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FIGURE 52 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 52. Trachipterus trachypterus (Gmelin 1789), Sarafand, 7 May 2018, photograph: unknown (posted on local social media).
FIGURE 31 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 31. Ophisurus serpens (Linnaeus 1758), Beirut, February 2007, Crocetta & Bariche in Dailianis et al. (2016).
FIGURE 22 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 22 Glaucostegus cemiculus (Geoffroy St. Hilaire 1817), Beirut, 17 October 2007, AUBM (CH0032).
FIGURE 11 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 11. Odontaspis ferox (Risso 1810), Tripoli, 10 June 2014, photograph: unknown (posted on local social media).
FIGURE 8 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 8. Alopias vulpinus (Bonnaterre 1788), Naqoura, 2 June 2018, photograph: unknown (posted on local social media).
FIGURE 2 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 2. Carcharhinus falciformis (Müller & Henle 1839), Saida, 15 September 2017, photograph: unknown (posted on local social media).
FIGURE 3 in The marine ichthyofauna of Lebanon: an annotated checklist, history, biogeography, and conservation status
FIGURE 3. Carcharhinus limbatus (Valenciennes 1839), Naqoura, October 2011, photograph: Ziad Samaha.
Figure 73 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 73. Boxplot of morphometric variation of Mexican species of Eucyclops. Abbreviations on the x-axis indicate the character used: TB, total body size; VII/CR, proportion seta VII/length caudal rami; VI/III, proportion seta VI/seta III; P1B.E, basipodal spine/Enp P1; P1S.E, spine/W Enp3 P1; P2S.L, spine/ Enp P2; P3S.L, spine/Enp3 P3; P4I.L, inner spine/L Enp3 P4; P4I.O, inner spine/outer Enp3 P4; P5L.W, proportion length/width; P5M.S, proportion medial seta/inner spine.
Figure 69 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 69. Eucyclops ishidai sp. nov. Adult female. (A) Habitus, dorsal; (B) genital somite, ventral; (C) urosome, dorsal; (D) anal operculum, dorsal; (E) caudal rami, dorsal; (F) antennule.
Figure 60 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 60. Eucyclops mittmanni sp. nov. Adult female. (A) P4, caudal; (B) coxa and basis P4, caudal; (C) intercoxal sclerite P4, caudal; (D) coxal spine P4; (E) Enp3 P4; (F) P5.
Figure 51 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 51. Eucyclops defaye sp. nov. Adult female. (A) Antennule segment 9; (B) antenna, caudal; (C) antennal basis, caudal; (D) antennal basis and Enp1, frontal; (E) maxilla and maxilliped; (F) P1, caudal.
Figure 48 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 48. Eucyclops defaye sp. nov. Adult female. (A) Urosome, ventral; (B) P5; (C) antennule, segments 1–8; (D) antennule, segments 8–10; (E) antenna, frontal; (F) basis and Enp1 antenna; (G) maxilla; (H) maxilliped.
Figure 71 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 71. Eucyclops ishidai sp. nov. Adult female. (A) P1; (B) basis P1, frontal; (C) intercoxal sclerite P1, frontal; (D) intercoxal sclerite P1, caudal; (E) P2, frontal; (F) P3, caudal.
Figure 29 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 29. Eucyclops cuatrocienegas Suárez-Morales and Walsh, 2009. Adult female. (A) Urosome, ventral; (B) antennule, segment 1–8; (C) antennule, segment 9–12; (D) antenna, frontal; (E) antennal basis, caudal.
Figure 38 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 38. Eucyclops alekseevi sp. nov. Adult female. (A) Coxa P1, caudal; (B) intercoxal sclerite P1, caudal; (C) P2, frontal; (D) intercoxal sclerite P2, frontal; (E) intercoxal sclerite P3, frontal; (F) P3, frontal.
Figure 16. Eucyclops festivus Lindberg, 1955 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 16. Eucyclops festivus Lindberg, 1955. Adult female. (A) Habitus, dorsal; (B) genital somite, ventral; (C) anal operculum, dorsal; (D) caudal rami, ventral; (E) antennule; (F) antennule segments 1–5.
Figure 9. Eucyclops prionophorus Kiefer, 1931a in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 9. Eucyclops prionophorus Kiefer, 1931a. Adult female. (A) Urosome, ventral; (B) anal operculum, dorsal; (C) antennule; (D) Enp1–3 antenna; (E) antennal basis, frontal; (F) maxilla; (G) maxilliped.
Figure 4 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 4. Eucyclops elegans (Herrick, 1884). A–D, adult female; E–L, adult male. (A) Endopod P4; (B) exopod P4; (C) coxa, basis and intercoxal sclerite, frontal; (D) coxa, basis and intercoxal sclerite, caudal; (E) antennule segments 1–13; (F) antennule segments 14–15; (G) basis antenna, caudal; (H) caudal ramus; (I) endopod P4; (J) exopod P4; (K) coxa, basis and intercoxal sclerite P4, caudal; (L) P5 and P6.
Figure 2 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 2. Eucyclops elegans (Herrick, 1884). Adult female. (A) Urosome, ventral; (B) antennule segments 1–8; (C) antennule segments 9–12; (D) antenna, caudal; (E) antenna basis, frontal; (F) Scale bar = 100 μm.
Figure 1 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 1. Morphological characters reviewed in the Mexican Eucyclops. (A) Antennule segments 1–9; (B) antennule segments 10–12; (C) antenna basis, frontal; (D) antenna basis, caudal; (E) Enp1 antenna; (F) coxa, basis and intercoxal sclerite P1, frontal; (G) intercoxal sclerite P1 (caudal); (H) coxa and basis P2, frontal; (I) intercoxal sclerite P2, frontal; (J) intercoxal sclerite P2, caudal; (K) coxa, basis and intercoxal sclerite P3, frontal; (L) intercoxal sclerite, caudal; (M) coxa and intercoxal sclerite P4, caudal; (N) intercoxal sclerite P4, frontal; (O) coxal spine P4; (P) caudal ramus and anal operculum.
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.