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FIGURES 72–79. G in Re-descriptions of larvae of mature larvae of two predatory species of Nudobius and Gabrius associated with bark beetle galleries (Coleoptera: Staphylinidae)
FIGURES 72–79. G. splendidulus (72, 74, 76, 78), N. lentus (73, 75, 77, 79). 72–77, terminal segments of mature larva in lateral (72, 73), ventral (74, 75) and dorsal (76, 77) aspect; 78, 79, adult. Abbreviations: Ug urogomphi.
FIGURES 86–95. G in Re-descriptions of larvae of mature larvae of two predatory species of Nudobius and Gabrius associated with bark beetle galleries (Coleoptera: Staphylinidae)
FIGURES 86–95. G. splendidulus (86–90, 92–94), N. lentus (91, 95). 86, gland on epicranial suture; 87, sensillum of fore region of tergite V; 88, microstructure of region on thoracic stigma; 89, microstructure of hind region of mesonotum; 90, 91, microstructure of abdominal tergite II; 92, microstructure of abdominal tergite IX; 93, microstructure of first article of urogom- phus; 94, 95, microstructure of abdominal sternite X.
Fig. 4 in Cryptic and pseudo-cryptic diversity in the world's most common bark beetle-Hypothenemus eruditus
Fig. 4 Character states for Binterstrial declivital vestiture.^ a Sparse (state 1). b Medium (state 2). c Abundant (state 3)
FIGURE 3. a. Acer campestre young tree bark. b. Aged tree bark. c in Confirmation of Acer campestre (Sapindaceae) presence in Algeria and new sites records
FIGURE 3. a. Acer campestre young tree bark. b. Aged tree bark. c. Shoot of the year. d. Axillary bud. e. Terminal bud. Photographed by S. Ait Said (a–b) and Z. Chikhaoui (c–e).
FIGURE 2. Magnolia corquinensis. A. Tree. B. Habitat. C. Trunk bark. D. Leaves. E. Leaves abaxially glaucous. F. Abaxial midvein base with pubescence. G. Abaxial midvein losing pubescence towards the apex. H. Internodes and leaf stipules. I in A new species, Magnolia corquinensis, and a new record of Magnolia quetzal (Magnoliaceae) for Honduras
FIGURE 2. Magnolia corquinensis. A. Tree. B. Habitat. C. Trunk bark. D. Leaves. E. Leaves abaxially glaucous. F. Abaxial midvein base with pubescence. G. Abaxial midvein losing pubescence towards the apex. H. Internodes and leaf stipules. I. Stipules adnate to the petiole. J. Flower bud with spathaceous bract and early axillary leaf buds. Photographs A–C, H & J by H. Vega; D–G & I by S. Morales.
Fig. 3 in The Bark-Gnawing Beetles of Montana, USA (Coleoptera: Trogossitidae, Peltidae, and Lophocateridae), Including New Substantial Distributional Records for Tenebroides collaris (Sturm)
Fig. 3. Dorsal habitus of Tenebroides collaris collected from a Lindgren funnel trap baited with ETOH and alphapinene, 1 mi. south of Ridge Rd., Carter County, Montana, 8 June to 20 July 2012, by Ivie and Foley (MTEC).
Fig. 2 in The Bark-Gnawing Beetles of Montana, USA (Coleoptera: Trogossitidae, Peltidae, and Lophocateridae), Including New Substantial Distributional Records for Tenebroides collaris (Sturm)
Fig. 2. Distribution of 12 species of bark-gnawing beetles by county in Montana.A) Calitys scabra, B) Corticotomus caviceps, C) Temnoscheila chlorodia, D) Tenebroides collaris, E) Tenebroides corticalis, F) Tenebroides crassicornis, G) Tenebroides occidentalis, H) Tenebroides sinuatus, I) Peltis fraterna, J) Peltis pippingskoeldi, K) Peltis septentrionalis, L) Eronyxa angusta.
Fig. 2 in Rare or Simply Overlooked? New Records of Pediacus ater Grouvelle, 1897 from the Philippines, with Notes on Phenology and Diversity of its Flat Bark Beetle Fauna (Coleoptera: Cucujidae)
Fig. 2. Phenology of Pediacus ater adult beetles based on literature data and new records from the Philippines
Fig. 1. Pediacus from the Philippines. P in Rare or Simply Overlooked? New Records of Pediacus ater Grouvelle, 1897 from the Philippines, with Notes on Phenology and Diversity of its Flat Bark Beetle Fauna (Coleoptera: Cucujidae)
Fig. 1. Pediacus from the Philippines. P. ater: a) Specimen from Lanao del Sur Province, Mindanao Island, b) Specimen from Cotabato Province, Mindanao Island, c) Specimen from Negros Oriental Province, Negros Island; photo credit: M. Michalski. P. australis: d) Specimen from Mountain Province, Luzon Island; photo credit: A. Ślipiński. Scale bar = 1 mm.
FIGURE 2. Salzmannia arborea. A. Vegetative branch. B. Bark. C. Infructescence. D in Taxonomic notes on Chiococca and Salzmannia (Rubiaceae, Chiococceae) in northeastern Brazil, with a new combination and a new species
FIGURE 2. Salzmannia arborea. A. Vegetative branch. B. Bark. C. Infructescence. D. Apical bud with resinous exudate, indicated by arrow. (From J.G. Jardim & J.L. Paixão 6458). Photos by Jomar Jardim.
FIGURE 4. Eschweilera rotundicarpa. A. Bark showing dark-cream colored lenticels. B. Leaf blade showing adaxial surface. C in Two New Species of Eschweilera (Lecythidaceae) from rainforest on the Caribbean slope of Panama
FIGURE 4. Eschweilera rotundicarpa. A. Bark showing dark-cream colored lenticels. B. Leaf blade showing adaxial surface. C. Old bark, showing slight depressions where irregular plates were shed (= scallops). D. Leaf blade showing abaxial surface. Vouchered by Batista et al. 1268 [A], Batista et al. 1661 [B, C, D]. Photos by J. Batista.
FIGURE 4. Ocotea granulosa. A. bark, B in Two New Species of Lauraceae from Ecuador
FIGURE 4. Ocotea granulosa. A. bark, B. underside of the leaf (note the amorphous granular excretions) (scale bar = 1.4 cm), C. base of the underside of the lamina (scale bar = 1.8 cm), and D. habit, E. flower (scale bar = 1 mm). Images from type collection (Palacios 17235).
FIGURE 2. A, B. Vaccinium cebuense. A. Stem showing peeling bark. B. Obico 801 in Taxonomic novelties from Cebu: a new species of Vaccinium (Ericaceae) and a new record of Phaius (Orchidaceae) for the Philippines
FIGURE 2. A, B. Vaccinium cebuense. A. Stem showing peeling bark. B. Obico 801. Photographs by V.B. Salares.
FIGURE 6. Mezilaurus sessiliflora P.L.R.Moraes &Vergne. A. Trunk with fissured bark. B. Branch with inflorescences and immature fruit. C in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 6. Mezilaurus sessiliflora P.L.R.Moraes &Vergne. A. Trunk with fissured bark. B. Branch with inflorescences and immature fruit. C. Detail of sessile flowers. D. Fruits in final stage of development. Photographs by P.L.R. de Moraes (A, B, D) and T.A. Pontes (C).
FIGURE 1. Ozothamnus filifolius, A. flowering heads, B. involucral bract, C. young stem surface, D. bark, E. leaf tip, F in Two new species of Ozothamnus (Asteraceae: Gnaphalieae) from Australia
FIGURE 1. Ozothamnus filifolius, A. flowering heads, B. involucral bract, C. young stem surface, D. bark, E. leaf tip, F. abaxial leaf side hidden by tightly revolute leaf margins (J.R. Maconochie 778, PERTH).
FIGURE 3. Ozothamnus vespertinus, A. flowering heads, B. involucral bract, C. young stem surface with green ridges from decurrent leaf tissue, D. bark, E. adaxial leaf side, F in Two new species of Ozothamnus (Asteraceae: Gnaphalieae) from Australia
FIGURE 3. Ozothamnus vespertinus, A. flowering heads, B. involucral bract, C. young stem surface with green ridges from decurrent leaf tissue, D. bark, E. adaxial leaf side, F. abaxial leaf side (A. Crawford 1620, PERTH).
FIGURE 21. Pouteria salicifolia. A. Habit. B. Bark. C. Slash. D in Native Species of Sapotaceae Juss. in Paraná, Brazil
FIGURE 21. Pouteria salicifolia. A. Habit. B. Bark. C. Slash. D. Abaxial surface of the leaf. E. Flower, longitudinal section. F. Adaxial surface of the corolla and detail of the ciliate margin. G. Immature fruit. H. Stem with flower. I. Detail of the venation. (A–D without voucher; E–F, H–I from J.M. Silva 2141; G from G. Felitto 898) (ov: ovary; st: stamen; stm: staminode).
FIGURE 18. Pouteria glomerata. A. Habit. B. Bark. C. Slash. D in Native Species of Sapotaceae Juss. in Paraná, Brazil
FIGURE 18. Pouteria glomerata. A. Habit. B. Bark. C. Slash. D. Abaxial surface of the leaf. E. Flower, longitudinal section. F. Adaxial surface of the corolla. G. Lateral and frontal view of the seed. H. Fruit. I. Stem with flower. J. Detail of the indumentum; K. Detail of the stem indumentum. (A–D, G–H, K from R.R. Völtz 1524; E–F, J from J.M. Margarido 14; I from G.G. Hatschbach 15813) (ov: ovary; sc: seed scar; st: stamen; stm: staminode).
FIGURE 23. Pouteria venosa. A. Habit. B. Bark. C. Slash. D in Native Species of Sapotaceae Juss. in Paraná, Brazil
FIGURE 23. Pouteria venosa. A. Habit. B. Bark. C. Slash. D. Abaxial surface of the leaf. E. Flower, longitudinal section. F. Adaxial surface of the corolla and detail of the papillose margin. G. Lateral and frontal view of the seed. H. Fruit. I. Stem with flower. J. Detail of the venation. K. Flower in vivo. (A–F, K from R.R. Völtz 1309; G–H from R.R. Völtz 1451; I from G.G. Hatschbach 19431; J from G.G. Hatschbach 19616) (ov: ovary; sc: seed scar; st: stamen; stm: staminode).
FIGURE 17. Pouteria gardneri. A. Bark. B. Slash. C in Native Species of Sapotaceae Juss. in Paraná, Brazil
FIGURE 17. Pouteria gardneri. A. Bark. B. Slash. C. Abaxial surface of the leaf. D. Flower, longitudinal section. E. Adaxial surface of the corolla. F. Inflorescences. G. Stem with flower. H. Detail of the venation. (A–H from R.R. Völtz 1113) (ov: ovary; st: stamen; stm: staminode).
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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.