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FIGURE 2. Elpidium littlei n in On three new species of Elpidium Müller, 1880 and the re-description of Elpidium laesslei (Tressler, 1956) from Jamaica (Ostracoda: Podocopida: Limnocytheridae)
FIGURE 2. Elpidium littlei n. sp., A–F, male, G-L, female. A—right valve, internal view (MZUSP 37371); B—right valve, internal view, detail of anterior region (MZUSP 37371); C—right valve, internal view, detail of posterior region (MZUSP 37371); D—left valve, internal view (MZUSP 37371); E—left valve, internal view, detail of anterior region (MZUSP 37371); F—left valve, internal view, detail of posterior region (MZUSP 37371); G—left valve, internal view (MZUSP 37372); H—left valve, internal view, detail of anterior region (MZUSP 37372); I—left valve, internal view, detail of posterior region (MZUSP 37372); J—right valve, internal view (MZUSP 37372); K—right valve, internal view, detail of anterior region (MZUSP 37372); L—right valve, internal view, detail of posterior region (MZUSP 37372). Scale bars: A, D, G, J—100 µm; B, C—50 µm; E, F, H, I, K, L—20 µm.
FIGURE 3. Elpidium littlei n in On three new species of Elpidium Müller, 1880 and the re-description of Elpidium laesslei (Tressler, 1956) from Jamaica (Ostracoda: Podocopida: Limnocytheridae)
FIGURE 3. Elpidium littlei n. sp., male. A—antennula, terminal segment, arrow points to the constriction present on the seta (MZUSP 37380); B—antennula, second segment, arrows point to the numerous pseudochaetae present on the segment (MZUSP 37380); C—antennula, detail of the first segment, arrows point to the rows of pseudochaetae next to the sub-apical expansion structure (MZUSP 37380); D—antenna, terminal segment showing the pectinate claw, a structure present in males (MZUSP 37380); E—antenna, part of second and third endopodial segments, arrow points to the tiny vestigial seta (MZUSP 37380); F—antenna, detail of the second segment of protopodite, arrows point to the numerous rows of pseudochaetae (MZUSP 37380); G—antenna, detail of the first endopodial segment, arrow points to the group of ventral pseudochaetae in triangular shape (MZUSP 37380); H—antenna, first endopodial segment, arrows point to the three groups of pseudochaetae (MZUSP 37380); I—mandible, coxa (MZUSP 37380); J—maxillula, detail of the endites showing the spatulate claws, arrow points to their constrictions (MZUSP 37380); K—maxillula, arrow points to the constriction present on the spatulate claws (MZUSP 37380); L—maxillula, detail showing the three rows of pseudochaetae present on the palp (MZUSP 37380). Scale bars: A-H—10 µm; I, L—2 µm; J, K—1 µm.
FIGURE 3. Longicyatholaimus maldivarum Gerlach, 1964 in A re-description of Longicyatholaimus maldivarum Gerlach, 1964 (Nematoda, Cyatholamidae) with an emended identification key of the genus
FIGURE 3. Longicyatholaimus maldivarum Gerlach, 1964. Drawings of the female. a) Habitus; b) Amphideal fovea; c) Buccal cavity. Scale bars: a = 100 µm; b- = 30 µm.
FIGURE 6. Longicyatholaimus maldivarum Gerlach, 1964 in A re-description of Longicyatholaimus maldivarum Gerlach, 1964 (Nematoda, Cyatholamidae) with an emended identification key of the genus
FIGURE 6. Longicyatholaimus maldivarum Gerlach, 1964. Light micrographs of the female. a) Buccal cavity; b) Amphideal fovea and cuticle ornamentation in the cephalic region; c) Lateral differentiation of the cuticular ornamentation in the middle of the body; d) Detail of the central cuticular pores in the lateral fields; e) Mid-body region showing eggs in the uterus; f) Detail of the vagina. Scale bars: a, b = 5 µm; c, d,f = 10 µm; e = 25 µm.
FIGURE 5. Longicyatholaimus maldivarum Gerlach, 1964 in A re-description of Longicyatholaimus maldivarum Gerlach, 1964 (Nematoda, Cyatholamidae) with an emended identification key of the genus
FIGURE 5. Longicyatholaimus maldivarum Gerlach, 1964. Confocal laser scanning micrograph of the male. a) 3Dreconstruction of the buccal cavity; b) 3D-reconstruction of the copulatory apparatus; c) 3D-reconstruction of the gubernaculum; d) View of the precloacal supplements; e) Detail of their structure. Scale bars: a–e = 10 µm.
FIGURE 2. Longicyatholaimus maldivarum Gerlach, 1964 in A re-description of Longicyatholaimus maldivarum Gerlach, 1964 (Nematoda, Cyatholamidae) with an emended identification key of the genus
FIGURE 2. Longicyatholaimus maldivarum Gerlach, 1964. Drawings of the male. a) Habitus; b) Amphideal fovea and cephalic ornamentation; c) Buccal cavity; d) Lateral differentiation of the cuticular ornamentation in the middle of the body; e) Detail of the pre-cloacal supplements; f) Copulatory apparatus; g) Lateral differentiation of the cuticular ornamentation in the spicule region. Scale bars: a = 50 µm; b, c, f = 30 µm; d, e, g = 10 µm.
FIGURE 4. Longicyatholaimus maldivarum Gerlach, 1964 in A re-description of Longicyatholaimus maldivarum Gerlach, 1964 (Nematoda, Cyatholamidae) with an emended identification key of the genus
FIGURE 4. Longicyatholaimus maldivarum Gerlach, 1964. Light micrographs of the male. a) Detail of the buccal cavity; b) Amphideal fovea and cuticle ornamentation in the cephalic region; c) Lateral differentiation of the cuticular ornamentation in the middle of the body; d) Starting point of the pore rows; e) Cuticular ornamentation in the spicular region; f) Precloacal supplements; g) Tail region. Scale bars: a, b, d = 5 µm; c, e–g = 10 µm.
FIGURE 1 in A re-description of Longicyatholaimus maldivarum Gerlach, 1964 (Nematoda, Cyatholamidae) with an emended identification key of the genus
FIGURE 1. Map of the central part of the Maldivian archipelago including the sites in which Longicyatholaimus maldivarum Gerlach, 1964 was collected in the 2005 and 2007.
Supplementary material 4 from: Kirichenko N, Triberti P, Mutanen M, Magnoux E, Landry J, Lopez-Vaamonde C (2016) Systematics and biology of some species of Micrurapteryx Spuler (Lepidoptera, Gracillariidae) from the Holarctic Region, with re-description of M. caraganella (Hering) from Siberia. ZooKeys 579: 99-156. https://doi.org/10.3897/zookeys.579.7166
Figs S25–S36 : Explanation note: Micrurapteryx occulta and Micrurapteryx caraganella, male genitalia. The plate shows intraspecific variation of male genitalia in Micrurapteryx occulta.
Supplementary material 3 from: Kirichenko N, Triberti P, Mutanen M, Magnoux E, Landry J, Lopez-Vaamonde C (2016) Systematics and biology of some species of Micrurapteryx Spuler (Lepidoptera, Gracillariidae) from the Holarctic Region, with re-description of M. caraganella (Hering) from Siberia. ZooKeys 579: 99-156. https://doi.org/10.3897/zookeys.579.7166
Figs S13–S24 : Explanation note: Micrurapteryx occulta, male genitalia. The plate shows intraspecific variation of male genitalia in Micrurapteryx occulta.
Supplementary material 6 from: Kirichenko N, Triberti P, Mutanen M, Magnoux E, Landry J, Lopez-Vaamonde C (2016) Systematics and biology of some species of Micrurapteryx Spuler (Lepidoptera, Gracillariidae) from the Holarctic Region, with re-description of M. caraganella (Hering) from Siberia. ZooKeys 579: 99-156. https://doi.org/10.3897/zookeys.579.7166
Figs S45–S52 : Explanation note: Micrurapteryx occulta, female genitalia. The plate shows intraspecific variation of female genitalia in Micrurapteryx occulta.
Supplementary material 5 from: Kirichenko N, Triberti P, Mutanen M, Magnoux E, Landry J, Lopez-Vaamonde C (2016) Systematics and biology of some species of Micrurapteryx Spuler (Lepidoptera, Gracillariidae) from the Holarctic Region, with re-description of M. caraganella (Hering) from Siberia. ZooKeys 579: 99-156. https://doi.org/10.3897/zookeys.579.7166
Figs S37–S44 : Explanation note: Micrurapteryx occulta, female genitalia. The plate shows intraspecific variation of female genitalia in Micrurapteryx occulta.
Supplementary material 2 from: Kirichenko N, Triberti P, Mutanen M, Magnoux E, Landry J, Lopez-Vaamonde C (2016) Systematics and biology of some species of Micrurapteryx Spuler (Lepidoptera, Gracillariidae) from the Holarctic Region, with re-description of M. caraganella (Hering) from Siberia. ZooKeys 579: 99-156. https://doi.org/10.3897/zookeys.579.7166
Figs S01–S12 : Explanation note: Micrurapteryx occulta, male genitalia. The plate shows intraspecific variation of male genitalia in Micrurapteryx occulta.
Supplementary material 1 from: Ruch J, Riehl T, Michalik P (2014) Re-description of Xysticus bimaculatus L. Koch, 1867 (Araneae, Thomisidae) and characterization of its subsocial lifestyle. ZooKeys 427: 1-19. https://doi.org/10.3897/zookeys.427.7450
List of species examined: Explanation note: The table shows a list of all species examined as well as the location of the material. Sex (male, female or juvenile) and whether the material was type material (yes/no) is shown as well.
FIGURE 3. Alburnus doriae, FSJF 2207 in Re-description of Alburnus doriae, with comments on the taxonomic status of A. amirkabiri, A. mossulensis, A. sellal and Petroleuciscus esfahani (Teleostei: Cyprinidae)
FIGURE 3. Alburnus doriae, FSJF 2207, from the top, male, about 90 mm SL, female, about 110 mm SL; Iran: stream Morghab.
FIGURE 4. Alburnus doriae, a in Re-description of Alburnus doriae, with comments on the taxonomic status of A. amirkabiri, A. mossulensis, A. sellal and Petroleuciscus esfahani (Teleostei: Cyprinidae)
FIGURE 4. Alburnus doriae, a, ZM-CBSU L948, 69 mm SL, Iran: Zayandeh RiVer at Azadegan; b, ZM-CBSU L930, 85 mm SL, Iran: Zayandeh RiVer at Azadegan, c, ZM-CBSU L878, 59 mm SL, Iran: spring Nazi at Khomein; d, ZMFUM Mk02, 104 mm SL, Iran: Ghareh-Chay RiVer.
FIGURE 1 in Re-description of Alburnus doriae, with comments on the taxonomic status of A. amirkabiri, A. mossulensis, A. sellal and Petroleuciscus esfahani (Teleostei: Cyprinidae)
FIGURE 1. Bayesian tree inferred from COI sequences. Numbers left of the slash, indicate the posterior probabilities of the Bayesian analysis and numbers right of the slash are the bootstrap support for the Maximum Likelihood tree, using RaxML.
FIGURE 2. Alburnus doriae, MZUT N. 720 in Re-description of Alburnus doriae, with comments on the taxonomic status of A. amirkabiri, A. mossulensis, A. sellal and Petroleuciscus esfahani (Teleostei: Cyprinidae)
FIGURE 2. Alburnus doriae, MZUT N. 720, lectotype, 122 mm SL, Iran: dintorni di Schiraz. Photo: Franco Andreone (MZUT).
FIGURES 4–9 in A new species of Paraleptophlebia Lestage, 1917 (Ephemeroptera: Leptophlebiidae) and a re-description of adults for Paraleptophlebia westoni Imanishi, 1937 with the first description of the larva, from the Russian Far East
FIGURES 4–9. Paraleptophlebia kunashirica sp. nov., genitalia of male imago (4–8) and subanal plate of female (9). 4, ventral view, 5, genitalia and end of abdomen, lateral view; 6, penis, ventral view; 7, penis, dorsal view; 8, penis, lateral view; 9, subanal plate female, ventral view.
FIGURES 1–3 in A new species of Paraleptophlebia Lestage, 1917 (Ephemeroptera: Leptophlebiidae) and a re-description of adults for Paraleptophlebia westoni Imanishi, 1937 with the first description of the larva, from the Russian Far East
FIGURES 1–3. Paraleptophlebia kunashirica sp. nov., male imago. 1, head and thorax, dorsal view; 2, general dorsal view; 3, lateral view.
ScienceDex guides
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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.