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29 results for “WUI”
FIGURE 1 in Orbinia wui, a new species from China, with redescription of O. dicrochaeta Wu, 1962 (Annelida, Orbiniidae)
FIGURE 1. Orbinia wui sp. n., holotype (MBM023038). A, anterior chaetigers, lateral view; B–C, diagram showing arrangement of anterior thoracic neurochaetae, not to scale, circles with large diameter indicate uncini, the small ones indicate subuluncini; D, parapodium of middle abdominal region, E, uncini; F, subuluncini. Scale bars=1 mm (A), 200 µm (D), 15 µm (E) 20 µm (F).
FIGURE 3 in Orbinia wui, a new species from China, with redescription of O. dicrochaeta Wu, 1962 (Annelida, Orbiniidae)
FIGURE 3. Orbinia dicrochaeta Wu, 1962, MBM304674 and MBM193691. A, anterior chaetigers, dorsal view. MBM 193691, B, parapodium of anterior thoracic region; C, parapodium of anterior abdominal region; D, parapodium of middle abdominal region; E, parapodium of posterior abdominal region. Scale bars = 0.5 mm (A), 0.2 mm (B–E).
FIGURE 3 in Orbinia wui, a new species from China, with redescription of O. dicrochaeta Wu, 1962 (Annelida, Orbiniidae)
FIGURE 3. Orbinia dicrochaeta Wu, 1962, MBM304674 and MBM193691. A, anterior chaetigers, dorsal view. MBM 193691, B, parapodium of anterior thoracic region; C, parapodium of anterior abdominal region; D, parapodium of middle abdominal region; E, parapodium of posterior abdominal region. Scale bars = 0.5 mm (A), 0.2 mm (B–E).
FIGURE 4 in Orbinia wui, a new species from China, with redescription of O. dicrochaeta Wu, 1962 (Annelida, Orbiniidae)
FIGURE 4. Orbinia dicrochaeta Wu, 1962, MBM023268. SEM. A, anterior chaetigers, lateral view; B, same, close up with prostomium, peristomium and nuchal organ; C, abdominal chaetigers, dorsal view; D, thoracic neuropodial subuluncini; E, posterior thoracic region in right lateral view; F, middle thoracic neuropodium showing arrangement of five rows of subuluncini, one short row of uncini and company capillaries; G, thoracic neuropodial uncini; H, abdominal notopodial furcate chaetae. Scale bars = 5 mm (A, C, E), 1 mm (B, F), 0.1 mm (D, G), 0.2 mm (H).
FIGURE 1 in Orbinia wui, a new species from China, with redescription of O. dicrochaeta Wu, 1962 (Annelida, Orbiniidae)
FIGURE 1. Orbinia wui sp. n., holotype (MBM023038). A, anterior chaetigers, lateral view; B–C, diagram showing arrangement of anterior thoracic neurochaetae, not to scale, circles with large diameter indicate uncini, the small ones indicate subuluncini; D, parapodium of middle abdominal region, E, uncini; F, subuluncini. Scale bars=1 mm (A), 200 µm (D), 15 µm (E) 20 µm (F).
FIGURE 2 in Orbinia wui, a new species from China, with redescription of O. dicrochaeta Wu, 1962 (Annelida, Orbiniidae)
FIGURE 2. Orbinia wui sp. n., SEM (MBM202047). A, anterior chaetigers, lateral view; B, parapodium of chaetiger 5; C, parapodium of chaetiger 7; D, anterior thoracic neuropodial uncini and companion capillary; E, posterior thoracic neuropodial subuluncini and companion capillaries; F, abdominal notopodial furcate chaetae and capillary. Scale bars = 5 mm (A), 0.5 mm (B–C), 0.1 mm (D–F).
Data from: Empria formosana sp. n. from Taiwan with notes on E. wui species group (Hymenoptera, Tenthredinidae)
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Data from: Defensible-space treatment of <114,000 ha 40 m from high-risk buildings near wildland vegetation could reduce loss in WUI wildfire disasters across Colorado's 27 million ha
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Fig. 1 in Reexamination of the mandibular and dental morphology of the Early Jurassic mammaliaform Hadrocodium wui
Fig. 1. Lower jaws of comparative mammaliaforms. A. Hadrocodium wui Luo, Crompton, and Sun, 2001 (holotype, IVPP 8275), from the Lower Lufeng Formation, Lower Jurassic of Yunnan, China. Right mandible in lingual (A1) and labial (A2) views. B, C. Morganucodontan Dinnetherium nezorum Jenkins, Crompton, and Downs, 1983, from the Kayenta Formation, Lower Jurassic of Arizona, USA. B. An older adult (MCZ 20910). C. A young adult (MCZ 20870); modified from Crompton and Luo 1993). Younger individuals of D. nezorum have a full set of five premolars, while older individuals have lost up to two anterior premolars without replacement. The postcanine diastema developed by shedding premolars without replacement is an aging-related character of many mammaliaforms including Hadrocodium.
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Allen Brain Atlas
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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.