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FIGURE 4. Paramphimonhystrella glossalga Scanning electron micrographs. A in Four new Paramphimonhystrella species (Nematoda: Xyalidae) from the continental slope of New Zealand
FIGURE 4. Paramphimonhystrella glossalga Scanning electron micrographs. A: Lateral view of male head; B: close-up view of male lips. Scale bar: A = 10 µm; B = 5 µm.
FIGURE 3. Paramphimonmhystrella glossalga Light micrographs. A in Four new Paramphimonhystrella species (Nematoda: Xyalidae) from the continental slope of New Zealand
FIGURE 3. Paramphimonmhystrella glossalga Light micrographs. A: Lateral view of male head, showing lips, buccal cavity, and cuticularised outline of amphid; B: ventral view of female head showing lips, buccal cavity, and ingested material; C: lefthand side view of vulva, showing hammer-shaped cuticularised piece; D: gut content of male, showing single-celled eukaryotic organism. Arrow shows position of vulva opening. Scale bar = 10 µm.
FIGURE 3. Ephesiella australiensis from several localities, scanning electron micrographs. A–C in Revision of the Australian Sphaerodoridae (Annelida) including the description of four new species
FIGURE 3. Ephesiella australiensis from several localities, scanning electron micrographs. A–C: Arafura Sea, NTM W.20663, D–F: Queensland, AM W.42693, G–L: New South Wales AM W.42688. Anterior end, showing head appendages and hooks on first chaetiger. B. Mid-body chaetigers, lateral view, showing microtubercles, macrotubercles and parapodial papillae. C. Chaetae mid-body segments. D. Posterior chaetigers, showing macrotubercles and parapodia. E. Mid-body parapodium, anterior view. F. Detail of chaetae mid-body parapodia. G. Anterior end, frontal view, showing a partially retracted prostomium and head appendages; hooks absent on first chaetiger. H. Posterior parapodia showing dorsal macrotubercles, microtubercles and papillae. I. Mid-body region, ventral view. J. Mid-body parapodium, dorsal view. K. Posterior chaetae. L. Detail posterior chaeta, with conspicuous distal tooth on shaft (arrow). Abbreviations: al, acicular lobe; la, lateral antenna; ma, median antenna; pa, palp; tc, tentacular cirrus; vc, ventral cirrus; 1st, parapodium first chaetiger.
FIGURE 1. Light micrographs. A–C. Ephesiella australiensis, holotype ZMH P.16773. A in Revision of the Australian Sphaerodoridae (Annelida) including the description of four new species
FIGURE 1. Light micrographs. A–C. Ephesiella australiensis, holotype ZMH P.16773. A. Anterior end, frontal view, showing head appendages and papillae. B. Mid-body macrotubercle, side view. C. Mid-body microtubercle, side view. D–I. Sphaerodoropsis exmouthensis, D, F–H, holotype ZMH P.16493, E, I, paratypes ZMH P.16494. D. Anterior end, lateral view, showing head appendages and papillae. E. Same, frontal view. F. Anterior chaetigers, side view, showing dorsal tubercles and parapodia. G. Chaetigers 6 and 7, side view, with digitiform copulatory organ ventral to ventral cirrus chaetiger 6. H. Chaetal fascicle, mid-chaetiger. I. Posterior chaetigers and pygidium, ventral view. Abbreviations: al, acicular lobe; co, copulatory organ; la, lateral antenna; ma, median antenna; mc, macrotubercle; pa, palp; tc, tentacular cirrus; vc, ventral cirrus; 1st, parapodium first chaetiger.
FIGURE 9. Sphaerodoropsis fauchaldi, NTM W.10206, scanning electron micrographs. A in Revision of the Australian Sphaerodoridae (Annelida) including the description of four new species
FIGURE 9. Sphaerodoropsis fauchaldi, NTM W.10206, scanning electron micrographs. A. Complete specimen, ventro-lateral view. B, Anterior end, ventral view. C. Detail anterior end and head appendages, ventral view. D. Chaetigers 9–5 (left to right), ventral side, with female inflated and porous ventral cirri (white arrows) in chaetigers 7–5. E. Same, opposite side, with inflated and porous ventral cirri (white arrows) in chaetigers 7–5 and oval tubercle (black arrow) on chaetiger 6. F. Parapodia, chaetigers 6–4, with 'copulatory organs'(arrows). G. Parapodia of chaetigers 8 (with normal ventral cirrus) and 7 (with copulatory organ), antero-lateral view. H. Detail of copulatory organ in chaetiger 6 with pores scattered on the surface. I. Parapodium chaetiger 8, anterior view. J. Chaetal fascicle, mid-body chaetiger. K. Chaetae chaetiger 5. L. Chaeta posterior chaetiger. Abbreviations: al, acicular lobe; co, copulatory organ; la, lateral antenna; ma, median antenna; pa, palp; tc, tentacular cirrus; vc, ventral cirrus.
FIGURE 8. Sphaerodoropsis exmouthensis, ZMH P.16995, scanning electron micrographs. A in Revision of the Australian Sphaerodoridae (Annelida) including the description of four new species
FIGURE 8. Sphaerodoropsis exmouthensis, ZMH P.16995, scanning electron micrographs. A. Whole specimen, dorsal view; anterior end on top. B. Detail of anterior end and head appendages. C. Mid-body parapodia and row of lateral macrotubercles, anterior view. D. Parapodium first chaetigers, anterior view. E. Chaeta mid-body chaetigers. F. Same. G. Chaeta posterior chaetiger. H. Posterior chaetiger and pygidium. Abbreviations: al, acicular lobe; la, lateral antenna; ma, median antenna; pa, palp; tc, tentacular cirrus; vc, ventral cirrus.
FIGURE 6. Onuphis rullieriana. Scanning electron micrographs. A in Onuphis and Aponuphis (Annelida: Onuphidae) from southwestern Europe, with the description of a new species
FIGURE 6. Onuphis rullieriana. Scanning electron micrographs. A, tridentate pseudocompound hook from the lower fascicle of chaetiger 1; B, tridentate pseudocompound hook from the middle of fascicle of chaetiger 1; C, detailed view of tip of pseudocompound hook from the lower fascicle of chaetiger 2; D, detailed view of tip of weakly tridentate pseudocompound hook from the middle fascicle of chaetiger 2; E, pectinate chaetae from chaetiger 6.
FIGURE 10. Aponuphis willsiei. Scanning electron micrographs. A in Onuphis and Aponuphis (Annelida: Onuphidae) from southwestern Europe, with the description of a new species
FIGURE 10. Aponuphis willsiei. Scanning electron micrographs. A, bidentate compound hooks of chaetiger 3; detailed view of bidentate pseudocompound hook of chaetiger 2; C, pectinate chaeta from chaetiger 15.
FIGURE 8. Glomerula pilosetosa, scanning electron micrographs. A in A taxonomic guide to the fanworms (Sabellidae, Annelida) of Lizard Island, Great Barrier Reef, Australia, including new species and new records
FIGURE 8. Glomerula pilosetosa, scanning electron micrographs. A. Anterior thoracic chaetigers and collar, ventral view; B. Neuropodial chaetigers 2–4 with single companion chaetae in chaetigers 3 and 4 (arrows); C. Anterior thoracic notochaetae, superior narrowly-hooded, inferior broadly-hooded; D. Anterior thoracic uncini with several rows of progressively shorter teeth above main fang, over most of its length; E. Companion chaetae, bent; F. Same, erect; G. Anterior abdominal chaetae narrowlyhooded; H. Posterior abdominal chaetae; I. Anterior abdominal uncini with several rows of progressively shorter teeth above main fang, over most of its length; J. Uncini from posterior chaetigers; K. Bilobed pygidium, lateral view.
FIGURE 2. Eunice laurillardi. Scanning electron micrographs. A in Rediscovery and redescription of Leodice laurillardi (Quatrefages, 1866) comb. nov. (Annelida: Eunicidae) — a rare European polychaete or just an overlooked species?
FIGURE 2. Eunice laurillardi. Scanning electron micrographs. A, anterior end, lateral view; B, detailed view of parapodium chaetiger 2 and 3; C, median chaetigers, lateral view; D, enlarged view of pygidium showing the anal cirri; E, detailed view of subacicular hook of parapodium chaetiger 30; F, detailed view of bidentate compound falciger of parapodium chaetiger 2; G, detailed view of pectinate chaeta of parapodium chaetiger 2; H, bundle of pectinate chaetae of parapodium chaetiger 6; I, bidentate compound falciger of parapodium chaetiger 40; J, detailed view of the aciculae of parapodium chaetiger 10.
FIGURE 7. Onuphis eremita. Scanning electron micrographs. A in Hidden diversity within the polychaete Onuphis eremita sensu lato (Annelida: Onuphidae) — redescription of O. eremita Audouin & Milne-Edwards, 1833 and reinstatement of Onuphis pancerii Claparède, 1868
FIGURE 7. Onuphis eremita. Scanning electron micrographs. A, detailed view of the ectosymbiont peritrich Epistylis sp. on anterior parapodia; B, intracoelomic developing oocytes; C, detailed view of immature oocyte with nurse cells attached; D–E, spermatozoa protruding from openings of the body wall; F, detailed view of spermatozoon, lateral view; G, detailed view of spermatozoon, frontal view. H–I, detailed view of spermatozoon, posterior view; a, acrosome; c, corona of cilia; f, flagellum; m, mitochondria; n, nucleus; nc, nurse cells; o, oocyte; p, peduncle; r, ring.
FIGURE 7. Scanning electron micrographs. A–B in A taxonomic revision of the neotropical termite genus Diversitermes (Isoptera: Termitidae: Nasutitermitinae)
FIGURE 7. Scanning electron micrographs. A–B, head of the major soldier of Diversitermes tiapuan, sp.n; C–D, head of the major soldier of D. diversimiles. E–F, right mandible and molar plate of major worker (3rd instar) of D. tiapuan, sp. n. Figs. A– D in the same scale. Soldier heads in Figs. B and D wrinkled due to drying.
FIGURE 3. Scanning electron micrographs. Hammerschmidtiella keeneyi n in New species of Hammerschmidtiella Chitwood, 1932, and Blattophila Cobb, 1920, and new geographical records for Severianoia annamensis Van Luc & Spiridonov, 1993 (Nematoda: Oxyurida: Thelastomatoidea) from Cockroaches (Insecta: Blattaria) in Ohio and Florida, U. S. A.
FIGURE 3. Scanning electron micrographs. Hammerschmidtiella keeneyi n. sp. A. Female anterior end, lateral. B. Male, tail region, ventral. C, D. En face, female. Blattophila peregrinata n. sp. E. Female, en face. F. Male, lateral view showing lateral alae. G. Eggs in utero. H. Egg showing operculum.
FIGURE 3. Draconema ophicephalum, Scanning Electron Micrographs. A in Two known and one new species of Draconematidae and Epsilonematidae (Nematoda, Desmodorida) from the White Sea, North Russia
FIGURE 3. Draconema ophicephalum, Scanning Electron Micrographs. A: male, entire; B: female head, dorsal view with cephalic adhesive tubes; C: male head, apical view; D: male labial region; E: posterior adhesive tubes; F: female, vulva region. Scale bars: A 100 Μm; B, C, E, F 10 Μm; D 3 Μm.
Fig. 70. Proteophylus grevilleae. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 70. Proteophylus grevilleae. Scanning electron micrographs. A. Dorsal view of head and pronotum. B. Detail of lepidote setae on pronotum. C. Thoracic pleuron, showing lepidote setae and metathoracic spiracle opening, metathoracic scent-gland auricle, and evaporatory area. D. Dorsolateral view of pygophore. E. Frontal view of pretarsus. F. Ventral view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; phl, phallotheca; pul, pulvillus; rp, right paramere; sgev, scent gland evaporatory area.
Fig. 57. Myoporophylus grossi. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 57. Myoporophylus grossi. Scanning electron micrographs. A. Dorsofrontal view of head and pronotum. B. Detail of pronotal setae. C. Dorsal view of pygophore. D. Frontal view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; phl, phallotheca; pul, pulvillus.
Fig. 45. Halophylus tecticornii. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 45. Halophylus tecticornii. Scanning electron micrographs. A. Dorsofrontal view of head and pronotum. B. Lateral view of head and pronotum. C. Detail of pronotal setae. D. Dorsolateral view of pygophore. E. Ventral view of pygophore showing field of heavy setae. F. Dorsal view of pretarsus. Abbreviations: lp, left paramere; pe, parempodium; pgsp, phygophoral spines; phl, phallotheca; prc, proctiger; pul, pulvillus.
Fig. 31. Grandivesica cassisi. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 31. Grandivesica cassisi. Scanning electron micrographs. A. Lateral view of head, showing structural details common to most Australian Cremnorrhinina. B. Detail of pronotal setae. C. Thoracic pleuron, showing metathoracic spiracle opening, metathoracic scent-gland auricle, and evaporatory area. D. Lateroventral view of pygophore. E. Lateroventral view of pretarsus. F. Frontal view of pretarsus. Abbreviations: lp, left paramere; mttsp, metathoracic spiracle; pe, parempodium; phl, phallotheca; pul, pulvillus; sgaur, scent gland auricle; sgev, scent gland evaporatory area.
Fig. 81. Spinivesica eremophiloides. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 81. Spinivesica eremophiloides. Scanning electron micrographs. A. Lateral view of specimen. B. Lateral view of head and prothorax, showing typical structure of head in Australian Cremnorrhinina. C. Enlarged view of prothorax. D. Detail of pronotal setae. E. Frontoventral view of pretarsus. F. Frontal view of pretarsus. Abbreviations: pe, parempodium; pul, pulvillus.
Fig. 64. Omnivoriphylus mangaensis. Scanning electron micrographs. A in Nineteen new genera and 82 new species of Cremnorrhinina from Australia, including analyses of host relationships and distributions (Insecta: Hemiptera: Miridae: Phylininae: Cremnorrhinini)
Fig. 64. Omnivoriphylus mangaensis. Scanning electron micrographs. A. Lateral view of head, showing structural details common to most Australian Cremnorrhinina. B. Detail of pronotal setae. C. Enlarged view of pronotal setae. D. Thoracic pleuron, showing metathoracic spiracle opening, metathoracic scentgland auricle, and evaporatory area. E. Frontal view of pretarsus. F. Frontal view of pretarsus. Abbreviations: mttsp, metathoracic spiracle; pe, parempodium; pul, pulvillus; sgaur, scent gland auricle; sgev, scent gland evaporatory area.
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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.