Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
170
datasets available to search
ShareScore release 0.9.0
Dataset results
170 results for “anoles”
FIGURE 7 in A new giant anole (Squamata: Iguanidae: Dactyloinae) from southwestern Ecuador
FIGURE 7. Distribution of Anolis nemonteae sp. nov. (red circles) and A. fraseri (blue circles) in Ecuador. The approximate location of the Jubones river basin is marked with a red ellipse.
FIGURE 5 in A new giant anole (Squamata: Iguanidae: Dactyloinae) from southwestern Ecuador
FIGURE 5. Dewlaps of males and females in five species of the Megaloa clade from Ecuador. Anolis nemonteae sp. nov. adult male (QCAZ 14596, A) and adult female (QCAZ 14595, B); A. fraseri adult male (QCAZ 6862, C) and adult female (QCAZ 11864, D); A. parilis adult male (QCAZ 15047, E) and adult female (QCAZ 15052, F); A. purpurescens adult male (QCAZ 4734, G) and adult female (QCAZ 10557, H); A. princeps adult male (QCAZ 16895, I) and adult female (QCAZ 6892, J). Photographs by AEN (A, B), FAV (C, J), D. Quirola (D, E, F), OTC (G, H), and D. Núñez (I).
FIGURE 2 in Anole classification: A response to Poe
FIGURE 2. Comparison between Poe (2004) and Nicholson et al. (2012) for consistency in recognizing monophyletic groups of members for genera proposed by Nicholson et al. (2012). Figure from Poe (2004) used with permission. Shaded boxes show the genera proposed by Nicholson et al. (2012), and—unless indicated (arrows point to problematic taxa)—group membership is identical between the two studies. To conserve space, the Norops portion of Poe's (2004) tree is not shown, but showed clear monophyly for the group, with no associated problematic taxa. "A" (occultus) nested with other taxa in our (2012) genus Deiroptyx in our molecular tree, but diverged at its base in our combined tree. "B" (lucius) nested with our (2012) genus "Anolis" in our combined tree, but was nested with our genus "Xiphosurus" in our (2012) molecular tree. "C" (argenteolus) nested with other Anolis taxa in our combined tree, but nested within Xiphosurus in our molecular tree. "D" (darlingtoni) nested with our (2012) genus Deiroptyx in our molecular tree, but lay at the base of combined tree—we elected to place it within our genus Deiroptyx in our classification. "E" (christophei) nested with other taxa in our (2012) genus Xiphosurus, but we tentatively placed it within our (2012) genus "Chamaelinorops" due to several compelling morphological features (see Nicholson et al. 2012, systematics section, for further explanation). "F" (spectrum) nested within our (2012) genus "Chamaelinorops" in our combined tree, but we lacked molecular data for this taxon. Given that all other alutaceus group species nested together, with high support, in molecular analyses, we placed this taxon within our (2012) genus Anolis. "G" (cyanopleurus) nested with our (2012) genus "Anolis" in all analyses. Note placement of these taxa in Figures 1, 3, 4 and 5. Notice that, in each case, each genus is monophyletic at a high level of confidence, with the sole exception of the few problematic taxa.
Figure 3 in Size, spines and crochets: defences of luna moth caterpillars against predation by brown anoles
Figure 3. Close-ups of luna moth caterpillars sporting scoli equipped with spines that are effective as defence against anoles. Scoli may deliver an aposematic signal as they can vary in colour from green (freshly molted fourth instar, top left) and black (late fourth instar, bottom left) to blue (freshly molted fifth instar, top right) and red (late fifth instar, bottom right).
Figure 2 in Size, spines and crochets: defences of luna moth caterpillars against predation by brown anoles
Figure 2. Top and middle: caterpillars of the luna moth, Actias luna; bottom: caterpillar of the io moth, Automeris io (Saturniidae).
Figure 1 in Size, spines and crochets: defences of luna moth caterpillars against predation by brown anoles
Figure 1. Left: the brown anole (Anolis sagrei); right: the green anole (Anolis carolinensis). Both species are common in Florida and exhibit excellent climbing abilities, which allow them to hunt for caterpillars on plants.
FIGURE 1 in 1986 Redux: New genera of anoles (Squamata: Dactyloidae) are unwarranted
FIGURE 1. Alternative valid generic designations among anoles, assuming the molecular tree of Nicholson et al. (2012: Fig. 4).
FIGURE 1. Anolis nebulosus from a in Synonyms for some species of Mexican anoles (Squamata: Dactyloidae)
FIGURE 1. Anolis nebulosus from a) the type locality of A. nebulosus, b) the type locality of A. schmidti.
FIGURE 19 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 19. Habitats of Dactyloa in western Panama. From west to east (collected species in parentheses): (A) Lower Montane Wet Forest (LMWF) at Río Changena, 1640 m asl (D. microtus); (B) LMWF at Sendero La Cascada, 1830 m asl (D. ginaelisae); (C) Premontane Wet Forest (PMWF) at headwaters of Río Chiriquí Malí, BPPS, 1050 m asl (westernmost and highest locality for D. kunayalae); (D) PMWF at Willie Mazú, 640 m asl (D. frenata, D. ibanezi, and D. insignis); E) PMWF at Cerro Pata de Macho, RFLF, ca. 1500 m asl (D. casildae and D. ginaelisae); (F) looking north from pasture at ca. 1800 m asl onto primary and secondary LMWF along valley of Quebrada Juglí, ca. 1710 m asl (type locality of D. ginaelisae); (G) LMWF at Cerro Santiago near La Nevera, 1810 m asl (D. ginaelisae); (H) looking from PMWF at Cerro Negro, 700 m asl (D. frenata), towards PMWF on Cerro Mariposa (D. frenata, D. ibanezi, D. insignis, and D. kunayalae).
FIGURE 18 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 18. Preserved specimens of Dactyloa from western Panama: (A–D) Dactyloa casildae, (A) and (B) young male MHCH 2121, SVL = 69 mm; (C) and (D) female SMF 89453, SVL = 81 mm; (E–G) D. frenata, (E) male SMF 89467, SVL = 132 mm, (F) and (G) young male SMF 91460, SVL = 72 mm; (H–J) D. ibanezi, (H) male paratype SMF 89459, SVL = 78 mm, (I) and (J) female SMF 91475, SVL = 78 mm; (K–M) D. insignis, (K) adult female SMF 89482, SVL = 124 mm, (L) and (M) juvenile female SMF 91477, SVL = 64 mm; (N–Q) D. kunayalae, (N) and (O) male SMF 91484, SVL = 103 mm; (P) and (Q) young female SMF 91485, SVL = 64 mm; (R) and (S) D. ginaelisae, female SMF 91503, SVL = 100 mm; (T) and (U) D. microtus, young male SMF 91499, SVL = 65 mm.
FIGURE 15 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 15. Specimens of Dactyloa kunayalae from western Panama: (A) adult male SMF 91484 from BPPS; (B) young female SMF 91485 from Río Hacha; (C) female SMF 96009 from Cerro Mariposa; (D) SMF 96009 in sleeping position; (E) uncollected, probably male specimen from Río Chilagres; (F–H) dewlaps of (F) male SMF 91484, (G) female SMF 96009, and (H) young female SMF 91485; (I) lateral, (J) dorsal, and (K) ventral views of head of SMF 91485; (L) ventral view of SMF 91485; (M) enlarged postcloacal scales of SMF 91484; ventral views of (N) left foot and (O) left hand of SMF 91485.
FIGURE 12 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 12. Specimens of Dactyloa frenata from western Panama: (A) adult male SMF 89467 from Cerro Mariposa, photo by Nadim Hamad and Leonhard Stadler; (B) juvenile male SMF 91459 and (C) young male SMF 91460 from Willie Mazú; (D) female SMF 89897 from Cerro Negro; (E–G) dewlaps of (E) adult male SMF 89467, photo by Nadim Hamad and Leonhard Stadler, (F) young male SMF 91460, and (G) female SMF 89897; (H) lateral, (I) dorsal, and (J) ventral views of head of SMF 91460; enlarged postcloacal scales of (K) SMF 91460 and (L) SMF 91459; ventral views of (M) left foot and (N) left hand of SMF 91460.
FIGURE 7 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 7. Specimens of Dactyloa microtus from Costa Rica: (A–H) holotype USNM 31282, adult female, SVL = 106 mm: entire specimen photographed by James Pointdexter in (A) lateral and (B) ventral view; (C) dorsal, (D) lateral, and (E) ventral view of head; (F) ventral view of cloacal region showing lack of enlarged postcloacal scales; (G) detail of dorsal scales at midbody, arrows indicate middorsal rows; (H) detail of subcaudal scales, each bearing more than one prominent keel; (I, J) individual photographed by Mason Ryan at Parque Nacional Tapantí, Cartago province; (K, L) individual photographed by Daniel Cascante at Cerro Dantas, Heredia province. Scale bars = 1 mm, all arrows point posteriorly.
FIGURE 6 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 6. Integration of morphological and molecular evidence. (A) ML tree of sampled voucher specimens; (B) Lineages as confirmed by molecular evidence; (C) Lineages as confirmed by morphological evidence; (D) Taxonomic identities of inferred CGLs.
FIGURE 4 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 4. Variation in selected morphological characters among our sample of Dactyloa from western Panama, separated by males (circles, left) and females (triangles, right) for each lineage. See text for details.
FIGURE 3 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 3 Results of molecular analyses. (A) Consensus tree from Bayesian analysis. Scale bar refers to number of substitutions per site. (B) Parsimony network with a 95% parsimony probability resulting in a connection limit of 10 steps; each node represents a unique haplotype separated from the next by one substitution step. Small circles represent unsampled haplotypes, rectangles the probably ancestral haplotypes. Locality numbers refer to Fig. 1. (C) Consensus tree from Maximum Parsimony analysis. Scale bar refers to number of changes over whole sequence.
FIGURE 5 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 5. Discriminant function analysis of the eight Dactyloa lineages using two morphometric and four pholidotic characters. See text for details.
FIGURE 2 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 2. (A) Maximum likelihood consensus tree of 19 Panamanian anoles. Black bars demarcate smallest well-supported clusters. (B) Sampled individuals in life, with locality numbers referring to Fig. 1. (C) Taxonomic identity derived from morphology on the basis of available literature.
FIGURE 21 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 21. Distribution of Dactyloa ibanezi and D. insignis in western Panama (main map) and Lower Central America (inset). Localities of specimens with 16S barcodes included in the molecular analyses are marked with an asterisk (*).
FIGURE 14 in Distribution and variation of the giant alpha anoles (Squamata: Dactyloidae) of the genus Dactyloa in the highlands of western Panama, with the description of a new species formerly referred to as D. microtus
FIGURE 14. Female specimens of Dactyloa insignis from western Panama: (A) juvenile female SMF 91477 from Willie Mazú; (B) adult female SMF 89482 from Cerro Mariposa at daytime, and (C) at night immediately after capture; (D–E) dewlaps of (D) SMF 89482 and (E) SMF 91477; (F) lateral and (G) dorsal views of head of SMF 89482; (H) dorsal and (I) ventral views of head of SMF 91477; ventral views of (J) entire specimen, (K) left foot, and (L) right hand of SMF 91477.
ScienceDex guides
Understand access before you commit
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.