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FIGURE 1 in Galanthus panjutinii sp. nov.: a new name for an invalidly published species of Galanthus (Amaryllidaceae) from the northern Colchis area of Western Transcaucasia
FIGURE 1. Galanthus panjutinii (A–J from Bondareva & Zubov s.n., by Lucy T. Smith). A. Habit. B. Flower and upper part of scape. C. Leaf (adaxial view). D. Leaf (abaxial). E. Outer perianth segment (abaxial). F. Outer perianth segment (adaxial). G. Inner perianth segment (abaxial). H. Inner perianth segment (adaxial view). J. Receptacle (including ovary), showing attachment of anthers. K. Anthers (abaxial and side views). Scale bar: A, C, D = 3.0 cm; B = 1.5 cm; E–H = 7.0 mm; J = 4.0 mm; K = 2.5 mm.
FIGURE 2 in Galanthus panjutinii sp. nov.: a new name for an invalidly published species of Galanthus (Amaryllidaceae) from the northern Colchis area of Western Transcaucasia
FIGURE 2. Galanthus panjutinii (all photographs by Olga Bondareva). A. Variation in inner perianth segment markings. B. Plants in natural habitat in the Tuapse-Adler region, on the Aїbga Ridge. C. Close up of inflorescence.
FIGURE 10. A in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 10. A Monograph cover for the Conchologia Iconica. This cover, in the library of Dr. M. G. Harasewych, was issued in 1843 and is the only one of its design noted.
FIGURE 4 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 4. Undated and unattributed photographic portrait of Reeve. Reproduced through the courtesy of the Department of Library Services, The Natural History Museum, London.
FIGURE 2 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 2. Portrait of Reeve in the possession of the Senckenberg Museum. Date unknown. Reproduced through the courtesy of Dr. Ronald Janssen, Senckenberg Museum, and Mr. S. Peter Dance.
FIGURE 6 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 6. Logo used by Lovell Reeve for his printing FIGURE 7. Logo used by Reeve in later years when he and publishing company through several changes in the was publishing simply as Lovell Reeve or Lovell Reeve and Co.
FIGURE 8 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 8. The series title page for the Conchologia Iconica. It shows Reeve's original plan for him to draw the figures on lithographic stone from sketches made by G. B. Sowerby.
FIGURE 1 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 1. Lithograph portrait of Lovell Reeve by T. H. Maguire, dated 1849. Reproduction courtesy of the Ewell Sale Library, Academy of Natural Sciences, Philadelphia.
FIGURE 3 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 3. Photographic portrait of Reeve taken by Herbert Watkins. In the private collection of Mr. S. P. Dance and reproduced with his permission. Date unknown.
FIGURE 5 in Lovell Augustus Reeve (1814-1865): malacological author and publisher
FIGURE 5. Photographic portrait of Reeve taken by Ernest Edwards in 1865. Reproduced through the courtesy of Mr. Basil Harley and Guildhall Library, City of London.
Do extraordinary science and technology scientists balance their publishing and patenting activities?
<p>Data of figures in the article titled "<strong>Do extraordinary science and technology scientists balance their publishing and patenting activities?."</strong></p>
Figure 6 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 6. Karyotypes of the Hydrophilini. A–C, Hydrophilus, mitotic karyotype from embryo (A–B, Hydrophilus piceus; C, Hydrophilus pistaceus). D–H, Hydrochara: (D–F) Hydrochara caraboides, mitotic karyotype, embryo; (G–H) Hydrochara flavipes, mitotic karyotype, midgut. I–J, Sternolophus solieri (I, male mitotic karyotype; J, meiotic first metaphase from testes). A, C, D, G, I, without treatment. B, E, F, H, C-banded. Habitus figures: (K) Sternolophus solieri; (L) Hydrochara caraboides; (M) Hydrophilus piceus, from Short & Fikáček (2013).
Figure 5 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 5. Karyotypes of the Hydrobiusini. A–D, Limnohydrobius convexus: (A–B) mitosis, midgut; (C–D): testis, prometaphase. F–J, Limnoxenus niger: (F–H) midgut; (I–J) meiotic metaphase I, testes. A–C, E–F, I, without treatment. D, G, H, J, C-banded. Habitus figures: (E) Limnohydrobius convexus; (K) Limnoxenus niger.
Figure 3 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 3. Karyotypes of the Laccobiini, without treatment. A–H, Paracymus: (A–B) Paracymus aeneus, mitotic metaphase from midgut; (C–D) Paracymus scutellaris (C, spermatogonial mitosis, metaphase; D, mitotic metaphase from midgut.); (E–G) meiotic metaphase I from testes (E, Paracymus aeneus; F–G, Paracymus scutellaris). I–M, Tormus, mitotic metaphase from midgut: (I, K) Tormus posticalis; (J, L) Tormus helmsi. Habitus figures: (G) Paracymus scutellaris; (M) Tormus helmsi, from Fikáček et al. (2013).
Figure 1 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 1. Tissues of hydrophiloid beetles used for chromosome preparations (as dissected, without any additional treatment, (B–E) in dorsal view; (A) Helophorus grandis; (B, C, I) Laccobius bipunctatus; (D–H) Coelostoma orbiculare). A, egg with a developing embryo. B–C, internal organs of the same male specimen in translucent light (B) and on black background (C). D, internal organs of a female with digestive system pulled aside. E, internal organs of male specimen. F, details of ovarioles and associated accessory glands. G–I, detail of midgut structure on black background (G) and in translucent light (H, I). Abbreviations: accg, accessory glands; aed, aedeagus; hg, hindgut; mg, midgut; Mt, Malpighian tubes; oo, ovarioles; ovi, ovipositor; rc, regeneration crypts; tes, testes. Not to scale.
Figure 2 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 2. Karyotypes of the Amphiopini and Laccobiini. A–E, Amphiops mater, mitotic methaphase from midgut. F–L, Laccobius decorus, mitotic metaphase from midgut. A, C, F, H, J, without treatment. B, D, G, I, K, C-banded. Habitus figures: (E) Amphiops mater; (L) Laccobius decorus.
Figure 13 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 13. Karyotypes of the Cylominae, without treatment. A, D, Exydrus gibbosus, mitosis, midgut. B–C, E, Tormissus magnulus, mitosis, midgut. F–H, Rygmodus modestus (F–G, meiotic metaphase I, testes; H, mitotic karyotype, midgut). Habitus figures: (I) Exydrus gibbosus; (J) Rygmodus modestus, from Minoshima et al. (2018).
Figure 14 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 14. Karyotypes of the Omicrini and Sphaeridiini, without treatment. A–F, Omicrini: (A–B) Noteropagus sp. from Taiwan, meiotic karyotypes from testes; (C–D) Omicrogiton insularis, mitotic karyotype, midgut; (E–F) Paromicrus sp. from Taiwan, mitotic karyotype, midgut. G–I, habitus of examined specimens: (G) Noteropagus sp.; (H) Omicrogiton insularis; (I) Paromicrus sp. J–P, Sphaeridiini: Sphaeridium; (J–K) Sphaeridium lunatum (J, testes, mitosis; K, midgut, mitosis); (L) Sphaeridium scarabaeoides, mitosis, midgut; (M) Sphaeridium bipustulatum, mitosis, midgut; (N–P) meiosis, metaphase I, testes: (N) Sphaeridium scarabaeoides; (O) Sphaeridium bipustulatum; (P) Sphaeridium lunatum. Q, habitus of Sphaeridium scarabaeoides.
Figure 12 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 12. Karyotypes of the Cylominae, without treatment. A–B, Adolopus sp., mitosis from midgut. D, Cyloma guttulatus, mitosis from midgut. E–G, Cyloma sp. (E–F, meiotic first metaphase; G, testes, mitosis;). I–M, Cylomissus glabratus: (I–J) mitotic metaphase from midgut; (K–M) meiotic metaphase I from testes. Habitus figures: (C) Adolopus sp.; (H) Cyloma sp., specimen collected with karyotyped voucher; (N) Cylomissus glabratus, from Minoshima et al. (2015).
Figure 11 in Karyotypes of water scavenger beetles (Coleoptera: Hydrophilidae): new data and review of published records
Figure 11. Karyotypes of the Acidocerinae. A–C, Agraphydrus, mitotic metaphase, midgut: (A–B) Agraphydrus decipiens; (C) Agraphydrus variabilis. D–L, Helochares: (D–E) Helochares lividus, mitosis, midgut; (F) Helochares obscurus, mitosis, midgut; (G–H) Helochares punctatus, mitosis, midgut; (I) Helochares punctatus, karyotype of male embryo with multiple y-chromosomes; (J–K) meiotic metaphase I from testes (J, Helochares punctatus; K, Helochares lividus); (L) Helochares sauteri, mitosis, midgut. A, D, F, G, I–L, without treatment. B, C, E, H, C-banded. Habitus figures: (M) Agraphydrus decipiens, from Minoshima, Komarek, & Ȏhara 2015; (N) Helochares obscurus.
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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.