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502 results for “1832”
Figures 4A-B in A new species of Loxosceles Heineken & Lowe, 1832 (Araneae: Sicariidae) from Chile
Figures 4A-B. Live specimens of Loxosceles vicentei sp. nov. found under rocks in type locality (photography: Vicente Villablanca). A. Female paratype, dorsal view. B. Male holotype, dorsal view. / EspecÍmenes vivos de Loxosceles vicentei sp. nov., hallados bajo rocas en la localidad tipo (fotografÍa de Vicente Villablanca). A. Hembra paratipo, vista dorsal. B. Macho holotipo, vista dorsal.
Figures 1A-B in A new species of Loxosceles Heineken & Lowe, 1832 (Araneae: Sicariidae) from Chile
Figures 1A-B. Loxosceles vicentei sp. nov. Carapace of female and male. A. Female paratype. B. Male holotype. Scale bar: 1 mm. / Loxosceles vicentei sp. nov. Cefalotórax de hembra y macho. A. Hembra paratipo. B. Macho holotipo. Barra de escala: 1 mm.
Figure 3 in A new species of Loxosceles Heineken & Lowe, 1832 (Araneae: Sicariidae) from Chile
Figure 3. Habitat of Loxosceles vicentei sp. nov. in the type locality. / Hábitat de Loxosceles vicentei sp. nov. en la localidad tipo.
Figure 5 in A new species of Loxosceles Heineken & Lowe, 1832 (Araneae: Sicariidae) from Chile
Figure 5. Geographic distribution records of Loxosceles vicentei sp. nov. in Chile. / Registros de distribución geográfica de Loxosceles vicentei sp. nov. en Chile.
Fig. 3 in New species of Gyrodactylus von Nordmann, 1832 (Monogenoidea: Gyrodactylidae) from Gymnodiptychus dybowskii (Kessler, 1874) (Schizothoracinae) in the Kunes River (Yili River basin), China
Fig. 3. Morphological comparison of (A) Gyrodactylus gymnodiptychi, (B) Gyrodactylus aksuensis, (C) Gyrodactylus tokobaevi, and (D) Gyrodactylus montanus. A - original drawing; B and C - from Ergens and Karabekova (1980); D - from Gusev (1985).
Fig. 2 in New species of Gyrodactylus von Nordmann, 1832 (Monogenoidea: Gyrodactylidae) from Gymnodiptychus dybowskii (Kessler, 1874) (Schizothoracinae) in the Kunes River (Yili River basin), China
Fig. 2. Light micrographs of the haptoral structures of Gyrodactylus gymnodiptychi from the gills of Gymnodiptychus dybowskii. (A) Male copulatory organ (MCO), (B) Hamulus (HA), (C & D) Dorsal bar (DB), (E) Ventral bar (VB), and (F) Marginal hook (MH).
Fig. 1 in New species of Gyrodactylus von Nordmann, 1832 (Monogenoidea: Gyrodactylidae) from Gymnodiptychus dybowskii (Kessler, 1874) (Schizothoracinae) in the Kunes River (Yili River basin), China
Fig. 1. Holotype of Gyrodactylus gymnodiptychi from the gills of Gymnodiptychus dybowskii. (A) Whole specimen (composite, ventral view), (B) Male copulatory organ (MCO), (C) Hamuli (HA), (D) Hamulus (HM), (E & F) Dorsal bar (DB), (G) Ventral bar (VB), and (H) Marginal hook (MH).
Fig. 4 in New species of Gyrodactylus von Nordmann, 1832 (Monogenoidea: Gyrodactylidae) from Gymnodiptychus dybowskii (Kessler, 1874) (Schizothoracinae) in the Kunes River (Yili River basin), China
Fig. 4. Phylogenetic tree generated by the Bayesian Inference (BI) and Maximum Likelihood (ML) method based on ITS1-5.8S-ITS2 rDNA sequences of selected Gyrodactylus. Diplogyrodactylus martini and Gyrodactyloides bychowskii were used as the outgroup. The numbers at nodes indicate posterior probabilities and bootstrap branch support (%). Taxonomic identity were shown to the right: Family and Order of host fish, subgenus of Gyrodactylus. * Gyrodactylus gymnodiptychi in the phylogenetic tree.
Fig. 1 in An alien intermediate snail host in Malawi - Orientogalba viridis (Quoy and Gaimard, 1832) - A new concern for schistosomiasis transmission in Africa?
Fig. 1. Site photo of the location where O. viridis was first encountered. Numerous snails were found on mud within the rice paddy [large inset] and, of particular note, a single schistosome cercaria of S. haematobium was observed upon microscopy and photographed [small inset] and confirmed by DNA barcoding. This rice paddy was immediately adjacent to a small oxbow lake, where children were seen swimming and numerous Bulinus were found but these snails were not observed to shed schistosome cercariae at the time of first survey in May 2023.
Fig. 2. A in An alien intermediate snail host in Malawi - Orientogalba viridis (Quoy and Gaimard, 1832) - A new concern for schistosomiasis transmission in Africa?
Fig. 2. A) Shell, scale bar: 3 mm; B) mantle pigmentation, scale bar: 3 mm; C) bursa copulatrix, scale bar: 2 mm; D) penis, ratio of penis sheath (ps)/preputium (pp) ~1, overall length 0.5 cm; E) radula, scale bar: 10 μm; F) experimental infection with S. haematobium with miracidia highlighted within red elipses with unaltered swimming around the snail's body. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 2 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 2. Line drawings of the haptoral structures of Gyrodactylus diptychi n. sp. (A & B) Hamulus-bar complex, (C) Hamuli (HA), (D) Male copulatory organ (MCO),(E) Dorsal bar (DB), (F) Ventral bar (VB), (G) Marginal hook (MH), (H) Marginal hook sickle(MHS).
Fig. 1 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 1. Light micrographs of Gyrodactylus diptychi n. sp. (A) Hamulus-bar complex, (B) Hamuli (HA), (C) Male copulatory organ (MCO), (D) Dorsal bar (DB), (E) Ventral bar (VB), (F) Marginal hook (MH), (G) Marginal hook sickle(MHS).
Fig. 5 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 5. The phylogenetic tree constructed by the BI and ML methods based on the ITS1-5.8S-ITS2 rDNA sequences from selected Gyrodactylus species. Numbers along branches represent Bayesian posterior probability/ML bootstrap support.
Fig. 3 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 3. Marginal hook sickles of Gyrodactylus diptychi n. sp.; G. hemivicinus from Gusev (1985); G. kafirniganensis from Gusev (1985); G. marjami from Gusev (1985); G. montanus from Gusev (1985); G. narzikulovi from Gusev (1985); G. seravshani from Gusev (1985); G. vicinus from Gusev (1985); G. aksuensis from Gusev (1985); G. tokobaevi from Gusev (1985); G. dzhalilovi from Gusev (1985); G. editus from Gusev (1985); G. gymnodiptychi from Zhang et al., 2023; Scale bars: 20 μm.
Fig. 4 in Identification of a new species of Gyrodactylus von Nordmann, 1832 (Monogenoidea Gyrodactylidae) isolated from Diptychus maculatus in Yarkand River, Xinjiang, China
Fig. 4. Morphological comparison of (A) Gyrodactylus diptychi n. sp., (B) Gyrodactylus hemivicinus, (C) Gyrodactylus kafirniganensis, and (D) Gyrodactylus montanus.
Fig. 9 in Revisão do Gênero Agonosoma Laporte, 1832 (Hemiptera, Scutelleridae)
Fig. 9. Ocorrência deAgonosonzaflavolineatuln, A. triliııeatııııı, A. bicolor (para os números referentes a cada espécie vide tabela II).
Fig. 7 in Revisão do Gênero Agonosoma Laporte, 1832 (Hemiptera, Scutelleridae)
Fig. 7. Agonosoma trilírzeatunz: A, antena; B, pema anterior; C e D, aspectos ventrais dos abdomes de macho e de fêmea, respectivamente.
Fig. 1 in Revisão do Gênero Agonosoma Laporte, 1832 (Hemiptera, Scutelleridae)
Fig. 1. Fenótipos encontrados para as espécies do gêneroAgorzosoma Lap.: A. flavolineatzun (A-I); A. trilienanun (J - K); A. bicolor (L).
Linked collectors and determiners for: Scutellista caerulea (Fonscolombe, 1832) (Hymenoptera: Pteromalidae), new to New Zealand for the second time!.
Natural history specimen data linked to collectors and determiners held within, "Scutellista caerulea (Fonscolombe, 1832) (Hymenoptera: Pteromalidae), new to New Zealand for the second time!". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/f20127d1-663b-4a06-9c68-dc11c5af307e">https://bionomia.net/dataset/f20127d1-663b-4a06-9c68-dc11c5af307e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/f20127d1-663b-4a06-9c68-dc11c5af307e">https://gbif.org/dataset/f20127d1-663b-4a06-9c68-dc11c5af307e</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Five new species of Cymatodera Gray, 1832 (Coleoptera: Cleridae: Tillinae) from Mexico and Central America.
Natural history specimen data linked to collectors and determiners held within, "Five new species of Cymatodera Gray, 1832 (Coleoptera: Cleridae: Tillinae) from Mexico and Central America". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b0dafbad-9733-48e4-826f-b8e601823c79">https://bionomia.net/dataset/b0dafbad-9733-48e4-826f-b8e601823c79</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b0dafbad-9733-48e4-826f-b8e601823c79">https://gbif.org/dataset/b0dafbad-9733-48e4-826f-b8e601823c79</a>. Formatted as a Frictionless Data package.
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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
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.