-standing species complexes
FIGURE 7. Athyrium erythropodum silhouettes showing leaf morphology, from Fraser-Jenkins 22018, Java.
FIGURE 1 in Phylogenetic relationships of Malesian Lady Ferns (Athyrium) provide insight into long-standing species complexes
FIGURE 1. Field photos of selected Athyrium from Java. A. Athyrium puncticaule, Wardani 1184. B. Athyrium pulcherrimum, Wardani 1182. C. Athyrium nigripes, Wei 514. D. Athyrium erythropodum, Wei PE-BO-2002. E. Athyrium nigripes, Wei 514.
FIGURE 4 in Phylogenetic relationships of Malesian Lady Ferns (Athyrium) provide insight into long-standing species complexes
FIGURE 4. Results from the maximum-likelihood phylogenetic analysis. Important clades are labeled. Samples from Java, Bali, and Sulawesi are in boldface. Numbers at nodes indicate bootstrap support values. The tree is trimmed to show only the most relevant outgroup taxa.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.