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1,063 results for “western Palaearctic”
Figures 233-242 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 233-242 - Penis valves of Pristiphora. 233 alpestris DEI-GISHym31711 234 pseudocoactula DEI-GISHym19968 235 alpestris, holotype of karvoneni 236 pseudocoactula DEI-GISHym80212 237 dissimilis holotype 238 albilabris DEI-GISHym80210 239 carinata syntype (GBIF-GISHym4689) 240 carinata group (DEI-GISHym80234) 241 carinata group (DEI-GISHym80220) 242 carinata group (DEI-GISHym80242).
Figures 243-252 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 243-252 - Penis valves of Pristiphora. 243 rufipes group (BC ZSM HYM 08574) 244 cincta DEI-GISHym80174 (arrow indicates clearly visible valvar strut at anterior margin of paravalva) 245 brevis DEI-GISHym20987 246 cincta DEI-GISHym80158 247 thalictrivora DEI-GISHym20908, paratype of thalictricola, reared from Thalictrum simplex 248 rufipes group (DEI-GISHym31536) 249 thalictri DEI-GISHym11428 250 rufipes DEI-GISHym15263 251 rufipes group (BC ZSM HYM 03251) 252 abbreviata DEI-GISHym80320.
Figures 330-337 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 330-337 - Pristiphora dedeara Liston & Prous, sp. n. and P. cadma. 330 lancet of dedeara holotype (DEI-GISHym80053) 331 lancet of cadma DEI-GISHym80406 (Canada) 332–333 valvula 3 (332) and lancet (333) of cadma NHRS-HEVA000003770 (Sweden) 334–336 cadma TUZ615726 (Estonia) 337 penis valve of cadma DEI-GISHym80409 (Canada).
Figures 273-282 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 273-282 - Penis valves of Pristiphora. 273 albitibia DEI-GISHym20956 274 frigida NHRS-HEVA000003861 (arrow indicates a membranous fold near the tip of valvispina) 275 bufo PR.410VV 276 pallida DEI-GISHym31587 277 friesei DEI-GISHym80003 278 subarctica NHRS-HEVA000003752, paratype (arrow indicates a depression at the apical part of valvispina) 279 laricis DEI-GISHym20917 280 laricis DEI-GISHym31553 281 leucopodia 1f_PR.739VV (arrow indicates broad pseudocepal thickening) 282 nigriceps BC ZSM HYM 10976 (arrow indicates narrow pseudocepal thickening).
Figures 108-127 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 108-127 - Valvula 3 of Pristiphora. 108–110 bufo DEI-GISHym17786 111, 115 nigella DEI-GISHym20972 112–114 paralella 15-255 116–117 decipiens DEI-GISHym21256 118, 122 gerula DEI-GISHym20843 119, 123 tenuiserra DEI-GISHym20846 120–121 saxesenii DEI-GISHym20844 124 erichsonii DEI-GISHym20807 125 pallida DEI-GISHym20845 126–127 glauca DEI-GISHym31525.
Figures 128-131 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 128-131 - Lancets of Pristiphora. 128 abbreviata DEI-GISHym17687 129 biscalis DEI-GISHym20953 130 maesta PR.578VV_506 131 monogyniae DEI-GISHym20954.
Figure 5 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figure 5 - Part of the maximum likelihood tree shown in Fig. 3. Numbers above branches show bootstrap proportions (%). Support values for weakly supported branches (BP<70) are not shown. BIN numbers (BOLD:XXXXXXX) referred to in the text are shown for representative specimens. Outline of the full tree is shown upper left, with the part shown here highlighted. The scale bar shows the number of estimated substitutions per nucleotide position.
Figure 4 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figure 4 - Part of the maximum likelihood tree shown in Fig. 3. Numbers above branches show bootstrap proportions (%). Support values for weakly supported branches (BP<70) are not shown. BIN numbers (BOLD:XXXXXXX) referred to in the text are shown for representative specimens. Outline of the full tree is shown upper left, with the part shown here highlighted. The scale bar shows the number of estimated substitutions per nucleotide position.
Figure 3 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figure 3 - Maximum likelihood tree of Pristiphora based on COI gene (1078 bp). Shortest sequence included was 462 bp (subarctica MHV00166). Numbers above branches show bootstrap proportions (%). Support values for weakly supported branches (BP<70) are not shown. BIN numbers (BOLD:XXXXXXX) referred to in the text are shown for representative specimens. Part of Pristiphora is shown without support values and tip labels, which are shown in Figs 4–5. The scale bar shows the number of estimated substitutions per nucleotide position.
Figure 2 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figure 2 - Part of the maximum likelihood tree shown in Fig. 1. Numbers above branches show bootstrap proportions (%). Support values for weakly supported branches (BP<70) are not shown. Outline of the full tree is shown upper left, with the part shown here highlighted. The scale bar shows the number of estimated substitutions per nucleotide position.
Figure 1 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figure 1 - Maximum likelihood tree of Pristiphora and nematine outgroups based on three genes (3408 bp). Specimens having at least two of the three genes were included. Numbers above branches show bootstrap proportions (%). Support values for weakly supported branches (BP<70) are not shown. Part of Pristiphora is shown without support values and tip labels, which are shown in Fig. 2. The scale bar shows the number of estimated substitutions per nucleotide position.
FIGURE 12. Median lobe P. caspius s.l in Review of the subgenus Lyrothorax of the genus Pterostichus (Coleoptera: Carabidae) in the Western Palaearctic, with descriptions of two new species
FIGURE 12. Median lobe P. caspius s.l., Gilan. (a) from Asålem Pass, (b) Masuleh. Scale bar = 1 mm.
Fig. 1 in First record of the family Malcidae (Heteroptera: Lygaeoidea: Malcidae) in Western Palaearctic: invasive species or casual record?
Fig. 1.- Malcus elongatus Štys, 1967. a.- Photograph of the habitus. Total length: 4.5 mm. b.- Drawing of the habitus. c.- Drawing of the lateral tergites.
Fig. 3 in Evolution and systematics of Green Bush-crickets (Orthoptera: Tettigoniidae: Tettigonia) in the Western Palaearctic: testing concordance between molecular, acoustic, and morphological data
Fig. 3 Oscillograms of songs of the Tettigonia armeniaca complex (1–11), T. caudata (12), and T. uvarovi (13) recorded at two or three speeds: 1 T. armeniaca (AM: Djermuk, T = 19 °C), 2 T. armeniaca (TR: Saclidag Pass, T = 21.5 °C), 3 T. armeniaca (TR: Ispir, T = 17 °C) (monosyllabic type), 4 T. armeniaca (TR: Ispir, T = 17 °C) (disyllabic type), 5 T. armeniaca (AM: Saravan, T = 20–25 °C) (outdoor recording), 6 T. armeniaca (AM: Lermontovo vill., T = 20 °C), 7 T. armeniaca (TR: Savsat–Ardahan, T = 26 °C), 8 T. armeniaca (TR: Savsat– Ardahan, T = 26 °C) (variable echeme length), 9 T. armeniaca (TR: Ispir, T = 17 °C) (polysyllabic type of variable length), 10 T. armeniaca (TR: Pulumur, T = 20–22 °C) (shorter echemes), 11 T. armeniaca (TR: Pulumur, T = 20–22 °C) (the same specimen as in 10 longer echemes), 12 T. caudata (GR: Drama; from Massa et al. 2012, T = 25 °C), and 13 T. uvarovi (South Korea; from Kim 2009 as T. dolichoptera; see Rhee 2013). Scale bar for A is 10 s; for B, 2 s; and for C, 200 ms
Fig. 1 in Unveiling cryptic diversity among Müllerian co-mimics: insights from the Western Palaearctic Syntomis moths (Lepidoptera: Erebidae: Arctiinae)
Fig. 1 Geographical distribution of Syntomis phegea, S. ragazzii, S. marjana and S. quercii in the Western Palaearctic region, and geographical locations of the 36 populations sampled and analysed. Locations are numbered as in Table 1. Dotted lines outline the approximate range of the different subspecies named in the text. The map was drawn using the software Canvas 11 (ACD Systems of America, Inc.)
FIGURE 3 in Contributions to the taxonomy, identification, and biogeography of the Western Palaearctic species of Campoletis Förster (Ichneumonidae: Campopleginae)
FIGURE 3. Campoletis margaritae sp. nov., female, holotype.
FIGURES 1–2 in Contributions to the taxonomy, identification, and biogeography of the Western Palaearctic species of Campoletis Förster (Ichneumonidae: Campopleginae)
FIGURES 1–2. Campoletis katalinarum sp. nov. 1, female, holotype; 2, male, paratype.
FIGURES 111–112 in Taxonomic revision of the Western Palaearctic bees of the subgenus Pseudomegachile (Hymenoptera, Apiformes, Megachilidae, Megachile)
FIGURES 111–112. Habitus of female in dorsal view. 111: M. flavipes. 112: M. maxschwarzi sp. nov..
Figure 2 from: Salvi D, D'Alessandro P, Biondi M (2019) Host plant associations in Western Palaearctic Longitarsus flea beetles (Chrysomelidae, Galerucinae, Alticini): a preliminary phylogenetic assessment. In: Schmitt M, Chaboo CS, Biondi M (Eds) Research on Chrysomelidae 8. ZooKeys 856: 101-114. https://doi.org/10.3897/zookeys.856.32430
Figure 2 Maximum Likelihood phylogenetic tree of 52 species of Longitarsus based on concatenated cox1 and 16S DNA sequences. Circles in correspondence of nodes represent bootstrap support (BS, upper half) and posterior probability (BPP, bottom half) from Bayesian analysis: black for BS > 90 and BPP > 0.98; grey for BS of 70–90% and BPP of 0.95–0.98; white for BS of 50–70% only for nodes supported by Bayesian analysis. Abbreviations: POL = polyphagous; ? = host plants unknown.
Figure 1 from: Salvi D, D'Alessandro P, Biondi M (2019) Host plant associations in Western Palaearctic Longitarsus flea beetles (Chrysomelidae, Galerucinae, Alticini): a preliminary phylogenetic assessment. In: Schmitt M, Chaboo CS, Biondi M (Eds) Research on Chrysomelidae 8. ZooKeys 856: 101-114. https://doi.org/10.3897/zookeys.856.32430
Figure 1 Percent distribution of oligophagous and monophagous Western Palaearctic species of Longitarsus on host plant families.
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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)
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DANDI Archive for NWB datasets
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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.