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1,315 results for “aberration”
FIGURE 1 in A new aberrant Doryctinae genus (Hymenoptera: Braconidae) from French Guiana
FIGURE 1. Cerritulus forticrura gen. et sp. nov. (holotype, female). A, Habitus, lateral view. B, Head and mesosoma, dorsal view. C, Fore and hind wings. D, Head and mesosoma, lateral view. E, Head, front view. F, Mesosoma, dorsal view; G, Fore leg, anterior view. H, Legs, lateral view.
FIGURE 3. Termitospathius sumatranus Belokobylskij, 2002 in A new aberrant Doryctinae genus (Hymenoptera: Braconidae) from French Guiana
FIGURE 3. Termitospathius sumatranus Belokobylskij, 2002 (holotype, female). A, Habitus, lateral view. B, Apical segments of antenna. C, Basal segments of antenna. D, Head, dorsal view. E, Head, front view. F, Fore femur and tibia. G, Hind tibia. H, Hind femur. I, Mesosoma, lateral view. J, Mesosoma, dorsal view. K, Wings. L, First metasomal tergite, dorsal view. M, Metasoma, dorsal view. N, Metasoma, lateral view. O, Apical part of ovipositor. P, Apical part of ovipositor sheath, lateral view.
STEM images used for a paper Aberration-Corrected STEM to Determine the Surface Coverage and Distribution of Immobilized Molecular Complexes
<p>Theses are STEM images used to calculate the surface coverage and/or Ripley's K function presented in the paper "Statistical Analysis of HAADF-STEM Images to Determine the Surface Coverage and Distribution of Immobilized Molecular Complexes"</p>
Naturally occurring horse model of miscarriage reveals temporal relationship between chromosomal aberration type and point of lethality
<p>Released .idata files, sample metadata and array manifest file for the paper "<span>Naturally occurring horse model of miscarriage reveals temporal relationship between chromosomal aberration type and point of lethality"</span></p>
FIGURE 1 A–C. Asaccotrema vietnamiense n in Asaccotrema vietnamiense n. gen.; n. sp. (Trematoda: Monorchioidea), a new aberrant representative of lissorchiid trematodes from the sidestripe rasbora, Rasbora paviana Tirant (Actinopterygii: Cyprinidae), Vietnam
FIGURE 1 A–C. Asaccotrema vietnamiense n. sp. A. Holotype, ventral view. B. Terminal genitalia, sinistro-lateral view. C. Ovarian complex, dorso-lateral view. Abbreviations: cg, cluster of prostate gland-cells; ej, ejaculatory duct; ga, common genital atrium; lc, Laurer's, canal; mod, middle portion of oviduct; mt, metraterm; o, ovary; ot, ootype with Mehlis' gland; ov, ovicapt; pp, pars prostatica; pod, proximal portion of oviduct; s, sphincter; sr, seminal receptacle; sv, seminal vesicle; tm, thin-walled membrane; vd, common vitelline reservoir and common vitelline duct. Scale bars: A, 0.4 mm; B, C, 0.05 mm.
FIGURE 2 in Asaccotrema vietnamiense n. gen.; n. sp. (Trematoda: Monorchioidea), a new aberrant representative of lissorchiid trematodes from the sidestripe rasbora, Rasbora paviana Tirant (Actinopterygii: Cyprinidae), Vietnam
FIGURE 2. Phylogram showing the phylogenetic relationships of Asaccotrema vietnamiense n. sp. based on the analysis of the 28S rRNA gene partial sequences dataset. Node labels display ML/BI support.
FIGURE 1 A–C. Asaccotrema vietnamiense n in Asaccotrema vietnamiense n. gen.; n. sp. (Trematoda: Monorchioidea), a new aberrant representative of lissorchiid trematodes from the sidestripe rasbora, Rasbora paviana Tirant (Actinopterygii: Cyprinidae), Vietnam
FIGURE 1 A–C. Asaccotrema vietnamiense n. sp. A. Holotype, ventral view. B. Terminal genitalia, sinistro-lateral view. C. Ovarian complex, dorso-lateral view. Abbreviations: cg, cluster of prostate gland-cells; ej, ejaculatory duct; ga, common genital atrium; lc, Laurer's, canal; mod, middle portion of oviduct; mt, metraterm; o, ovary; ot, ootype with Mehlis' gland; ov, ovicapt; pp, pars prostatica; pod, proximal portion of oviduct; s, sphincter; sr, seminal receptacle; sv, seminal vesicle; tm, thin-walled membrane; vd, common vitelline reservoir and common vitelline duct. Scale bars: A, 0.4 mm; B, C, 0.05 mm.
FIGURE 2 in Asaccotrema vietnamiense n. gen.; n. sp. (Trematoda: Monorchioidea), a new aberrant representative of lissorchiid trematodes from the sidestripe rasbora, Rasbora paviana Tirant (Actinopterygii: Cyprinidae), Vietnam
FIGURE 2. Phylogram showing the phylogenetic relationships of Asaccotrema vietnamiense n. sp. based on the analysis of the 28S rRNA gene partial sequences dataset. Node labels display ML/BI support.
FIGURE 4 in On some morphologically aberrant, auto-epizootic forms of Plumularia setacea (Linnaeus, 1758) (Cnidaria: Hydrozoa) from southern Chile
FIGURE 4. Results of phylogenetic analyses based on the molecular data set comprising both the epizootic and substrate specimens, and additional material for comparison. lnL= -1698.6. MP bootstrap (MP), ML bootstrap (ML), Bayesian posterior probability (PP) and Bremer values (Br) are indicated above branches. The scale bar indicates the number of nucleotide substitutions per position in the sequence.
FIGURE 1. A in On some morphologically aberrant, auto-epizootic forms of Plumularia setacea (Linnaeus, 1758) (Cnidaria: Hydrozoa) from southern Chile
FIGURE 1. A: General view of a normal colony of Plumularia setacea (cladia partly removed) overgrown by several cormoids of the epizootic form. B: Fragment of cladium from epizoic colony showing a hydranth protruding from its hydrotheca. Inserts: loss of one lateral nematotheca (left) and conservation of both lateral nematothecae (right). Scale bar A – 1 mm (A), 200 µm (B).
FIGURE 3 in On some morphologically aberrant, auto-epizootic forms of Plumularia setacea (Linnaeus, 1758) (Cnidaria: Hydrozoa) from southern Chile
FIGURE 3. Comparison of stems (A) and cladia (B) of the epizootic (left) and normal (right) forms of Plumularia setacea. Scale bar 300 µm (A), 200 µm (B).
FIGURE 2. Plumularia setacea, epizootic form. A in On some morphologically aberrant, auto-epizootic forms of Plumularia setacea (Linnaeus, 1758) (Cnidaria: Hydrozoa) from southern Chile
FIGURE 2. Plumularia setacea, epizootic form. A: Whole cormoid. B: Colony with aberrant ramifications of stem and cladia. C: Cladium in lateral view. D: Cladial segment in lateral view. E: Cladial segment in frontal view. F: Female gonotheca. G: Male gonotheca. H: Lateral nematotheca. I: Nematotheca from stem internode. J: Axillary nematotheca. Scale bar 0.5 mm (A, B), 100 µm (C, D, E, F, G), 20 µm (H, I, J).
Figure 10 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 10. (a) Culex (Neoculex) territans, Qom Province, Iran (100×). (b) Culex (Culex) laticinctus, Chaharmahal and Bakhtiari Province, Iran (100×).
Figure 3 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 3. Anopheles (Anopheles) maculipennis, (a) Kurdistan Province, Iran, 19 July 2006 (200×). (b) Ardebil Province, Iran, 30 July 2005 (100×).
Figure 2 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 2. Anopheles (Anopheles) maculipennis, Kurdistan Province, Iran, (a) 9 September 2005 (200×). (b) 19 July 2006 (200×).
Figure 8 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 8. (a) Culex (Culex) sinaiticus, Pipiens Group, Hormozgan Province, Iran, seta 1-C is thicker than the branches of 5-C but does not appear to be thicker than the branches of 6-C (100×). (b) Culex (Culex) tritaeniorhynchus, Sitiens Group, Sistan and Baluchistan Province, Iran (100×).
Figure 1 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 1. (a) Anopheles (Cellia) dthali, Sistan and Baluchistan Province, Iran, 18 June 2006 (100×). (b) Anopheles (Anopheles) maculipennis, Ardebil Province, Iran, 3 July 2006 (200×).
Figure 6 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 6. (a) Culex (Culex) pipiens, Pipiens Group, Isfahan Province, Iran (200×). (b) Culex (Culex) mimeticus, Sitiens Group, Qom Province, Iran (200×).
Figure 7 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 7. (a) Culex (Oculeomyia) bitaeniorhynchus, Hormozgan Province, Iran (200×). (b) Culex (Culex) sitiens, Sitiens Group, Hormozgan Province, Iran (100×).
Figure 4 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 4. (a) Anopheles (Anopheles) marteri, Isfahan Province, Iran, 12 July 2007 (100×). (b) Culex (Maillotia) hortensis, North Khorasan Province, Iran, 11 July 2009 (200×).
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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.