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Figure 1 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 1 Vanhornia yurii sp. nov. (female, holotype) A habitus, dorsal view B mandible, antero-lateral view C head, lateral view D head, front view E head, dorsal view F antenna G mesosoma, dorsal view H mesosoma, lateral view I hind leg.
Figure 3 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 3 Vanhornia quizhouensis (He & Chu, 1990) (female, holotype) A habitus, dorsal view B mandible, ventro-lateral view C head, front view D head, dorsal view E mesosoma, dorsal view F mesosoma, lateral view G metasoma, dorsal view H metasoma, lateral view I wings.
Figure 2 from: Fernandez-Triana J, Kamino T, Maeto K, Yoshiyasu Y, Hirai N (2020) Microgaster godzilla (Hymenoptera, Braconidae, Microgastrinae), an unusual new species from Japan which dives underwater to parasitize its caterpillar host (Lepidoptera, Crambidae, Acentropinae). Journal of Hymenoptera Research 79: 15-26. https://doi.org/10.3897/jhr.79.56162
Figure 2 Microgaster godzilla, female holotype. A details of scutellar complex and propodeum B metasoma, dorsal C metapleuron and metasoma, lateral D details of ocelli dorsal E tarsal claw F hypopygium and ovipositor.
Figure 5 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 5 Vanhornia leileri Hedqvist, 1976 (A–F, H–K female G male, specimens from Russian Far East) A habitus, lateral view B right mandible, lateral view C head, dorsal view D head, front view E head, lateral view F antenna G basal part of antenna H head, antero-lateral view I mesosoma, dorsal view J mesosoma, lateral view K metasoma and hind leg, lateral view.
Fig 2 from: Mohagan AB, Patano Jr. RR, Acola MS, Amper DO, Coritico FP, Amoroso VB (2020) Presence of the four-spined pygmy devil, Arulenus validispinus (Orthoptera: Tetrigidae), confirmed in Bukidnon region on the island of Mindanao, Philippines. Journal of Orthoptera Research 29(2): 133-136. https://doi.org/10.3897/jor.29.53718
Fig 2 Habitus of the four-spined pygmy devil, Arulenus validispinus Stål, 1877, a male from Bukidnon (Mt. Pantaron) in A. dorsal and B. lateral view.
Fig 1 from: Mohagan AB, Patano Jr. RR, Acola MS, Amper DO, Coritico FP, Amoroso VB (2020) Presence of the four-spined pygmy devil, Arulenus validispinus (Orthoptera: Tetrigidae), confirmed in Bukidnon region on the island of Mindanao, Philippines. Journal of Orthoptera Research 29(2): 133-136. https://doi.org/10.3897/jor.29.53718
Fig 1 Map of A. the Philippines and B. Mindanao showing the known distribution of A. validispinus in C. Mt. Pantaron, Sitio Miaray, Barangay Mandahican, Cabanglasan where the specimens were collected (red circles) and in Lanao region based on a specimen from eBay (blue triangle).
Fig 3 from: Mohagan AB, Patano Jr. RR, Acola MS, Amper DO, Coritico FP, Amoroso VB (2020) Presence of the four-spined pygmy devil, Arulenus validispinus (Orthoptera: Tetrigidae), confirmed in Bukidnon region on the island of Mindanao, Philippines. Journal of Orthoptera Research 29(2): 133-136. https://doi.org/10.3897/jor.29.53718
Fig 3 Habitat of the four-spined pygmy devil, Arulenus validispinus Stål, 1877, in A. lower and B. upper lowland dipterocarp rainforest of Mt. Pantaron (about 1,004 masl).
Fig 8 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 8 Photograph and calling song spectrograms of Neoconocephalus affinis. A. Male; B. and C. Spectrogram (top panel) and oscillogram (bottom panel) of one call (B) and four pulses from the same call (C). Photo credit: H. ter Hofstede.
Fig 7 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 7 Photographs and calling song spectrograms of Erioloides longinoi. A. Male; B. Female hanging upside down from a plexiglass plate, showing coloration of abdomen and mandibles; C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call (C) and 10 pulses from the same call (D). Photo credit: H. ter Hofstede.
Fig 9 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 9 Photographs and calling song spectrograms of Subria sylvestris. A. Male, green morph (photo credit: H. ter Hofstede); B. Female, brown morph (photo credit: T. Robillard); C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales.
Fig 53 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 53 Relationships between call peak frequency (kHz) and mean mass (mg) for 49 katydid species from Panama. A. All data for each subfamily. Points surrounded by grey dashed circles appear to be outliers for each subfamily (green circle at 74 kHz = Ischnomela gracilis; red triangle at 3.4 g = Philophyllia ingens; red triangle at 4.2 g = Steirodon stalii); B. Data for families Phaneropterinae (red triangles) and Pseudophyllinae (green circles) with outliers removed. Lines are linear regression lines.
Fig 6 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 6 Photograph and calling song spectrograms of Eppia truncatipennis. A. Male (photo credit: L. Symes); B. and C. Spectrogram (top panel) and oscillogram (bottom panel) of the start of one call (B) and one chirp from the same call (C).
Fig 52 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 52 Photographs and calling song spectrograms of Thamnobates subfalcata. A. Male; B. Female; C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of four calls (C) and one call (D) at different time scales. Photo credit: H. ter Hofstede.
Fig 51 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 51 Photographs and calling song spectrograms of Scopiorinus fragilis. A. Male (photo credit: C. Kernan); B. Female (photo credit: T. Robillard); C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales.
Fig 49 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 49 Photograph and calling song spectrograms of Ischnomela pulchripennis. A. Male; B. and C. Spectrogram (top panel) and oscillogram (bottom panel) of five calls (B) and one call (C) at different time scales. Photo credit: C. Kernan.
Fig 50 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 50 Photographs and calling song spectrograms of Pristonotus tuberosus. A. Male; B. Male resting on branch; C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales. Photo credit: T. Robillard.
Fig 5 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 5 Photographs and calling song spectrograms of Copiphora brevirostris. A. Male (photo credit: H. ter Hofstede); B. Female (photo credit: C. Wilson); C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales.
Fig 48 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 48 Photograph and calling song spectrograms of Ischnomela gracilis. A. Male; B. and C. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales. Photo credit: T. Robillard.
Fig 41 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 41 Photographs and calling song spectrograms of "Waxy" sp. A. Male; B. Female; C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales. Photo credit: C. Wilson.
Fig 47 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Fig 47 Photographs and calling song spectrograms of Idiarthron majus. A. Male (photo credit: T. Robillard); B. Female (photo credit: H. ter Hofstede); C. and D. Spectrogram (top panel) and oscillogram (bottom panel) of one call at different time scales.
ScienceDex guides
Understand access before you commit
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.