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Fig. 6 in Taxonomic Notes and New Distribution and Host Plant Records for Sawflies and Woodwasps (Hymenoptera, Symphyta) of Japan IX
Fig. 6.ɹPericlista erythrogramma, final feeding-instar larva, 19. V. 2011 (A, C), P. shiritakensis, final feedinginstar larva, 12. V. 2019 (B, D) and mature larva, 15. V. 2019 (E). Photographed in Nakagawa by S. Ibuki.
Fig. 2 in Taxonomic Notes and New Distribution and Host Plant Records for Sawflies and Woodwasps (Hymenoptera, Symphyta) of Japan IX
Fig. 2.ɹOnycholyda viriditibialis (A–C) and O. esakii (D, E), photographed in Kagamiganaru by A. Shinohara on September 2, 2023. — A, Larval abode (arrowed), upper surface; B, same abode (arrowed), under surface; C, late-instar larva in abode with frass; D, two larval abodes (arrowed), under surface; E, close-up of larval abodes.
Fig. 3 in Taxonomic Notes and New Distribution and Host Plant Records for Sawflies and Woodwasps (Hymenoptera, Symphyta) of Japan IX
Fig. 3.ɹPamphilius komonensis on A. palmatum (A–D) and A. pictum subsp. dissectum f. connivens (E–H) photographed in Nakagawa (G, H in Tsukuba) by S. Ibuki (A–E) and A. Shinohara (E–H). — A, Eggshell (upper arrow) and larval abode of early-instar larva (lower arrow), June 5, 2023; B, eggshell, May 29, 2023; C, earlyinstar larva beginning to make abode, May 29, 2023; D, middle-instar larva, June 27, 2016; E, F, larval abodes (arrowed), June 8, 2023; G, late-instar larva, June 11, 2023; H, mature larva, June 21, 2023.
Fig. 1 in Taxonomic Notes and New Distribution and Host Plant Records for Sawflies and Woodwasps (Hymenoptera, Symphyta) of Japan IX
Fig. 1.ɹNeurotoma atrata on Q. serrata, photographed in Nakagawa by S. Ibuki in 2018 and 2019. — A, Nest containing three larvae, seen from above, May 3, 2018 (deformed after three days of rearing in a container); B, inside of nest, seen from below, remains of two egg shells arrowed, April 30, 2018; C–E, middle instar larva, April 30, 2018 (C, E) and May 8, 2019 (D); F–H, late instar larva, May 2 (F), May 3 (G) and May 4, 2018 (H); I, J, mature larva, May 7, 2018.
Fig. 1 in Revision Of Invasion History, Distributional Patterns, And New Records Of Corophiidae (Crustacea: Amphipoda) In Hungary
Fig. 1. Records of Chelicorophium sowinskyi: a = 1917–1960, b = 1991–2009; C. curvispinum: c = 1917–1960, d = 1991–2009; e = C. maeoticum, f = C. robustum in Hungary. Legends: A = River Danube, B = River Tisza, C = River Dráva, D = River Bodrog, E = River Körös, F = canal network of Kiskunság, G = canal network of Nagykunság, H = Lake Balaton
Figure 1 in New records and updated distribution of the endemic Balkan rock lizards Dinarolacerta spp. in Montenegro
Figure 1. Updated distribution of D. mosorensis (circles) and D. montenegrina (triangles) in Montenegro (locality numbers explained in Appendix I). Solid symbols – new records; open symbols - literature data.
Figure 2 in New Data On Distribution Of Two Palaearctic Leptaleus Laferté-Sénectère, 1849 (Coleoptera: Anthicidae) Species With New Records And A Correction
Figure 2. Leptaleus chaudoiri (Kolenati, 1846), male aedeagus. A – specimen from Cyprus, 'CYP RUS TROODOS Mts. Dhiarizos Riv., on light eastAgios Georgios leg. PREISS', 18 VII 99; B – specimen from 'Greece, Rodos, Koljmbia, 18– 25.06.2001 Leg. L. Fancello'; C – specimen from Iran, 'IRAN, Gilan Province S Astara, 5 km W Lavandvil: Koteh Komeh, 180 m 38°18'26" N, 048°47'14" E 10.10.2011, leg. Frisch'; D – specimen from Nepal, 'NEPAL, Prov. Bheri 28°38'23" N, 81°17'14" E Chisapani, KarnaliUfer 17.VI.2005; 180 m leg.: J. Weipert'; E – specimen from Pakistan, Islamabad sect. 7 (see studied material).
FIGURE 5 in INTRASPECIFIC VARIATION IN ACOUSTIC TRAITS AND BODY SIZE, AND NEW DISTRIBUTIONAL RECORDS FOR PSEUDOPALUDICOLA GIARETTAI CARVALHO, 2012 (ANURA, LEPTODACTYLIDAE, LEIUPERINAE): IMPLICATIONS FOR ITS CONGENERIC DIAGNOSIS
FIGURE 5: Scatterplot of the first two principal component scores (PCs) from acoustic traits of six populations of P. giarettai. Yellow (Curvelo; type locality); purple (Chapada Gaúcha); green (Coromandel); red (Buritis); blue (Buritizeiro); pink (Unaí).
FIGURE 3 in INTRASPECIFIC VARIATION IN ACOUSTIC TRAITS AND BODY SIZE, AND NEW DISTRIBUTIONAL RECORDS FOR PSEUDOPALUDICOLA GIARETTAI CARVALHO, 2012 (ANURA, LEPTODACTYLIDAE, LEIUPERINAE): IMPLICATIONS FOR ITS CONGENERIC DIAGNOSIS
FIGURE 3: Advertisement call of P. giarettai from the type locality (Curvelo, Minas Gerais). From top to bottom: oscillogram section (ca. 1.6 s) depicting calling pattern, waveform, spectrogram, and power spectrum of the second advertisement from oscillogram section. Sound energy with relative amplitude below 40 dB was clipped to zero dB to remove background noise from power spectrum.
FIGURE 2 in INTRASPECIFIC VARIATION IN ACOUSTIC TRAITS AND BODY SIZE, AND NEW DISTRIBUTIONAL RECORDS FOR PSEUDOPALUDICOLA GIARETTAI CARVALHO, 2012 (ANURA, LEPTODACTYLIDAE, LEIUPERINAE): IMPLICATIONS FOR ITS CONGENERIC DIAGNOSIS
FIGURE 2: Adult specimens of P. giarettai in life from: Above – Parque Nacional Grande Sertão Veredas, Chapada Gaúcha, Minas Gerais (voucher male AAG-UFU 1920: CRC = 14.6 mm); Below – Coromandel (female AAG-UFU 3566: CRC 18.8 mm).
FIGURE 4 in INTRASPECIFIC VARIATION IN ACOUSTIC TRAITS AND BODY SIZE, AND NEW DISTRIBUTIONAL RECORDS FOR PSEUDOPALUDICOLA GIARETTAI CARVALHO, 2012 (ANURA, LEPTODACTYLIDAE, LEIUPERINAE): IMPLICATIONS FOR ITS CONGENERIC DIAGNOSIS
FIGURE 4: Advertisement call of P. giarettai from the Parque Nacional Grande Sertão Veredas (Chapada Gaúcha, Minas Gerais). From top to bottom: oscillogram section (ca. 1.6 s) depicting calling pattern, waveform, spectrogram, and power spectrum of the second advertisement from oscillogram section. Sound energy with relative amplitude below 40 dB was clipped to zero dB to remove background noise from power spectrum.
FIGURE 6 in INTRASPECIFIC VARIATION IN ACOUSTIC TRAITS AND BODY SIZE, AND NEW DISTRIBUTIONAL RECORDS FOR PSEUDOPALUDICOLA GIARETTAI CARVALHO, 2012 (ANURA, LEPTODACTYLIDAE, LEIUPERINAE): IMPLICATIONS FOR ITS CONGENERIC DIAGNOSIS
FIGURE 6: Typical breeding habitat of P. giarettai: a permanent pond associated with a Buriti palm grove marsh at the Parque Nacional Grande Sertão Veredas (Municipality of Chapada Gaúcha), northwestern Minas Gerais, southeastern Brazil.
FIGURE 1 in INTRASPECIFIC VARIATION IN ACOUSTIC TRAITS AND BODY SIZE, AND NEW DISTRIBUTIONAL RECORDS FOR PSEUDOPALUDICOLA GIARETTAI CARVALHO, 2012 (ANURA, LEPTODACTYLIDAE, LEIUPERINAE): IMPLICATIONS FOR ITS CONGENERIC DIAGNOSIS
FIGURE 1: Distribution map of Pseudopaludicola giarettai. Star (Type locality: Curvelo, MG); Circles (localities in Minas Gerais): 1 (Buritis), 2 (Chapada Gaúcha), 3 (Unaí), 4 (Buritizeiro), 5 (Coromandel), 6 (Conceição do Mato Dentro; Pimenta et al., 2014), 7 (Muriaé; Santana et al., 2009); Triangle (Flores de Goiás, GO). MG = Minas Gerais; GO = Goiás.
Fig. 1 in New records for distribution of Phytoliriomyza melampyga (Loew, 1869) (Diptera: Agromyzidae) and its host plants in Bulgaria
Fig. 1. Fully developed mine of Phytoliriomyza melampyga on a leaf of Impatiens glandulifera; A – dorsal, B – ventral side.
Figure 2 in New distributional records of four amphidromous gobies (Gobioidei: Sicydiinae) in continental Vietnam
Figure 2. – Preserved specimens collected during the surveys near Da Nang, Vietnam: (A) Sicyopterus lagocephalus female (73.2 mm SL, HNUE-F00295), (B) Sicyopus zosterophorus male (39.8 mm SL, HNUE-F00296), (C) S. zosterophorus female (43.4 mm SL, HNUE-F00296), (D) Stiphodon atropurpureus male (34.5 mm SL, HNUE-F00298), (E) S. atropurpureus female (35.8 mm SL, HNUE-F00298), (F) Stiphodon percnopterygionus male (21.7 mm SL, HNUE-F00301).
Figure 4 in New distributional records of three deepwater cardinalfishes Epigonus angustifrons, E. denticulatus, and E. exodon (Perciformes: Epigonidae) in the South Indian Ocean
Figure 4. – Epigonus exodon, NTUM 13370, south of Mayotte, western South Indian Ocean. A: Fresh specimen; B: After fixation.
Figure 2 in New distributional records of three deepwater cardinalfishes Epigonus angustifrons, E. denticulatus, and E. exodon (Perciformes: Epigonidae) in the South Indian Ocean
Figure 2. – Collection localities of Epigonus angustifrons (present study: Z; Okamoto and Gon, 2018: ), E. denticulatus (present study: Δ; Okamoto and Gon, 2018: A), and E. exodon (present study: C; Okamoto and Motomura, 2012: l) in the central and western South Indian Ocean.
Figs. 4A-B in New record and expansion of the geographic distribution of Parodia mueller-melchersii (Frič ex BAckeb.) N. P. TAylor (CActAceAe) in the Southern region of Rio GrAnde do Sul, BrAZil
Figs. 4A-B. Parodia mueller-melchersii habitat in Jaguarão, RS. A. Rocky outcrop; B. Surrounding vegetation.
Figs. 2A-D. Parodia mueller-melchersii.A in New record and expansion of the geographic distribution of Parodia mueller-melchersii (Frič ex BAckeb.) N. P. TAylor (CActAceAe) in the Southern region of Rio GrAnde do Sul, BrAZil
Figs. 2A-D. Parodia mueller-melchersii.A. General appearance (frontal view); B. General appearance (lateral view); C. Habitus; D. Juvenile specimens.
Fig.3 in Biodiversity survey, ecology and new distribution records of Marchantiophyta in a remnant of Brazilian Atlantic Forest
Fig.3. Graphical representation of substrates colonized by liverwort species in the fragment of dense montane ombrophilous forest studied in the National Park of Boa Nova, Bahia, Brazil.
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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.