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68 results for “Chelicerata”
Fig. 8 in Integrative description of Mesobiotus anastasiae sp. nov. (Eutardigrada, Macrobiotoidea) and first record of Lobohalacarus (Chelicerata, Trombidiformes) from the Republic of South Africa
Fig. 8. Lobohalacarus cf. weberi, ♀ (SPbU 256(20)). A. Total view, black arrows indicate spines on genua I, PhC. B. Ventral shield, white arrowheads indicate bases of perigenital setae, PhC. C. Frontal spine, DIC. D. Genital opening, white arrowheads indicate genital acetabula, DIC. Scale bars: A = 100 µm; B = 50 µm; C = 10 µm; D = 5 µm.
Fig. 6 in Integrative description of Mesobiotus anastasiae sp. nov. (Eutardigrada, Macrobiotoidea) and first record of Lobohalacarus (Chelicerata, Trombidiformes) from the Republic of South Africa
Fig. 6. Mesobiotus anastasiae sp. nov., paratype (SPbU_Tar16). Eggs. A–C. Total view of the egg, SEM. D–F. Details of the egg surface, white arrowheads indicate pores above the collar, white arrows indicate pores below the collar, SEM. Scale bars: A–C = 20 µm; D–F = 5 µm.
Fig. 3 in Integrative description of Mesobiotus anastasiae sp. nov. (Eutardigrada, Macrobiotoidea) and first record of Lobohalacarus (Chelicerata, Trombidiformes) from the Republic of South Africa
Fig. 3. Mesobiotus anastasiae sp. nov., bucco-pharyngeal apparatus. A, E–O. Paratype, ♀ (SPbU 256(9)). B–D. Holotype, ♀ (SPbU 256(8)). A. Total dorso-ventral view of the bucco-pharyngeal apparatus, DIC. B. Ventral row of macroplacoids, focused on their outer surface, DIC. C. Ventral row of macroplacoids, focal plane shifted deeper into the parynx, black arrowheads indicate appendices of the third macroplacoid bent inward, DIC. D. Lateral rows of macroplacoids, black arrowheads indicate appendices of the third macroplacoid bent inward, DIC. E. Ventral row of macroplacoids, focused on their outer surface; note the absence of the preterminal constriction of the third macroplacoid, DIC. F–O. Oral cavity armature, dorsal (F–H, K–M) and ventral view (I–J, N–O), black arrowheads indicate teeth of the first band, F–J = PhC, K–O = DIC. Scale bars: A = 10 µm; B–O = 5 µm.
Fig. 2 in Integrative description of Mesobiotus anastasiae sp. nov. (Eutardigrada, Macrobiotoidea) and first record of Lobohalacarus (Chelicerata, Trombidiformes) from the Republic of South Africa
Fig. 2. Mesobiotus anastasiae sp. nov., cuticular sculpture. A. Paratype (SPbU 256(18)). Sculpture of the dorsal body surface, PhC. B–D. Paratype (SPbU_Tar16). B. High magnification of the sculpture of the dorsal body surface, SEM. C. Dorso-lateral zone of concentrated cuticular dots, SEM. D. Dot-like sculpture on the dorsal side of hind legs, SEM. Scale bars A, C, D = 5 µm; B = 2 µm.
Fig. 1 in Integrative description of Mesobiotus anastasiae sp. nov. (Eutardigrada, Macrobiotoidea) and first record of Lobohalacarus (Chelicerata, Trombidiformes) from the Republic of South Africa
Fig. 1. Mesobiotus anastasiae sp. nov., total view. A. Holotype, ♀ (SPbU 256(8)). Dorso-ventral view, PhC. B. Paratype (SPbU_Tar16). Lateral view in SEM. Scale bars = 50 µm.
Fig. 5 in Integrative description of Mesobiotus anastasiae sp. nov. (Eutardigrada, Macrobiotoidea) and first record of Lobohalacarus (Chelicerata, Trombidiformes) from the Republic of South Africa
Fig. 5. Mesobiotus anastasiae sp. nov., eggs. A–F. Paratype (SPbU 256(15)). G–I. Paratype (SPbU 256(4)). A. Total view of the egg surface, PhC. B. Total view of the optical section of the embryonated egg, PhC. C–D. Details of the egg surface, DIC, PhC. E. Optical section of the egg process, black arrowhead indicates pore, DIC. F–I. Optical sections of different egg processes, black arrowheads indicate collar, PhC. Scale bars: A–B = 20 µm; C–D = 10 µm; E–I = 5 µm.
Figure 8 in The first record of Upper Permian and Lower Triassic scorpions from Russia (Chelicerata: Scorpiones)
Figure 8: Fossil PIN 4812/46, Nedubrovo, leg basitarsus, lateral view. Fossil (top) and hypothesized interpretation of structures (bottom). Red arrowheads indicate setal areolae.
Figure 2 in The first record of Upper Permian and Lower Triassic scorpions from Russia (Chelicerata: Scorpiones)
Figure 2: PIN 3840/986, Isady, left pedipalp patella, internal view (bottom edge is dorsal surface). Fossil (top) and hypothesized interpretation of structures (bottom). Red lines outline the Dorsal Patellar Spur (DPS c) and Ventral Patellar Spur (VPS ) carinae, and red arrowheads indicate setal areolae. DPS and VPS are also indicated accompanied by setal areolae.
Figure 1 in The first record of Upper Permian and Lower Triassic scorpions from Russia (Chelicerata: Scorpiones)
Figure 1: Geographic position of the localities yielding the scorpion remains. Isady (60°37'N, 45°37'E; photo by D. Kopylov) and Nedubrovo (60°03′N, 45°44′E; photo by E. Karasev).
Figure 3 in The first record of Upper Permian and Lower Triassic scorpions from Russia (Chelicerata: Scorpiones)
Figure 3: PIN 3840/2083, Isady, leg tarsus, lateral view. Fossil (top) and hypothesized interpretation of structures (bottom). Red arrowheads indicate setal areolae.
Figure 6 in The first record of Upper Permian and Lower Triassic scorpions from Russia (Chelicerata: Scorpiones)
Figure 6: PIN 3840/2083, Isady, leg tarsus, lateral view, counterpart. Fossil (top) and closeup of ungues (bottom).
Fig. 3 in Distribución de las arañas del género Argiope Audouin, 1826 en la provincia de Málaga, España (Chelicerata, Arachnida, Araneae)
Fig. 3.- Argiope lobata (Pallas, 1772). a.- Distribución en la provincia de Málaga. b.- Distribución mensual. c.- Distribución altitudinal. d.- Pisos bioclimáticos. e.- Ombroclimas.
Fig. 2 in Distribución de las arañas del género Argiope Audouin, 1826 en la provincia de Málaga, España (Chelicerata, Arachnida, Araneae)
Fig. 2.- Argiope bruennichi (Scopoli, 1772). a.- Distribución en la provincia de Málaga. b.- Distribución mensual. c.- Distribución altitudinal. d.- Pisos bioclimáticos. e.- Ombroclimas.
Linked collectors and determiners for: Naturalis Biodiversity Center (NL) - Chelicerata and Myriapoda.
Natural history specimen data linked to collectors and determiners held within, "Naturalis Biodiversity Center (NL) - Chelicerata and Myriapoda". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b4aad9c3-518b-4550-82de-c70a7ead1b64">https://bionomia.net/dataset/b4aad9c3-518b-4550-82de-c70a7ead1b64</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b4aad9c3-518b-4550-82de-c70a7ead1b64">https://gbif.org/dataset/b4aad9c3-518b-4550-82de-c70a7ead1b64</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Chelicerata collection (TSZCh) The Arctic University Museum of Norway.
Natural history specimen data linked to collectors and determiners held within, "Chelicerata collection (TSZCh) The Arctic University Museum of Norway". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/060eecc9-75b0-4952-bb48-e400d3ad7771">https://bionomia.net/dataset/060eecc9-75b0-4952-bb48-e400d3ad7771</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/060eecc9-75b0-4952-bb48-e400d3ad7771">https://gbif.org/dataset/060eecc9-75b0-4952-bb48-e400d3ad7771</a>. Formatted as a Frictionless Data package.
FIG. 3 in Checklist of the terrestrial and freshwater arthropods of French Polynesia (Chelicerata; Myriapoda; Crustacea; Hexapoda)
FIG. 3. — Number of described species from the French Polynesia fauna by five year period from Linnaeus to 2016.
Figure 7 in Population structure of Tachypleus tridentatus (Chelicerata: Merostomata) at a nursery beach in Puerto Princesa City, Palawan, Philippines
Figure 7. Number of male, female and individuals for which sex was not identified per postembryonic stage.
Figure 1 in Population structure of Tachypleus tridentatus (Chelicerata: Merostomata) at a nursery beach in Puerto Princesa City, Palawan, Philippines
Figure 1. Study area. (A) Map of the Philippines; (B) map of Puerto Bay wherein the study site is indicated (X); (C) nursery habitat of the study site.
FIG. 3. — Archaemecys arcantiensis n. gen., n in First fossil Mecysmaucheniidae (Arachnida, Chelicerata, Araneae), from Lower Cretaceous (Uppermost Albian) amber of Charente-Maritime, France
FIG. 3. — Archaemecys arcantiensis n. gen., n. sp., anterior view of the chelicerae and pedipalps. Notice the peg teeth on the chelicerae and the heightened profile of the carapace. Scale bar: 0.1 mm.
FIG. 1. — Archaemecys arcantiensis n. gen., n in First fossil Mecysmaucheniidae (Arachnida, Chelicerata, Araneae), from Lower Cretaceous (Uppermost Albian) amber of Charente-Maritime, France
FIG. 1. — Archaemecys arcantiensis n. gen., n. sp. (MNHN ARC11R): A, dorsal view; B, ventral view; C, opisthosoma, notice the pronounced wrinkling of the cuticle and the sclerotized rings around the tracheal spiracle and the spinnerets; D, lateral view of the spinnerets, anterior to the left; the anterior two spinnerets (left) are relatively large, with two segments, while the posterior two spinnerets (right) are smaller; E, close-up of metatarsus and tarsus third leg segment showing the unsclerotized portion at the base of the tarsus (arrowed). Scale bars: A, B, D, E, 0.5 mm; C, 0.2 mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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