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Fig. 8 in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 8. Phylogenetic tree of Camallanidae nematodes based on 491 nucleotides long alignments of 28 rDNA gene. Nodal support presented for Bayesian Inference and Maximum Likelihood analyses (BI/ML).
Fig. 3. Paracamallanus cyathopgharynx, photomicrographs. A in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 3. Paracamallanus cyathopgharynx, photomicrographs. A – anterior part of body, male, lateral view; B – buccal capsule, male, lateral view; C – anterior part of body, male, apical view; D – female, general view; E - optical section at level of buccal capsule valves mid-length, male, dorsal view; F - part of body at vulva region, lateral view; G – posterior end of body, female, lateral view; H – posterior end of body, male, lateral view. Scale bars: A–C, E–H – 100; D – 1 mm.
Fig. 1. Camallanus sodwanaensis n in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 1. Camallanus sodwanaensis n. sp., line-drawings. A – anterior part of body, female, lateral view; B – buccal capsule, female, lateral view; C – anterior part of body, female, apical view; D – posterior part of body, male, ventral view; E – dorsal trident, male, lateral view; F – posterior part of body, female, lateral view; G – spicules, lateral view. Scale bars: A – 500; B–D, F–G – 100; E – 50.
Fig. 2. Camallanus sodwanaensis n in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 2. Camallanus sodwanaensis n. sp., photomicrographs. A – male, general view; B – anterior part of body, female, lateral view; C – buccal capsule, female, lateral view; D – optical section at level of buccal capsule valves mid-width, male, dorsal view; E – dorsal trident, male, dorsal view; F – anterior part of body, female, apical view; G - optical section at level of buccal capsule valves mid-length, male, apical view; H – right spicule, lateral view; I – posterior end of body, male, ventral view; J – part of body at vulva region, lateral view; K – posterior end of body, female, lateral view. Scale bars: A – 1 mm, B – 500, C–K – 100.
Fig. 1 in Epizootic ulcerative syndrome - First report of evidence from South Africa's largest and premier conservation area, the Kruger National Park
Fig. 1. Sampling location from which evidence of genomic material of Aphanomyces invadans was obtained in Clarias gariepinus from Nhlangaluwe Pan on the Limpopo River in the Kruger National Park, South Africa.
Text-fig. 1. Chara braunii from Lake Magadi, Tanzania. a – top of plants with gametangia, b – oospore with 6 ridges, 400 µm long. in Some Finds Of Charophytes From East-Africa (Zambia, Tanzania, Kenya And Somalia)
Text-fig. 1. Chara braunii from Lake Magadi, Tanzania. a – top of plants with gametangia, b – oospore with 6 ridges, 400 µm long.
Fig. 4 in New distribution records, observations on natural history, and notes on reproduction of the poorly known Sudanese Unicorn Chameleon (Chamaeleonidae: Trioceros conirostratus) from Uganda, Africa
Fig. 4. Examples of Sudanese Unicorn Chameleons (Trioceros conirostratus) displaying a threatened posture with the mouth open. (A) Threatened male from Morongole Central Forest Reserve (CFR) displaying a temporal pouch filled with brown odiferous material (in-detail); (B) Another threatened male from Morongole CFR demonstrating an empty temporal pouch depleted after being handled (in-detail).
Fig. 5. A in New distribution records, observations on natural history, and notes on reproduction of the poorly known Sudanese Unicorn Chameleon (Chamaeleonidae: Trioceros conirostratus) from Uganda, Africa
Fig. 5. A developing embryo of the Sudanese Unicorn Chameleon (Trioceros conirostratus), removed from a female oviduct. Scale bar = 1 mm.
Fig. 3 in New distribution records, observations on natural history, and notes on reproduction of the poorly known Sudanese Unicorn Chameleon (Chamaeleonidae: Trioceros conirostratus) from Uganda, Africa
Fig. 3. Representatives of the Sudanese Unicorn Chameleon (Trioceros conirostratus) and local habitats from the three "northern" Central Forest Reserves (CFR) surveyed in Northern Region, Uganda, Africa. Sub-adult male and female from Orom CFR (top row), male and female from Morongole CFR (middle row), and juvenile male and juvenile female from Agoro-Agu CFR (bottom row).
Fig. 2 in New distribution records, observations on natural history, and notes on reproduction of the poorly known Sudanese Unicorn Chameleon (Chamaeleonidae: Trioceros conirostratus) from Uganda, Africa
Fig. 2. Representatives of the Sudanese Unicorn Chameleon (Trioceros conirostratus) and local habitats from the three "southern" Central Forest Reserves (CFR) surveyed in Northern Region, Uganda, Africa. Male and female from Kadam CFR (top row), male and female from Moroto CFR (middle row), and male and female from Napak CFR (bottom row).
Fig. 3 in Characterization of sounds in maize produced by internally feeding insects: investigations to develop inexpensive devices for detection of Prostephanus truncatus (Coleoptera: Bostrichidae) and Sitophilus zeamais (Coleoptera: Curculionidae) in small-scale storage facilities in sub-Saharan Africa
Fig. 3. Effects of distance on detectability of larval sound impulses. Horizontal axis indicates the mean distance between the larval pouch and the sensor; vertical axis indicates the log10-transformed mean rate of impulses detected at that distance. Bars indicate the standard error of mean transformed rate.
Fig. 1 in Characterization of sounds in maize produced by internally feeding insects: investigations to develop inexpensive devices for detection of Prostephanus truncatus (Coleoptera: Bostrichidae) and Sitophilus zeamais (Coleoptera: Curculionidae) in small-scale storage facilities in sub-Saharan Africa
Fig. 1. Spectral profiles of 4 distinctive types of larval sound impulses detected in cracked corn: HaNb, solid line; Ma, dashed line, Ha, dash-dot-dotted line, and La, dotted line. Horizontal axis indicates frequency in kHz and vertical axis indicates relative spectrum amplitude in dB.
Fig. 2 in Characterization of sounds in maize produced by internally feeding insects: investigations to develop inexpensive devices for detection of Prostephanus truncatus (Coleoptera: Bostrichidae) and Sitophilus zeamais (Coleoptera: Curculionidae) in small-scale storage facilities in sub-Saharan Africa
Fig. 2. Oscillogram of sound impulses recorded 10 cm from pouch containing Sitophilus oryzae larvae. Examples of 3 types of larval sound impulse occur during the 1 s period, and one example each of type (Ha, La, and HaNb) is marked above the impulse. Horizontal axis indicates time in seconds and vertical axis indicates relative signal amplitude.
Figures 1−7 in Three new species of Camellocossus Yakovlev, 2011 (Lepidoptera: Cossidae, Cossinae) collected by Dr. Heinz Politzar in the Western Africa
Figures 1−7. Camellocossus, holotypes, paratype and male genitalia (MWM): 1. C. politzari Yakovlev sp. n., male, holotype; 2. C. politzari Yakovlev sp. n., female, paratype; 3. C. politzari Yakovlev sp. n., male genitalia (holotype, slide: Genitalpräparat Heterocera # 32895); 4. C. manat Yakovlev sp. n., male, holotype; 5. C. manat Yakovlev sp. n., male genitalia (holotype, slide: Genitalpräparat Heterocera # 32896); 6. C. sokoto Yakovlev sp. n., male, holotype; 7. C. sokoto Yakovlev sp. n. male genitalia (holotype, slide: Genitalpräparat Heterocera # 32898).
Figures 1−4 in New species of Arctiocossus Felder, 1874 (Lepidoptera, Cossidae: Cossinae) from Republic of South Africa
Figures 1−4. Acrtiocossus (Holotypes and male genitalia of Holotypes): 1. A. stroehlei (MSW); 2. Male genitalia of A. stroehlei (slide: MSW 2015/25 Coss); 3. A. antargyreus (NHMUK); 4. Male genitalia of A. antargyreus (slide: Cossidae genitalia slide # 224).
Figures 4–10 in A new species of Scheloribates (Acari, Oribatida, Scheloribatidae) from South Africa
Figures 4–10. Scheloribates (Scheloribates) curviprolamellatus sp. nov., adult: 4 – subcapitulum, ventral view; 5 – palp, left, paraxial view; 6 – chelicera, left, paraxial view; 7 – leg I, without trochanter, right, antiaxial view; 8 – leg II, without trochanter and tarsus, right, antiaxial view; 9 – leg III, without trochanter and tarsus, left, antiaxial view; 10 – leg IV, left, antiaxial view. Scale bar 20 μm (4, 6–10), scale bar 10 μm (5).
Figure 4 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 4. Shells of Galatea paradoxa from freshwater section of Niger River, Nigeria (sample RMBH biv1086, Yenagoa). Scale bar = 10 mm. (Photos: Ilya V. Vikhrev).
Figure 3 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 3. Shells of Galatea schwabi from Sanaga River, Cameroon. (A-B) Topotypes RMBH biv800, Mouanko (lower reaches, slightly brackish section). (C-D) Specimens RMBH biv801, Monatélé (middle reaches, freshwater section). Red arrows show well-developed muscle attachment scars. Scale bar = 10 mm. (Photos: Artem A. Lyubas).
Figure 5 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 5. Maximum likelihood (IQ-TREE) phylogeny of Bivalvia (Venerida and Adapedonta) based on the COI gene sequences (Table 1). A Galatea member is dark red. Scale bar indicates the branch lengths (substitutions per site). Black numbers near nodes indicate the ultrafast bootstrap support (BS) values.
Figure 1 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 1. Occurrences of Galatea schwabi (red stars) and Galatea paradoxa (light green stars). The locality data is given in Table 2. Freshwater basins are colored as follows: Sanaga (1), Cross (2), Niger (3), and Volta (4). The red dash indicates the Edea Hydroelectric Power Station's dam on the Sanaga River. (Map: Mikhail Y. Gofarov).
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.