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2,481 results for “60”
Figs 57–60 in Revision of Trechus Clairville, 1806 of the Bale Mountains and adjacent volcanos, Ethiopia (Coleoptera, Carabidae, Trechini)
Figs 57–60. Trechus oromiensis Magrini, Quéinnec & Vigna Taglianti, 2012, habitus (57) and head, pronotum (58–60). 57–58. ³ from Mt Chillalo. 59. ³ from Mt Enkuolo. 60. ³ from Goba, Bale Mts, locus typicus of T. oromiensis.
Fig. 60 in Revision of the Oriental species of the genus Sphegina Meigen, 1822 (Diptera: Syrphidae)
Fig. 60. Sphegina (Asiosphegina) nigerrima Shiraki, 1930, ♂ from Puli, Taiwan. A. Sternum IV, ventral view. B. Posterior part of genitalia, left side, lateral view. C. Genitalia, right side, lateral view. Scale bars = 0.5 mm.
Fig. 60 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 60. Adelges (Adelges) laricis Vallot, 1836. Adult apterous progredientes with eggs and honeydew droplets on Larix sibirica. (A–D) and Larix kaempferi (E–F). Scale bars: about 2.5 mm.
Figs 60–65 in Morphology of two Mastogloia species (Bacillariophyta) from Lac de Guiers (Senegal) and comparison with the type material of M. braunii
Figs 60–65. Mastogloia senegalensis Van de Vijver, Fofana, Sow & Ector sp. nov. Scanning electron micrographs (SEM) of valves from the Lac de Guiers type population (Van de Vijver sample SEN-42). 60. SEM internal view of an entire valve with the partectal ring. 61–62. SEM internal details of the partectal ring near the valve apices showing the cleft on each apex. 63. SEM internal detail of the central area and part of the partectal ring. 64. SEM internal detail of the partecta showing the partectal walls with 2–4 series of small, rounded pores loosely aggregated in distinct plaques. 65. SEM internal view of a valve apex without the partectal ring (note the small pseudoseptum). Scale bars: 60–63, 65 = 10 µm; 64 = 1 µm.
Figures 60–65 in DNA Barcoding and Integrative Taxonomy of the Heterolepisma sclerophylla species complex (Zygentoma: Lepismatidae: Heterolepismatinae) and the Description of Two New Species
Figures 60–65. Heterolepisma cooloola sp. nov. holotype ♀ (60) presternum, prothoracic sternum and PI; (61) mesothoracic sternum and PII; (62) apex of mesothoracic sternum; (63) metathoracic sternum and PIII; (64) apex of metathoracic sternum; (65) pretarsus of PIII. Scale bars = 0.1 mm.
Fig. 60 in A revision of the Bracon Fabricius species in Wesmael's collection deposited in Brussels (Hymenoptera: Braconidae: Braconinae)
Fig. 60. Bracon (Bracon) fulvipes Nees, 1834, ♀ neotype. A. First two and ultimate three flagellomeres. B. Head in dorsal view. C. Head in lateral view. D. Head in frontal view. E. Propodeum. F. Hind femur. G. Claw. H. Distal part of right forewing. I. First discal cell of right forewing. J. Tergites 1-3.
Fig. 60 in Epimeria of the Southern Ocean with notes on their relatives (Crustacea, Amphipoda, Eusiroidea)
Fig. 60. Epimeria (Drakepimeria) leukhoplites subgen. et sp. nov., ♀, holotype, Elephant Island, ANT- XXIII/8, stn 605-5, RBINS, INV. 122470. A. Facial habitus. B. Head in facial view.
Figure 60 in Taxonomic revision of the Mexican Eucyclops (Copepoda: Cyclopoida) with comments on the biogeography of the genus
Figure 60. Eucyclops mittmanni sp. nov. Adult female. (A) P4, caudal; (B) coxa and basis P4, caudal; (C) intercoxal sclerite P4, caudal; (D) coxal spine P4; (E) Enp3 P4; (F) P5.
Fig. 60 in Larval morphology of the Japanese species of the tribes Acidocerini, Hydrobiusini and Hydrophilini (Coleoptera: Hydrophilidae)
Fig. 60. Head capsule of Sternolophus (Sternolophus) rufipes (Fabricius, 1792), first instar. A – dorsal view; B – ventral view; C – detail of anterior margin of head capsule, dorsal view.
Figs 57–62. 57–60 in Identity of species-group taxa of the Western Palaearctic Clytrini (Coleoptera: Chrysomelidae) described by Maurice Pic and Louis Kocher
Figs 57–62. 57–60 – Tituboea saadensis (Pic, 1894): 57 – aedeagus (dorsal and lateral views, from Algeria); 58 – aedeagus (dorsal and lateral views, from Mali); 59 – spermatheca; 60 – right male protarsus. 61–62 – Tituboea carmelica (Lopatin & Chikatunov, 2001): 61 – aedeagus (dorsal and lateral views); 62 – right male protarsus. Scale bar: 0.5 mm.
Fig. 60 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 60. Georeferenced collection records of Lasioglossum (D.) meteorum sp. nov. (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence.
FIG. 60 in Checklist and taxonomic updates in grasshoppers (Orthoptera: Caelifera) of central and southwestern Tunisia with new records and a key for species identification
FIG. 60. — Habitus of Dericorys millierei Bonnet & Finot, 1884: A, B, female from Tozeur, Tunisia, dorsal view (A), lateral view (B); C, D, male from Mednine, Tunisia, dorsal view (C), lateral view (D). Scale bars: 1 cm. Photos: H. Tlili.
Figs 55‒60 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 55‒60. Pacificampa wudonghuii Sendra sp. nov. 55. Dorsal macrosetae on the metathoracic femur. 56. Joint between tibia and tarsus with calcars. 57. Ventral macroseta on the tibia. 58. Lateral side of the tarsus. 59. Pretarsus. 60. Detail of the pretarsus.
Figs 60–69 in A review of Gnathoncus of Southeast Asia (Coleoptera: Histeridae: Saprininae)
Figs 60–69. SEM micrographs of Gnathoncus semimarginatus Bickhardt, 1920. 60 – head, dorsal view; 61 – antennal club, ventral view; 62 – mentum; 63 – propygidium and pygidium; 64 – prosternum; 65 – mesoventrite; 66 – lateral disc of metaventrite and metepisternum; 67–68 – protibia (67 – dorsal view; 68 – ventral view); 69 – mesotibia, dorsal view.
Topology and structure of Au144(SRNH3+)60 from "Atomistic Simulations of Functional Au144(SR)60 Gold Nanoparticles in Aqueous Environment"
<p>Positively charged monolayer-protected gold nanoparticles (AuNPs) structure and topology files for GROMACS used in DOI: 10.1021/jp301094m. The final structure of the simulation reported in DOI: 10.1021/jp301094m for the neutral case is provided.</p> <p>The gold nanoparticle contain a core of 144 Au atoms and 60 functionalized alkanethiol side groups (undecanyl chain, R = C11H22), each possessing a positively charged amonium terminal group.</p> <p>When using this structure do not forget to cite DOI: 10.1021/jp301094m. </p> <p>NOTE1: Different versions for the topology files are provided of both AuNPs. All versions were used for the publication. The changes only affect the core surface and therefore had no influence in the reported properties. Still we recommentd using the latest version: AU144SRNH360_v3.itp.</p> <p>NOTE2: The original simulations used GROMACS 4.0.5. The files should work, however, as well up to GROMACS 4.6.7.</p>
Topology and structure of Au144(SRCOO-)60 from "Atomistic Simulations of Functional Au144(SR)60 Gold Nanoparticles in Aqueous Environment"
<p>Negatively charged monolayer-protected gold nanoparticles (AuNPs) structure and topology files for GROMACS used in DOI: 10.1021/jp301094m. The final structure of the simulation reported in DOI: 10.1021/jp301094m for the neutral case is provided.</p> <p>The gold nanoparticle contain a core of 144 Au atoms and 60 functionalized alkanethiol side groups (undecanyl chain, R = C11H22), each possessing a negatively charged carboxylic terminal group.</p> <p>When using this structure do not forget to cite DOI: 10.1021/jp301094m. </p> <p>NOTE1: Different versions for the topology files are provided of both AuNPs. All versions were used for the publication. The changes only affect the core surface and therefore had no influence in the reported properties. Still we recommentd using the latest version: AU144SRCOO60_v2.itp.</p> <p>NOTE2: The original simulations used GROMACS 4.0.5. The files should work, however, as well up to GROMACS 4.6.7.</p>
FIGURES 59 – 66. Male genitalia. 59 – 60, A in Different continents, same species? Resolving the taxonomy of some Holarctic Ancylis Hübner (Lepidoptera: Tortricidae)
FIGURES 59 – 66. Male genitalia. 59 – 60, A. unguicella (59, Colorado, TMG 685; 60, Austria, TMG 681). 61 – 62, A. pacificana (61, California, TMG 678; 62, California, TMG 686). 63 – 64, A. uncella (63, Russia, TMG 679; 64, Maine, TMG 698). 65, A. goodelliana (Connecticut, TMG 705). 66, A. oregonensis (Oregon, TMG 633).
FIGURE 49 – 60 in A new widespread European bee species of the genus Dasypoda Latreille (Hymenoptera, Apoidea)
FIGURE 49 – 60. Structure of male genitalia: 49 – 51. Dasypoda morawitzi sp. nov.; 52 – 54. D. albipila; 55 – 58. D. hirtipes; 59 – 60. D. sinuata; (49, 52, 55 — dorsal view; 50, 53, 56 — dorso-ventral view; 51, 57, 59 — base of gonostylus in lateral view; 54 — base of gonostylus in latero-ventral view; 58, 60 — base of gonostylus in ventral view).
FIGURE 60 in Guide to the Parasites of Fishes of Canada Part V: Nematoda
FIGURE 60. Cystidicola stigmatura (Leidy, 1886) Ward & Magath, 1917. A. male, anterior end, lateral view; B. male, posterior end, lateral view; C. fully developed eggs. (A. redrawn from Ko & Anderson 1969; B. redrawn from Skinker 1931; C. redrawn from White & Cable 1942)
WWV 15 MHz reception test -- 60 minutes starting at 1937 UTC, July 25, 2017.
<p>Steven Reyer, WA9VNJ. Approx.Lat/Long: 43.218, -87.951. This 60-minute 15 MHz WWV recording was started at 1937 UTC on July 25, 2017, in preparation for the Solar Eclipse experiment in late August.</p> <p>The radio is a Yaesu FT-857D locked to a Trimble Thunderbolt GPSDO using an XRef-FT oscillator interface. Antenna is an RF-PRO-1B shielded magnetic loop, aimed N-S. Calibration of the radio and sample rate correction is determined using a second Trimble Thunderbolt GPS and Rigol DG1022Z GPS-locked signal generator.</p> <p>Spectrum Lab software is used to record the WAV file and to analyze incoming audio with sample rate of 11025 Hz. FFTs are 512k-point, 75% overlapping, yielding a new measurement every 12 seconds. Radio is tuned to 14999.00 kHz USB yielding audio around 1kHz (labeled "PeakFreq" in the txt file). Thus, the measured radio frequencies are near 15000 kHz. Calibration tests show that the audio frequency measurements are approximately 0.0384 Hz high, due the approximations in both the radio's DDS and the sample rate. This 0.0384 Hz number can be subtracted from the PeakFreq values to get corrected audio frequencies, which can then be added to the 14999 kHz number.</p>
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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.