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13,397 results for “sp. nov.”
Fig. 1 in Saphonecrus albidus Lobato-Vila and Pujade-Villar 2022, sp. nov.
Fig. 1. Second maxilliped of: a) Leptuca terpsichores; b) L. beebei; c) P. panamensis. ST, spoon-tipped setae; P, plumose setae.
Fig. 13 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 13. Myrmeleon taiwanensis Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 10 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 10. Myrmeleon littoralis Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 6 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 6. Myrmeleon alticolus Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 4. IX in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 4. IX abdominal sternite of 3rd instar larvae of Myrmeleontini of Taiwan, ventral view; A, Baliga asakurae; B, Myrmeleon alticolus; C, Myrmeleon bimaculatus; D, Myrmeleon heppneri; E, Myrmeleon littoralis; F, Myrmeleon persimilis; G, Myrmeleon punctinervis; H, Myrmeleon taiwanensis; I, Myrmeleon wangi. Scale bar = 1 mm.
Fig. 3 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 3. Head of 3rd instar larvae of Myrmeleontini of Taiwan, ventral view; A, Baliga asakurae; B, Myrmeleon alticolus; C, Myrmeleon bimaculatus; D, Myrmeleon heppneri; E, Myrmeleon littoralis; F, Myrmeleon persimilis; G, Myrmeleon punctinervis; H, Myrmeleon taiwanensis; I, Myrmeleon wangi. Scale bar = 1 mm.
Fig. 1 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 1. Habitats of the Myrmeleontini larvae, A, Underneath trunks of giant woods (M. alticolus). B, On open sand dunes (M. persimilis). C, Underneath rock overhangs (M. taiwanensis). D, Underneath artificial buildings (M. wangi).
Fig. 12. Myrmeleon punctinervis Banks, 1937, 3 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 12. Myrmeleon punctinervis Banks, 1937, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 9 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 9. Myrmeleon heppneri Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 11 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 11. Myrmeleon persimilis Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 7. Myrmeleon bimaculatus Yang, 1999, 3 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 7. Myrmeleon bimaculatus Yang, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 5 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 5. Baliga asakurae (Okamoto, 1910), 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 14 in Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 14. Myrmeleon wangi Miller and Stange, 1999, 3rd instar larva. A, dorsal view; B, ventral view; C, lateral view.
Fig. 5 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 5. Heliocidaris crassispina annual (n = 15) and seasonal growth: Season 1 (n = 8) and Season 2 (n = 39). Relationship between increment in jaw length after 1 year in the field and jaw length at the time of tagging.
Fig. 1 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 1. Map of Hong Kong showing the location of Nine Pins, the site where the sea urchin tagging study was conducted.
Fig. 2 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 2. Jaw of Heliocidaris crassispina under ultraviolet illumination with A) calcein blue tag, B) calcein tag. Measurements showing increment of jaw length (ΔJ), jaw length at the time of tagging with calcein (Jt) and jaw length at the time of recapture after one year (Jt+1). C) 1-year growth increment (sea urchins collected 376 d after tagging) or Season 1 growth (sea urchins collected 176 d after tagging); marked with calcein. D) Season 2 growth, marked with calcein blue. E) Merged pictures of sequential marking showing seasonal growth over 1 year (376 d); distance between the calcein blue mark and calcein mark is also the Season 1 growth (sea urchins collected 376 d after tagging). A–B: magnification 8.5x. C–E: magnification of 50x.
Fig. 6 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 6. Seasonal (solid lines) and non-seasonal (dash lines) growth for Heliocidaris crassispina described by the von Bertalanffy model (n = 67) for jaw length (a) and test diameter (b).
Fig. 3 in Periclimenaeus karantina Park & De Grave 2021, sp. nov.
Fig. 3. Size-frequency distribution of Heliocidaris crassispina tagged with calcein and calcein blue (n = 1630). Solid bars represent recaptured individuals with tags at the end of the experiment (n = 57). The mean test diameter (TD) of the tagged and recaptured individuals with tags was 33.0 and 34.0 mm, respectively.
Fig. 6 in Fig. 4 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 6. Gymnothorax pseudokidako sp. nov.. lateral view of head marks with cephalic sensory pores: red for supraorbital pores; green for infraorbital pores; blue for preoperculo-mandibular pores; yellow for branchial pores. Photo of DOS 07961, paratype, 651+ mm TL.
Fig. 12 in Fig. 4 in Periclimenaeus apomonosi Park & De Grave 2021, sp. nov.
Fig. 12. Relationship of selected characteristics of Gymnothorax pseudokidako sp. nov. and G. kidako. (A) tail length in % of TL to TL; (B) number of dentary teeth to TL; (C) frequency distribution of total vertebrae. Black for G. pseudokidako; white for G. kidako. Teeth counted from each side of the jaw, two counts for each individual.
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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.