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Figure 3 in It's a Trap! An evaluation of different passive trap types to effectively catch and control the invasive red swamp crayfish (Procambarus clarkii) in streams of the Santa Monica Mountains
Figure 3. Mean catch per trap type with standard errors. Letters indicate significantly different mean counts within groups.
Figure 6 in It's a Trap! An evaluation of different passive trap types to effectively catch and control the invasive red swamp crayfish (Procambarus clarkii) in streams of the Santa Monica Mountains
Figure 6. Mean chub counts by size class across twelve trap types with standard error bars. Size classes include small as ≤ 60mm, medium as 61–89 mm, and large as 89–150mm as described by O'Brien et al. (2011).
Fig. 9 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 9. Sarcopterygii indet. from Podłazie, Holy Cross Mountains, Poland, Emsian. A. MZ-VIII/Vp-437, ethmosphenoid in ventral view. B. PIG-PIB-12P, parietal in dorsal view. C–G. Undetermined elements in lateral view. C. D1080aD27UW. D. PIG 273. E. PIG-PIB-4P. F. MZ-VIII/Vp-457. G. MZ-VIII/Vp-66.
Fig. 5 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 5. Porolepidid sarcopterygian Heimenia sp. from Podłazie, Holy Cross Mountains, Poland, Emsian. Coronoids (A–C), teeth (D–F), dermopalatine G). A. PIG-PIB-8P in lateral (A1) and ventral (A2) views. B. PIG-PIB-9P in lateral (B1) and ventral (B2) views. C. PIG-PIB-10P in lateral (C1) and ventral C2) views. D. PIG-PIB-11P in lateral view. E. MZ-VIII/Vp-459 in lateral view. F. MZ-VIII/Vp-441 in lateral view. G. PIG-PIB-7P in lateral (G1) and ventral (G2) views, close up (G3).
Fig. 4 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 4. Porolepidid sarcopterygian Porolepis sp. from Podłazie, Holy Cross Mountains, Poland, Emsian. A. PIG-PIB-5P, parietal in ventral view (A1), interpretative drawing of the complete element in ventral view (A2). B. PIG 178, median extrascapular in dorsal (B1) and ventral (B2) views, interpretative drawing of the complete element in dorsal view (B3). C. MZ-VIII/Vp-458, postparietal in dorsal view (C1), interpretative drawing of the dorsal view (C2).
Fig. 8 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 8. Sarcopterygii indet. from Podłazie, Holy Cross Mountains, Poland, Emsian. Lower jaw (A–F), maxilla (G, H). A. Lower jaw (PIG-PIB-2P) in dorsal (A1) and lateral (A2) views. B. MZ-VIII/Vp-401 in dorsal (B1) and ventral (B2) views. C. PIG 349 in dorsal (C1) and ventral (C2) views. D. MZ-VIII/ Vp-402) in ventral (D1) and lateral (D2) views. E. MZ-VIII/Vp-403 in lateral view. F. PIG 1733.II.437 in dorsal (F1) and ventral (F2) views. G. MZ-VIII/ Vp-449 in lateral view. H. PIG-PIB-3P in ventral view.
Fig. 3 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 3. Porolepidid sarcopterygian Porolepis sp. from Podłazie, Holy Cross Mountains, Poland, Emsian. Lower jaws in ventral view. A. MZ-VIII/Vp-58. B. MZ-VIII/Vp-400.
Fig. 2 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 2. Porolepidid sarcopterygian Porolepis sp. from Podłazie, Holy Cross Mountains, Poland, Emsian. MZ-VIII/Vp-56, ethmosphenoid in ventral view.
Fig. 7 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 7. Sarcopterygii indet. from Podłazie, Holy Cross Mountains, Poland, Emsian. MZ-VIII/Vp-58, right jugal in external (A1, A2), ventral (A3), and lateral (A4, A5) views, interpretative drawing (A2), interpreted outline of the original (likely) shape of the jugal (A6; not to scale).
Fig. 6 in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 6. Porolepidid sarcopterygian Heimenia sp. from Podłazie, Holy Cross Mountains, Poland, Emsian. Lower jaws in ventral view. A. MZ-VIII/Vp-61. B. MZ-VIII/Vp-55.
Fig. 1. A in A new look at the Emsian (Early Devonian), sarcopterygian fishes from the Holy Cross Mountains, Poland, with a special reference to porolepiforms
Fig. 1. A. Map showing location (inset) and Lower Devonian deposits of the Holy Cross Mountains (HCM), star indicates the investigated locality. B. Lithological profile of Podłazie Hill (modified from Szrek et al. 2014). C. Block of "Placoderm Sandstone" with vertebrate remains (after Szrek et al. 2014: fig. 7A).
Fig. 5 in Early Cretaceous ammonites and dinoflagellates from the Western Tatra Mountains, Poland
Fig. 5. The Lower Cretaceous heteromorph ammonite Crioceratites coniferus Busnardo, Charollais, Weidmann, and Clavel, 2003 from the Kościeliska Marl Formation in the Lejowa Valley, Tatra Mountains, Poland. A. GEO.1.2018. B. ZPAL Am. 25/1 (silicone cast). C. G/1729/MT. All in lateral view.
Fig. 3 in Early Cretaceous ammonites and dinoflagellates from the Western Tatra Mountains, Poland
Fig. 3. The Lower Cretaceous ammonites from the Kościeliska Marl Formation in the Lejowa Valley, Tatra Mountains, Poland. A, C–E. Criosarasinella cf. subheterocostata Reboulet, 1996. A. ZPAL Am. 25/19. C. ZPAL Am. 25/7. D. ZPAL Am. 25/17. E. ZPAL Am. 25/14. B. Calcite valve of aptychus Didayilamellaptychus seranonis (Coquand, 1841), ZPAL Am. 25/12. F. Spitidiscus cf. cankovi Vašíček and Michalík, 1986, ZPAL Am. 25/9. G. Olcostephanus densicostatus (Wegner, 1909), ZPAL Am. 25/4. All in lateral view.
Fig. 1 in Early Cretaceous ammonites and dinoflagellates from the Western Tatra Mountains, Poland
Fig. 1. Location of ammonite collection area (asterisk shows fossil sampling locality, 49°16.109' N, 19°51.194' E). Satellite views from the Google Maps.
Fig. 4. A–C. The Lower Cretaceous heteromorph ammonite Crioceratites primitivus Reboulet, 1996 in Early Cretaceous ammonites and dinoflagellates from the Western Tatra Mountains, Poland
Fig. 4. A–C. The Lower Cretaceous heteromorph ammonite Crioceratites primitivus Reboulet, 1996 from the Kościeliska Marl Formation in the Lejowa Valley, Tatra Mountains, Poland. A. G/1728/MT. B. ZPAL Am. 25/2. C. ZPAL Am. 25/15. D. Distribution of anomiid individuals on a specimen of C. primitivus (ZPAL Am. 25/15). E–G. Close up views of bivalves attached to the body chambers of the ammonite C. primitivus (ZPAL Am. 25/15). All in lateral view.
Fig. 6 in Early Cretaceous ammonites and dinoflagellates from the Western Tatra Mountains, Poland
Fig. 6. The Lower Cretaceous organicwalled dinoflagellate cysts from the Kościeliska Marl Formation in the Lejowa Valley, Tatra Mountains, Poland. A. Cometodinium habibii Monteil, 1991. B. Cymososphaeridium validum Davey, 1982. C. Phoberocysta neocomica (Gocht, 1957) Millioud, 1969. D. Stanfordella? cretacea (Neale and Sarjeant, 1962) Helenes and LucasClark, 1997. E. Prolixosphaeridium sp.. F. Endoscrinium campanula (Gocht, 1959) Vozzhennikova, 1967. G. Phoberocysta neocomica (Gocht, 1957) Millioud, 1969. H. Bourkidinium elegans Torricelli, 1997. I. Wallodinium krutzs chii (Alberti, 1961) Habib, 1972. J. Cribroperidinium orthoceras (Eisenack, 1958). A–I sampled from ZPAL Am. 25/2; J sampled from ZPAL Am. 25/7.
Fig. 2 in Early Cretaceous ammonites and dinoflagellates from the Western Tatra Mountains, Poland
Fig. 2. Outcrop of the Lower Cretaceous sequence of the Kościeliska Marl Formation, the Western Polish Tatra Mountains (arrow indicates approximate location of collected samples). Photo taken by Andrzej Gaździcki, 3 August 2018.
FIG. 2 in Morphological and phylogenetic data confirm the identity of Prasiola fluviatilis (Prasiolales, Trebouxiophyceae) from glacier streams in the Tianshan Mountains, China
FIG. 2.— Morphology of Prasiola fluviatilis (Sommerfelt) Areschoug ex Lagerstedt: A, B, thalli; C, D, vegetative cells; E, F, cells in the lower part of the blade; G, cells in the upper portion of the thallus; H, uniseriate branches. Scale bars: A, B, 1 cm; C, D, 100 µm; E-H, 20 µm.
FIG. 1 in Morphological and phylogenetic data confirm the identity of Prasiola fluviatilis (Prasiolales, Trebouxiophyceae) from glacier streams in the Tianshan Mountains, China
FIG. 1. — Habitat of Prasiola fluviatilis (Sommerfelt) Areschoug ex Lagerstedt: A, streams under a glacier; B, population of P. fluviatilis.
FIG. 5 in Morphological and phylogenetic data confirm the identity of Prasiola fluviatilis (Prasiolales, Trebouxiophyceae) from glacier streams in the Tianshan Mountains, China
FIG. 5.— Global distribution of Prasiola fluviatilis (Sommerfelt) Areschoug ex Lagerstedt (blue: glacier area [GLIMS and NSIDC 2005, updated 2019]; Ϙ, occurrence records based on morphology; Δ, occurrence records based on morphology and molecular evidence)
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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.