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Fig. 7. Aculodes capillarisi n in New Species Of Aculodes (Acari: Eriophyoidea) From Grasses In Poland
Fig. 7. Aculodes capillarisi n. sp.: L1, L2: legs I and II of a female, CGM – coxigenital region of a male, DO – dorsal microtubercles of a male
Fig 1b in Efficacy of Doob grass, Cynodon dactylon against white spot syndrome virus in Penaeus monodon
Fig 1b: GCMS chromatogram of Cynodon dactylon extract showing fraction peaks at higher (85 0C) temperature. The red arrows indicate the disappearance of active ingredient peak after heating at 85 0C which indicates the non-effectiveness of feed produced above 85 0C.
Figure 6 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 6. Jarava plumosa global distribution map, with country- or regional-level shading, taken and modified from POWO (2020).
Figure 2 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 2. Agrostis capillaris global distribution map, with country- or regional-level shading, taken and modified from POWO (2020).
Figure 5 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 5. Jarava plumosa; A, whole plant; B, inflorescence close-up; C, floret. Image A of R.J. Soreng et al. ZA-30 (US), B and C of R.J. Soreng et al. ZA-30 (PRE).
Figure 4 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 4. Festuca rubra global distribution map, with country- or regional-level shading, taken and modified from POWO (2020).
Figure 3 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 3. Festuca rubra; A, whole plant; B, lateral-tending rhizome covered in cataphylls; C, leaf sheath and junction with blade of a tiller showing strigose hairs; D, spikelet; E, base of palea with lemma removed to reveal the ovary and stamens; F, close-up of glabrous ovary apex. Images A and B of S.P. Sylvester et al. 3455 (US), C–F of S.P. Sylvester et al. 3455 (PRE).
Figs. 1-6 in Description of a grass feeding whitefly of the genus Tetraleurodes (Hemiptera: Aleyrodidae) from the Indo-Myanmar border
Figs. 1-6. Tetraleurodes champaiensis sp. nov.: 1, puparium, dorsal and ventral views. 2, margin. 3, longitudinal molting suture and cephalic setae. 4, abdominal submedian pockets and depression. 5, vasiform orifice. 6, prothoracic leg and antenna.
Figs. 7-12 in Description of a grass feeding whitefly of the genus Tetraleurodes (Hemiptera: Aleyrodidae) from the Indo-Myanmar border
Figs. 7-12. Tetraleurodes champaiensis sp. nov.: SEM microphotographs. 7, puparium, dorsal view. 8, margin, thoracic tracheal pore area. 9, posterior abdominal area, vasiform orifice and lingula. 10, puparium, ventral view. 11, geminate pores. 12, caudal tracheal fold, ventral setae.
Рис. 1. Географическое поΛожение Норского заповеΑника (А) и картосхема распоΛожения на его территории (Б) учетных пΛощаΑок с фитоценозами (L_1–L_7) на Αвух мониторинговых станциях (I–II). I — МаΛьцевская: L_1 — березняк с участием осины и Λиственницы рябинниковый вейниково-разнотравный; L_2 — осиново-беΛоберезовый рябинниковый вейниково-разнотравный Λес; L_3 — Λиственничник с участием березы пΛоскоΛистной осоково-вейниковый с разнотравьем; L_4 — беΛоберезово-Λиственничный с примесью осины роΑоΑенΑроновый бруснично-осоковый Λес; L_5 — закустаренный, преимущественно тавоΛгой ивоΛистной, разнотравно-вейниковый Λуг. II — Антоновская: L_6 — Λиственничник роΑоΑенΑроново-брусничный; L_7 — Λиственнично-беΛоберезовый с примесью пихты и еΛи закустаренный разнотравно-вейниковый Λес (коΑ типа местообитания соответствуют таковому в табΛ. 1 и 3 и на рис. 2) Fig. 1. Geographical location of the Norsky Nature Reserve (A) and the map (B) of registration sites with phytocenoses (L_1–L_7) at two monitoring stations (I–II). I — Maltsevskaya: L_1 — birch forest with aspen and larch, fieldfare reed-forb; L_2 — aspen-white-birch, fieldfare reed-forb forest; L_3 — larch forest with flat-leaved sedge-reed birch with forbs; L_4 — white-birch-larch with an admixture of aspen rhododendron lingonberry-sedge forest; L_5 — bushy, mostly meadowsweet, forb-reed grass meadow. II — Antonovskaya: L_6 — rhododendron-cowberry larch forest; L_7 — larch-white-birch with fir and spruce, shrubby forb-reed grass forest (the code of the habitat type corresponds to that in Tables 1 and 3 and in Fig. 2) in Structure and dynamics of the taxocenes of shrews in different habitats of the Norsky nature reserve
Рис. 1. Географическое поΛожение Норского заповеΑника (А) и картосхема распоΛожения на его территории (Б) учетных пΛощаΑок с фитоценозами (L_1–L_7) на Αвух мониторинговых станциях (I–II). I — МаΛьцевская: L_1 — березняк с участием осины и Λиственницы рябинниковый вейниково-разнотравный; L_2 — осиново-беΛоберезовый рябинниковый вейниково-разнотравный Λес; L_3 — Λиственничник с участием березы пΛоскоΛистной осоково-вейниковый с разнотравьем; L_4 — беΛоберезово-Λиственничный с примесью осины роΑоΑенΑроновый бруснично-осоковый Λес; L_5 — закустаренный, преимущественно тавоΛгой ивоΛистной, разнотравно-вейниковый Λуг. II — Антоновская: L_6 — Λиственничник роΑоΑенΑроново-брусничный; L_7 — Λиственнично-беΛоберезовый с примесью пихты и еΛи закустаренный разнотравно-вейниковый Λес (коΑ типа местообитания соответствуют таковому в табΛ. 1 и 3 и на рис. 2) Fig. 1. Geographical location of the Norsky Nature Reserve (A) and the map (B) of registration sites with phytocenoses (L_1–L_7) at two monitoring stations (I–II). I — Maltsevskaya: L_1 — birch forest with aspen and larch, fieldfare reed-forb; L_2 — aspen-white-birch, fieldfare reed-forb forest; L_3 — larch forest with flat-leaved sedge-reed birch with forbs; L_4 — white-birch-larch with an admixture of aspen rhododendron lingonberry-sedge forest; L_5 — bushy, mostly meadowsweet, forb-reed grass meadow. II — Antonovskaya: L_6 — rhododendron-cowberry larch forest; L_7 — larch-white-birch with fir and spruce, shrubby forb-reed grass forest (the code of the habitat type corresponds to that in Tables 1 and 3 and in Fig. 2)
Рис. 4. Гистограммы распреΔеΛения гнезΔ из разных попуΛяций по биотопам (по Δоминирующему растению): 1 — крапива; 2 — вейник; 3 — поΛынь; 4 — поΛынь с разнотравьем; 5 — тростник; 6 — оΛьха и ΛеспеΔеца; 7 — спирея; 8 — разнотравье Fig. 4. Histograms of the nest distribution from different populations by biotopes (by the dominant plant): 1 — nettle; 2 — reed grass; 3 — wormwood; 4 — wormwood with herbs; 5 — reed; 6 — alder and lespedets; 7 — spirea; 8 — herbs in in the Ussuri region
Рис. 4. Гистограммы распреΔеΛения гнезΔ из разных попуΛяций по биотопам (по Δоминирующему растению): 1 — крапива; 2 — вейник; 3 — поΛынь; 4 — поΛынь с разнотравьем; 5 — тростник; 6 — оΛьха и ΛеспеΔеца; 7 — спирея; 8 — разнотравье Fig. 4. Histograms of the nest distribution from different populations by biotopes (by the dominant plant): 1 — nettle; 2 — reed grass; 3 — wormwood; 4 — wormwood with herbs; 5 — reed; 6 — alder and lespedets; 7 — spirea; 8 — herbs
Fig. 6. Meseres corlissi after protargol impregnation. A, B in New record of five ciliate species from temporary ponds on a grass lawn
Fig. 6. Meseres corlissi after protargol impregnation. A, B. Ventral (A) and dorsal (B) view showing ciliary pattern, oral apparatus, and nuclear apparatus. C. Dorsal view showing elongated somatic cilia. D. Nuclear apparatus. AM, adoral membranelles; K1, somatic kinety 1; Ma, macronucleus; Mi, micronucleus; PM, paroral membrane; VM, ventral membranelles. Scale bars: 30 μm.
Fig. 2 in New record of five ciliate species from temporary ponds on a grass lawn
Fig. 2. Pseudomicrothorax agilis in life (A-D) and after protargol impregnation (E-I). A, B. Right side view of the same specimen showing conspicuous cortical ridges, contractile vacuole, macronucleus, and adoral membranelle 3. C. Ladder/web structure on furrow. D, I. Extrusomes, insert in D shows extruded form; non-extruded ones in D and I. E, F. Right and left side view of a representative specimen. G. Nasse kinetosomes and somatic kinety 1. H. Adoral membranelles 1-3 and oral primordium. CV, contractile vacuole; E, extrusomes; K1, K12, somatic kinety 1, 12; Ma, macronucleus; Mi, micronucleus; M1-3, adoral membranelles 1-3; NK, nasse kinetosomes; OP, oral primordium. Scale bars: 30 μm.
Fig. 4 in New record of five ciliate species from temporary ponds on a grass lawn
Fig. 4. Cyrtolophosis mucicola in life (A-C), after silver carbonate (D), and protargol impregnation (E-J). A. Cells with hyaline dwelling-tubes at low magnification; arrows indicate C. mucicola. B. Right side view shows the body shape and location of a contractile vacuole. C. A very late divider. D. Ventral view showing the paroral and the oblique kinety anterior to the adoral organelles (arrow). E, F. Ventral (E) and dorsal (F) view showing the somatic ciliature and nuclear apparatus, arrow denotes the oblique kinety anterior to the adoral organelles. G. Anterior body portion showing the elongated anterior cilia (arrow). H, I. Nuclear apparatus. J. Mid-divider with newly formed paroral and adoral organelles of the opisthe. CV, contractile vacuole; Ma, macronucleus; Mi, micronucleus; Mo, Maryna ovata. Scale bars: A = 100 μm; B-E, J = 20 μm.
Fig. 3 in New record of five ciliate species from temporary ponds on a grass lawn
Fig. 3. Nassula exigua after protargol impregnation of ventral (A, C-E) and dorsal (B) views showing ciliary pattern, nassulid organelles, pharyngeal rods, and nuclear apparatus. A-D. Variable position of the nuclear apparatus. Ma, macronucleus; Mi, micronucleus; NO, nassulid organelles; PR, pharyngeal rods. Scale bars: 20 μm.
Figure 3 in Nomenclatural changes in the grass-feeding Mexican leafhopper genus Cocrassana Blocker & Larsen (Hemiptera: Cicadellidae: Deltocephalinae: Athysanini)
Figure 3. Cocrassana sexvarus (DeLong) comb. nov., abdomens and male genitalia of (A-C) holotype of Chlorotettix sexvarus DeLong and (D-F) holotype of Cocrassana riepmai Blocker & Larsen. (A and D) Dorsal aspect of abdomen. (B and E) Pygofer and processes, ventral aspect. (C and F) Style, ventral aspect.
Figure 2 in Nomenclatural changes in the grass-feeding Mexican leafhopper genus Cocrassana Blocker & Larsen (Hemiptera: Cicadellidae: Deltocephalinae: Athysanini)
Figure 2. Cocrassana sexvarus (DeLong) comb. nov., male holotype of junior synonym C. riepmai Blocker & Larsen. (A) Lateral habitus. (B) Dorsal habitus. (C) Labels and microvial of genitalia of specimen.
Fig. 3 in Dynamics of the restoration of physical trails in the grass-cutting ant Atta capiguara (Hymenoptera, Formicidae)
Fig. 3. Restoration of the physical trails of nest 2. First and last day of survey of trail 1 (A and B, respectively), 2 (C and D, respectively) and 3 (E and F, respectively). The lines B, D, F show the location where the trail was restored.
Fig. 1 in Dynamics of the restoration of physical trails in the grass-cutting ant Atta capiguara (Hymenoptera, Formicidae)
Fig. 1. Percentage variation in the mean length of grass blades for the experimental block (continuous lines) and control block (dashed lines) of each manipulated trail of Nest 1 (A) and 2 (B). The lines of same thickness correspond to the same trail.
Fig. 2 in Dynamics of the restoration of physical trails in the grass-cutting ant Atta capiguara (Hymenoptera, Formicidae)
Fig. 2. Restoration of the physical trails of nest 1. First and last day of survey of trail 1 (A and B, respectively), 2 (C and D, respectively) and 3 (E and F, respectively). The lines on B, D, F show the location where the trail was restored.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.