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445 results for “Karyotype”
Fig. 3. Karyotypes after FISH with 5S in Contributions to the systematic of Pimelodidae (Osteichthyes, Siluriformes): basic and molecular cytogenetics on seven species of Pimelodus from three Brazilian hydrographic systems
Fig. 3. Karyotypes after FISH with 5S rDNA probes (red) and 18S rDNA probe (green). a. Pimelodus absconditus; b. Pimelodus britskii; c. Pimelodus maculatus; d. Pimelodus microstoma; e. Pimelodus mysteriosus; f. Pimelodus ortmanni; g. Pimelodus paranaensis. Scales bar = 10 μm.
Fig. 2. Karyotypes arranged from C-banded chromosomes. a in Contributions to the systematic of Pimelodidae (Osteichthyes, Siluriformes): basic and molecular cytogenetics on seven species of Pimelodus from three Brazilian hydrographic systems
Fig. 2. Karyotypes arranged from C-banded chromosomes. a. Pimelodus absconditus; b. Pimelodus britskii; c. Pimelodus maculatus; d. Pimelodus microstoma; e. Pimelodus mysteriosus; f. Pimelodus ortmanni; g. Pimelodus paranaensis. B chromosomes in the boxes. Scales bar = 10 μm.
Fig. 2 in Karyotype differentiation and cytotaxonomic considerations in species of Serrasalmidae (Characiformes) from the Amazon basin
Fig. 2. Partial karyotypes of Serrasalmidae species showing Ag-NORs (left side) and 18S rDNA sites (right side): a-b) Serrasalmus elongatus; c-d) Serrasalmus maculatus; e-f) Serrasalmus cf. rhombeus; g-h) Serrasalmus rhombeus; i-j) Pygocentrus nattereri; k-l) Colossoma macropomum. Numbers indicate the corresponding chromosome pairs in the karyotypes of the species.
Fig. 2 in Karyotype characterization of Mugil incilis Hancock, 1830 (Mugiliformes: Mugilidae), including a description of an unusual co-localization of major and minor ribosomal genes in the family
Fig. 2. Metaphase plates of Mugil incilis after (a) C-banding and (b) AgNO -staining. Arrows indicate chromosome pair number 1.
Fig. 4 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 4. Idiogramm of the relative chromosome length (L, %) in males and females of V. contectus. X-axis — number of chromosome pair. Рис. 4. Идиограмма относительной длины хромосом (L, %) у самок и самцов V. contectus. По оси абсцисс — номер хромосомной пары.
Fig. 3 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 3. Idiogramm of the relative chromosome length (L, %) in males and females of V. viviparus. X-axis — number of chromosome pair. Рис. 3. Идиограмма относительной длины хромосом (L, %) у самок и самцов V. viviparus. По оси абсцисс — номер хромосомной пары.
Fig. 2 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 2. Mitotic methaphases (1) and caryotypes (2) of female (above) and mitotic methaphases (3) and caryotypes (4) of male (below) of V. contectus. Рис. 2. Митотическая метафаза (1) и кариотип (2) самки; митотическая метафаза (3) и кариотип (4) самца у V. contectus.
Fig. 1 in On Sexual Dimorphism Of Karyotypes Of Viviparus Viviparus And V. Contectus (Gastropoda, Viviparidae)
Fig. 1. Mitotic methaphases (1) and caryotypes (2) of female (above) and mitotic methaphases (3) and caryotypes (4) of male (below) of V. viviparus. Рис. 1. Митотическая метафаза (1) и кариотип (2) самки (вверху); митотическая метафаза (3) и кариотип (4) самца (внизу) у V. viviparus.
Fig. 1 in Modified Method Of Metaphase Plates Obtaining For Polyploid Fish Genera Carassius And Cobitis Karyotyping (Actinopterygii, Cypriniformes)
Fig. 1. Mitotiс mеtaphases and karyograms of studied fish species: А — C. taenia; В — C. auratus; С — C. carassius. A b b r e v i a t i o n s i n d i c a t e: m — metacentric; sm — submetacentric; sta — subtelo- and acrocentric chromosomes.
Fig. 2 in Comparative Karyotype Analysis Of Slugs Of The Genus Arion (Gastropoda, Pulmonata, Arionidae)
Fig. 2. Chromosomes of Arion spp. in the diakinesis (meiosis) (n): 1 — A. distinctus; 2 — A. fasciatus; 3 — A. fuscus.
Fig. 1 in Comparative Karyotype Analysis Of Slugs Of The Genus Arion (Gastropoda, Pulmonata, Arionidae)
Fig. 1. Chromosomes of Arion spp. in the mitotic metaphase (2n): 1 — A. distinctus; 2 — A. lusitanicus s. l.; 3 — A. fuscus, 4 — A. fasciatus.
Fig. 5 in The Thick-Clawed Crayfish, Astacus Pachypus (Crustacea, Decapoda, Astacidae), In Ukraine: Karyotype, Allozymes And Morphological Parameters
Fig. 5. Distribution of specimens of four species of the genus Astacus in the dimensions of the first and the third canonical variables (analysis of absolute body measurements).
Fig. 4 in The Thick-Clawed Crayfish, Astacus Pachypus (Crustacea, Decapoda, Astacidae), In Ukraine: Karyotype, Allozymes And Morphological Parameters
Fig. 4. The distribution of specimens of four species of the genus Astacus in the dimensions of the first and the second canonical variables (analysis of absolute body measurements).
Fig. 3 in The Thick-Clawed Crayfish, Astacus Pachypus (Crustacea, Decapoda, Astacidae), In Ukraine: Karyotype, Allozymes And Morphological Parameters
Fig. 3. General view of the male: a — broad-clawed crayfish (A. astacus); b — thick-clawed crayfish (A. pachypus); c — long-clawed crayfish (A. leptodactylus); d — A. angulosus.
Figure 10 in A new opilioacarid species (Parasitiformes: Opilioacarida) from Crete (Greece) with notes on its karyotype
Figure 10 Opilioacarus thalerin. sp. (2n = 16), female mitotic metaphase stained by Giemsa. Note predominance of acrocentric chromosomes. One large pair is probably metacentric (arowheads).
Figure 9 in A new opilioacarid species (Parasitiformes: Opilioacarida) from Crete (Greece) with notes on its karyotype
Figure 9 Opilioacarus thalerin. sp., female. A – eugenital setae; B – ovipositor; C – setae on penultimate segment.
Figure 6 in A new opilioacarid species (Parasitiformes: Opilioacarida) from Crete (Greece) with notes on its karyotype
Figure 6 Opilioacarus thalerin. sp., male palp. A – trochanter; B – femur; C – genu; D – tibia. Axial (left) and antiaxial (right) view. E – particular types of setae.
Figure 4 in A new opilioacarid species (Parasitiformes: Opilioacarida) from Crete (Greece) with notes on its karyotype
Figure 4 Opilioacarus thalerin. sp., gnathosoma. A – chelicera, female. Fixed digit with 3 lightly barbed setae (a) and lyrifissure (b). Movable digit with one large tooth and 3 denticles (c). Basal segment with one seta (d); B – subcapitulum. Paralabial setae pl1, With´s organ pl2, rutellum pl3, circumbucal setae cb, and channels ch.
Figure 5 in A new opilioacarid species (Parasitiformes: Opilioacarida) from Crete (Greece) with notes on its karyotype
Figure 5 Opilioacarus thalerin. sp., female palp. A – trochanter; B – femur; C – genu; D – tibia. Axial (left) and antiaxial (right) view. E – particular types of setae.
Figure 7 in A new opilioacarid species (Parasitiformes: Opilioacarida) from Crete (Greece) with notes on its karyotype
Figure 7 Opilioacarus thalerin. sp., palp tarsus, male (A–B) and female (C–D). Ventral (left) and dorsal view (right). E – particular types of setae.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.