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Fig 6 from: Ngoute C, Kekeunou S (2017) Redescription and diagnosis of the African genus Gemeneta Karsch, 1892 (Orthoptera: Acrididae: Catantopinae). Journal of Orthoptera Research 27: 161-170. https://doi.org/10.3897/jor.26.19995
Fig 6 - External diagnostic characters of Gemeneta spp. A, B. Fastigium of vertex; C–D. Pronotum lateral view; E–F. External genitalia female; A, C, E. G. terrea and B, D, F. G. opilionoides. Scale bars = 1 mm.
Figure 3 from: Ting JJ, Judge KA, Gwynne DT (2017) Listening to male song induces female field crickets to differentially allocate reproductive resources. Journal of Orthoptera Research 26: 205-210. https://doi.org/10.3897/jor.26.19891
Figure 3 - Mean (±SE) size of embryos laid during: the first week following treatment (Week 1), and the subsequent weeks following treatment (Post Week 1) of females who experienced either low- (grey symbols) or high- (black symbols) quality calling song.
Figure 8 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 8 - Neighbor-joining tree of DNA barcodes (COI) obtained from BOLD 4.0. beta using the Kimura 2 parameter for distance model. Filters: sequence length > 200 bp.
Figure 6 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 6 - Specific richness of Mantodea collected with two main sampling methods; day capture (Day) and trapping with UV light at night (UV); grey chart = observed richness; dashed chart = estimated richness (ACE index) and associated standard deviation.
Figure 4 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 4 - Live habitus. A. Theopompella aurivillii (female) from DNNP; B. Theopompella sp. (young) from DNNP; C. Dactylopteryx flexuosa (female) from DNNP; D. Amorphoscelis griffinii (male) from DNNP; E. Amorphoscelis pulchra (male) from DNNP; F. Galinthias amoena (female) from LNP; G. Panurgica feae (female) from DNNP; H. Chloroharpax modesta (male) from DNNP; I. Anasigerpes bifasciata (female) from DNNP; J. Pseudocreobotra ocellata (female) from LNP; K. Pseudocreobotra ocellata (male) from DNNP; L. Oxypiloidea (Catasigerpes) margarethae (female) from DNNP.
Figure 2 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 2 - Illustration of some sampling methods used during surveys in CAR. A. Beating sheet; B. Sweep net; C. Tree climbing; D. Remote Canopy Trap.
Figures 10-15 from: Chiquetto-Machado PI, Albertoni FF (2017) Description of the female, egg and first instar nymph of the stick insect Paraphasma paulense (Phasmatodea: Pseudophasmatidae) from Southeast Brazil. Journal of Orthoptera Research 26: 91-101. https://doi.org/10.3897/jor.26.20180
Figures 10-15 - Paraphasma paulense Rehn, 1918 ultrastructure of egg and internal content. 10. Operculum opened and endochorion surface; (11, 12, 13, 14) pharate first instar nymph: 11. Enclosed in vitelline membrane; 12. With part of the head exposed evidencing nymph integument, embryonic exuvia and vitelline membrane; 13. Integument; 14. Detail of Figure 12; 15. Detail of vitelline membrane surface.
Figure 9 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 9 - Rarefaction curve of Mantodea from Sangha-Mbaere Region (black curve) with an extrapolation in a hypothetical situation where sampling effort would be doubled (dashed curve); grey area = confidence interval.
Figure 12 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 12 - Specific richness in the different vegetation strata; grey = observed richness; dashed chart = estimated richness (ACE index) and associated standard deviation.
Figure 4 from: Hemp C (2017) Review of the genus Lunidia Hemp (Orthoptera: Phaneropteridae) and the description of a new species from the Uluguru Mountains of Tanzania, East Africa. Journal of Orthoptera Research 26: 85-89. https://doi.org/10.3897/jor.26.20107
Figure 4 - Subgenital plates of female Lunidia species. A. L. viridis; B. L. bicercata sp. n.; C. L. acuticercata. Scale bars: 1 mm.
Figure 3 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 3 - Live habitus. A. Sphodromantis lineola pinguis (green female) from LNP; B. Sphodromantis lineola pinguis (brown female) from LNP; C. Sphodromantis lineola pinguis (green male) from LNP; D. Alalomantis muta (female) from CMNP; E. Polyspilota aeruginosa (male) from LNP; F. Macrodanuria elongata (male) from DNNP; G. Miomantis preussi (green female) from DNNP; H. Miomantis preussi (brown female) from DNNP; I. Miomantis preussi (male) from DNNP.
Figure 7 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 7 - Number of mantid species collected with the two main sampling methods: day capture (Day) and light trapping (UV).
Figure 11 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 11 - Number of collected specimens in the different vegetation strata; black = females; grey = males; white = nymphs.
Figure 10 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 10 - Species richness in the three zones studied: Ndoki = Dzanga-Ndoki National Park zone; Sangha = Dzanga-Sangha Special Reserve zone; Mbaere = Rest of the Sangha-Mbaere Region; grey chart = observed number of species; dashed chart = estimated richness (ACE index) and associated standard deviation.
Figure 1 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 1 - Sangha-Mbaere Region in Central African Republic. A. Location of Tri National Sangha area in Central Africa; B. Location of principal sampling stations and largest towns. Black dots: Main city in Sangha-Mbaere Region. White dots: Main collection areas. Sources: http://www.diva-gis.org adminstrative area, Sangha-Mbaere Region; C. Illustration of the habitats studied; D. Primary forest of CAR, Dzanga Bai with forest elephants.
Figure 7-8 from: Ho GWC (2017) Contribution to the knowledge of Oriental Phasmatodea II: A taxonomic study of the genus Paragongylopus (Phasmatodea: Pachymorphinae: Gratidiini). Journal of Orthoptera Research 26: 195-203. https://doi.org/10.3897/jor.26.15291
Figure 7-8 - Paragongylopus (Planoparagongylopus) lii subgen. n. and sp. n. 7. ♀, body and legs, dorsal view; 8. ♀, apex of abdomen, lateral view.
Figure 5 from: Moulin N, Decaëns T, Annoyer P (2017) Diversity of mantids (Dictyoptera: Mantodea) of Sangha-Mbaere Region, Central African Republic, with some ecological data and DNA barcoding. Journal of Orthoptera Research 26: 117-141. https://doi.org/10.3897/jor.26.19863
Figure 5 - Number of mantid specimens collected with the two main sampling methods: day capture (Day) and trapping with UV lights at night (UV); black chart = females; grey chart = males; white chart = nymphs.
Figure 5-6 from: Ho GWC (2017) Contribution to the knowledge of Oriental Phasmatodea II: A taxonomic study of the genus Paragongylopus (Phasmatodea: Pachymorphinae: Gratidiini). Journal of Orthoptera Research 26: 195-203. https://doi.org/10.3897/jor.26.15291
Figure 5-6 - Paragongylopus (Planoparagongylopus) abramovi subgen. n. and sp. n. 5. ♀, apex of abdomen, lateral view; 6. ♀, apex of abdomen, dorsal view.
Figure 1-4 from: Ho GWC (2017) Contribution to the knowledge of Oriental Phasmatodea II: A taxonomic study of the genus Paragongylopus (Phasmatodea: Pachymorphinae: Gratidiini). Journal of Orthoptera Research 26: 195-203. https://doi.org/10.3897/jor.26.15291
Figure 1-4 - Paragongylopus (Paragongylopus) cheni sp. n. 1. ♀, apex of abdomen, lateral view; 2. ♀, apex of abdomen, dorsal view; 3. Egg, lateral view; 4. Egg, dorsal view.
Figure 9-10 from: Ho GWC (2017) Contribution to the knowledge of Oriental Phasmatodea II: A taxonomic study of the genus Paragongylopus (Phasmatodea: Pachymorphinae: Gratidiini). Journal of Orthoptera Research 26: 195-203. https://doi.org/10.3897/jor.26.15291
Figure 9-10 - Paragongylopus (Planoparagongylopus) nabanheensis subgen. n. and sp. n. 9. ♀, apex of abdomen, lateral view; 10. ♀, apex of abdomen, dorsal view.
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.