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Fig. 27 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 27. Lectotype of Allium japonicum Regel (LE 01012554; KPM-NX0001287).
Fig. 19 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 19. Isolectotype of Veratrum stamineum Maxim. (LE 01012503; KPM-NX0001255).
Fig. 43 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 43. Syntype of Juncus effusus L. var. decipiens Buchenau (LE 01012468; KPM-NX0001316).
Fig. 22 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 22. Syntype of Calypso japonica Maxim. ex Kom. (LE 01012253; KPM-NX0001920).
Fig. 18 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 18. Isolectotype of Veratrum stamineum Maxim. (LE 01012502; KPM-NX0001256).
Fig. 13 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 13. Holotype of Najas serristipula Maxim. (LE 01011708; KPM-NX0001252).
Fig. 16 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 16. Lectotype of Veratrum stamineum Maxim. (LE 01012500; KPM-NX0001258).
Fig. 12 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 12. Isolectotype of Alisma rariflorum Sam. (LE 01011711; KPM-NX0001250).
Fig. 7 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 7. Syntypes of Chamaecyparis breviramea Maxim. (LE 01042739, LE 01011613; KPM-NX0001923).
Fig. 56 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 56. Lectotype of Calamagrostis yatabei Maxim. (LE 01042711; KPM-NX0001925).
Fig. 10 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 10. Lectotype of Lindera hypoglauca Maxim. (LE 01014213; KPM-NX0001248).
Fig. 54 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 54. Lectotype of Scirpus concolor Maxim. (LE 01011725; KPM-NX0001335).
Fig. 23 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 23. Syntype of Malaxis japonica Maxim. (LE 01012245; KPM-NX0001275).
Fig. 2 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 2. Syntype of Lycopodium cryptomerinum Maxim. (LE 01009939; KPM-NX0001852).
Fig. 1 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 1. Lectotype of Lycopodium cryptomerinum Maxim. (LE 01009938; KPM-NX0001851).
Figure 13 in A new water mite species of the genus Hygrobates Koch, 1837 (Acari, Hydrachnidia, Hygrobatidae) from Far East of Russia
Figure 13. Hygrobates (Rivobates) ezoensis: 13 – pedipalp (after Matsumoto et al. 2005).
Fig. 1 in An enigmatic early?palaeocope ostracode from the Arenig of NW Russia
Fig. 1. Location of the studied sections in the St. Pe−
Fig. 1 in Helminth infection in wild boars in Primorye, Russia
Fig. 1. Map of research area.
Figure 2 in The formation of the consortia relations of Molipteryx fuliginosa (Uhler, 1860) (Hemiptera, Coreidae) with Ambrosia artemisiifolia in the Primorskii Krai of Russia
Figure 2. Stationary cages.
Fig. 4 in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 4. Criteria for systematic classification of nautiloids used herein.
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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)
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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.