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FIGURES 11–17. Tetramorium alternans Santschi, 1929 in Taxonomic revision of the Palaearctic Tetramorium chefketi species complex (Hymenoptera: Formicidae)
FIGURES 11–17. Tetramorium alternans Santschi, 1929. Gyne: alitrunk petiole and postpetiole, Fig. 11. dorsal view, Fig. 12. lateral view, Fig. 13. head. Worker: Fig. 14. head. Alitrunk petiole and postpetiole, Fig. 15. dorsal view, Fig. 16. lateral view, Fig. 17. scape, dorsal view.
FIGURES 1–2. Fig. 1 in Taxonomic revision of the Palaearctic Tetramorium chefketi species complex (Hymenoptera: Formicidae)
FIGURES 1–2. Fig. 1. Measurement method and reference lines for the length of the petiolar node (NOL), the distance between the posteriormost point of the petiole and the petiolar spiracle (PEL), and the length of the postpetiole in lateral view (PPL). Fig. 2. Measurement method and reference lines for the height of the petiolar node (NOH), the height of the petiole (PEH), the height of the postpetiole in lateral view (PPH), the length of propodeal teeth, measured in lateral view from the tip of spine to the propodeal spiracle (SPSP), and the minimal distance between propodeal spiracles and the propodeal declivity (SPL).
FIGURE 9 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 9. Evolutionary rate of each protein-coding (PCG) in the mitogenomes of Eneopterinae and Gryllinae.
FIGURE 6. A in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 6. A, Maximum likelihood phylogeny of the family Gryllidae inferred from rrnS partial sequences available in GenBank. B, Maximum likelihood phylogeny of the family Gryllidae inferred from cytb partial sequences available in GenBank. The red star indicates the species under study.
FIGURE 4 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 4. Calling song of Cardiodactylus muiri Otte, 2007. A, oscillogram of 19 syllables (= echemes); B–C, detailled oscillogram (B) and sonogram (C) of five syllables; D, detailed oscillogram of one syllable; E, frequency spectrum of one syllable.
FIGURE 2 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 2. Tree trunk with males of Cardiodactylus muiri Otte, 2007 engaged in singing activity during late afternoon in Kumawa forest (Papua, Indonesia). Red circles mark males' positions; height ca. 4 m.
FIGURE 1 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 1. Habitat of Cardiodactylus muiri Otte, 2007. A, dead tree trunk in Kumawa (Papua, Indonesia); B, C, male sitting on dead tree (A) during the day.
FIGURE 3 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 3. Females of Cardiodactylus muiri Otte, 2007. A, walking on leaf litter during early night; B, ovipositing in a mossy tree root at night; in Kumawa (Papua, Indonesia).
FIGURE 8 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 8. Percentage of pairwise identical bases (% identity) of mitogenome and each gene between the two subfamilies and within Gryllinae.
FIGURE 16 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 16. Maximum likelihood tree of Comanthus inferred from COI. Symbols, labels, and location abbreviations as in Table 2. New COI sequences are Genbank KR010245-KR010270.
FIGURE 15 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 15. Comanthus. (A–C) Comanthus parvicirrus—(A) live, with centrodorsal concealed within reef infrastructure; (B) aboral view showing centrodorsal with one row of cirri; (C) curled comb pinnule with transverse proximal comb tooth and triangular teeth confluent with exterior of pinnule. (D) Comanthus wahlbergii, aboral view showing centrodorsal with complete row of cirri. (E) Comanthus gisleni, aboral view showing centrodorsal with one row of cirri. (F) Comanthus suavia, aboral view showing centrodorsal without cirri. (G–H) Comanthus sp. 4—(G) live, exposed on reef following extraction from coral rubble; (H) aboral view showing bright yellow centrodorsal with one row of cirri. (I) Comanthus sp. 2, aboral view. (J–K) Comanthus sp. 4, small specimen, oral (J) and aboral view (K). (L) Comanthus sp. 2, aboral view. Madang, Papua New Guinea: A. MNHN- IE-2013-8117; G–H. MNHN-IE-2013-8044; I. MNHN-IE-2013-8034; J–K. MNHN-IE-2013-8043; L. MNHN-IE-2013-8037. Lizard Island, Australia: B–C. AM J17388, neotype. Low Island, Queensland, Australia: E. AM J13304, holotype. Between Palfrey and Lizard Island, Australia: F. AM J17275, holotype. Raja Ampat, Indonesia: D. SIO-BIC E6251.
FIGURE 14 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 14. Maximum likelihood tree of Clarkcomanthus inferred from COI. Symbols, location abbreviations, and labels as in Figure 2. New COI sequences are Genbank KR010190-KR010244.
FIGURE 13 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 13. Clarkcomanthus. (A–J) Clarkcomanthus albinotus—(A) live, oral view following extraction from rubble; (B) semicryptic under ledge; (C–H) aboral views; (I–J) short combs tapering near tip, with J showing paired confluent comb teeth. (K–L) Clarkcomanthus luteofuscum, aboral surface showing rounded centrodorsal with row of cirri. (M–N) Clarkcomanthus cf. littoralis—(M) aboral surface showing centrodorsal with no cirri; (N) comb with separated confluent teeth, smaller near tip. (O–R) Clarkcomanthus comanthipinnus—(O, P) live, oral view following extraction from rubble; (Q) aboral surfaces showing rounded centrodorsal with few cirri at interradials; (R) comb tapering to distal point, composed of separated nonconfluent teeth. (S–T) Clarkcomanthus mirus—(S) aboral surface showing centrodorsal with cirrus buds at interradials; (T) comb tapering to blunt tip, composed of separated nonconfluent teeth. Madang, Papua New Guinea: A. MNHN-IE-2013-8060; B, C. MNHN-IE- 2013-8122; D. MNHN-IE-2013-8068; K. MNHN-IE-2013-8184; O. MNHN-IE-2013-8082; P. MNHN-IE-2013-8151. Raja Ampat, Indonesia: E. SIO-BIC E6186; F. SIO-BIC E6187; G, I. SIO-BIC E6190; L. SIO-BIC E6210; M, N. SIO-BIC E6193. South Island, near Lizard Island, Australia: H, J. AM J17360; holotype. Lizard Island, Australia: Q-R. AM J16992, holotype; S, T. AM J17202, holotype.
FIGURE 12 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 12. Clarkcomanthus. (A–F) Clarkcomanthus mirabilis—(A–D) live, on reef, fully exposed (A, C) or semicryptic (B, D), illustrating color variations; (E–F) aboral surface, showing different color patterns and small, acirrate centrodorsal. (G–M) Clarkcomanthus alternans—(G, H, I, K) live, exposed on reef, (J, L) aboral views, showing small centrodorsal with no cirri, exposed radials, and overlapping division series and arm bases, (M) aboral view of small specimen with larger centrodorsal bearing few cirri and covering most of radials, and fewer non-overlapping arms. Madang, Papua New Guinea: A. MNHN-IE- 2013-8158; B. MNHN-IE-2013-8111; C. MNHN-IE-2013-8162; E. MNHN-IE-2013-8086; F. not vouchered, SIO-BIC E5973 (DNA subsample); G. MNHN-IE-2013-8180; I. MNHN-IE-2013-8055; J. MNHN-IE-2013-8173; K. MNHN-IE-2013-8173; L. not vouchered, SIO-BIC E5968 (DNA subsample). Timor: D. AM J.25411. Raja Ampat, Indonesia: H. not vouchered (RA226); M. SIO- BIC E6219.
FIGURE 10 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 10. Anneissia. (A–G) Anneissia bennetti—(A–D) live, fully exposed; various color varieties; (E–G) aboral surface showing thick centrodorsal and numerous cirri. (H–I) Anneissia japonica—(H) thick centrodorsal bearing numerous cirri in multiple rows; (I) non-confluent, widely separated comb teeth terminating in a sharp point. Raja Ampat, Indonesia: A, C, D. not vouchered; E. not vouchered (RA304); G. SIO-BIC E6290. Madang, Papua New Guinea: B. MNHN-IE-2013-8157; F. not vouchered, SIO-BIC E6063 (DNA subsample). Japan: H–I. NBC 1742, type.
FIGURE 9 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 9. Maximum likelihood tree of Comaster inferred from COI. Symbols and labels as in Figure 2. Location abbreviations—Madang, Great Barrier Reef, Australia (GBR); Papua New Guinea (PNG); Raja Ampat, Indonesia (Raja); Goodwyn Island, Western Australia (WA). New COI sequences are Genbank KR010330-KR010347.
FIGURE 11 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 11. Maximum likelihood tree of Anneissia inferred from COI. Symbols, labels and location abbreviations as in Figure 2. New COI sequences are Genbank KR010352-KR010356.
FIGURE 8 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 8. Comaster. (A–G) Comaster schlegelii—(A) live, exposed on sediment; (B) aboral surface, showing pentagonal centrodorsal lacking cirri; (C) live, exposed on reef; (D) paired comb teeth of equal shape, well separated and confluent with edge of pinnular, tapering to pinnule tip; (E) aboral surface, showing pentagonal centrodorsal with row of cirri; (F), live, tucked within coral structure; (G) aboral surface showing centrodorsal with ring of cirri. (H–M) Comaster audax—(H–I) live, exposed on reef, (J–L) aboral surface showing centrodorsal with few cirri, yellow distally; (M) paired comb teeth of equal shape, well separated and confluent with edge of pinnular, tapering to pinnule tip. Madang, Papua New Guinea: A–B. MNHN-IE-2013- 8147; C. MNHN-IE-2013-8178; E. MNHN-IE-2013-8071. I, L. not vouchered, SIO-BIC E5998 (DNA subsample). Raja Ampat, Indonesia: D, F. SIO-BIC E6260; G. SIO-BIC E6261; H. not vouchered. K, M. SIO-BIC E6258. Lizard Island, Australia: J. AM J17567, holotype.
FIGURE 7 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 7. Maximum likelihood tree of Phanogenia inferred from COI. Symbols and labels as in Figure 2. Location abbreviations—Borneo (Born); Great Barrier Reef, Australia (GBR); Malaysia (Malay); Papua New Guinea (PNG); Philippines (Philip); Raja Ampat, Indonesia (Raja); Singapore Strait, Singapore (Sing); Viligili, Maldives (Mald). New COI sequences are Genbank KR010294-KR010306.
FIGURE 6 in The genera and species of Comatulidae (Comatulida: Crinoidea): taxonomic revisions and a molecular and morphological guide
FIGURE 6. Maximum likelihood tree of Capillaster inferred from COI. Symbols and labels as in Figure 2. Location abbreviations—Great Barrier Reef, Australia (GBR); Madang, Papua New Guinea (PNG); Raja Ampat, Indonesia (Raja); Singapore Strait, Singapore (Sing). New COI sequences are Genbank KR010307-KR010329.
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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.