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Figure 2 from: Niveiro N, Ramírez NA, Michlig A, Lodge DJ, Aime MC (2020) Studies of Neotropical tree pathogens in Moniliophthora: a new species, M. mayarum, and new combinations for Crinipellis ticoi and C. brasiliensis. MycoKeys 66: 39-54. https://doi.org/10.3897/mycokeys.66.48711
Figure 2 Photographs of sister species, Moniliophthora mayarum and M. ticoi: A basidiomes of M. mayarum on piece of tree root in Belize (BZ-511) (photo by S. Schmeiding) B–F Basidiomes of M. ticoi on trunks of Holocalix balansae (Fabaceae) and Pogonopus tubulosus (Rubiaceae) in Argentina. Scale bars: 10 mm.
Figure 1 from: Niveiro N, Ramírez NA, Michlig A, Lodge DJ, Aime MC (2020) Studies of Neotropical tree pathogens in Moniliophthora: a new species, M. mayarum, and new combinations for Crinipellis ticoi and C. brasiliensis. MycoKeys 66: 39-54. https://doi.org/10.3897/mycokeys.66.48711
Figure 1 Maximum likelihood (ML) tree of Marasmiaceae based on dataset of ITS and LSU sequences. Bootstrap values above 50% are shown at supported node. T indicates type material. The tree was rooted with B. corynecarpon and T. nigripes (Aime and Phillips-Mora 2005; Koch et al. 2018).
According to this the mutual affinities of the species of the simpleX group might be expressed as follows t (the Ethiopian species are marked with an asterisk):— each other at base; in 4 p2 is half in row. To this latter I find no parallel in any specimen of ferrum-equinum (all races) I have seen, and in 4 skulls only, out of 33, there is a more or less distinct remnant of the interspace between the canine and p4. Of _R7z. deckeni I have seen one skull only; the dentition is as in many specimens of Ph. augur: c and p4 separated, p2 external. f I give the diagram the form of a genealogical tree, only because it is convenient to in On some Bats of the Genus Rhinolophus, with Remarks on their Mutual Affinities, and Descriptions of Twenty-six new Forms.
According to this the mutual affinities of the species of the simpleX group might be expressed as follows t (the Ethiopian species are marked with an asterisk):— each other at base; in 4 p2 is half in row. To this latter I find no parallel in any specimen of ferrum-equinum (all races) I have seen, and in 4 skulls only, out of 33, there is a more or less distinct remnant of the interspace between the canine and p4. Of _R7z. deckeni I have seen one skull only; the dentition is as in many specimens of Ph. augur: c and p4 separated, p2 external. f I give the diagram the form of a genealogical tree, only because it is convenient to
Fig. 4 in Taxonomic review of the tree snail genus Amphidromus Albers, 1850 (Pulmonata: Camaenidae) in Laos, with the description of two new species
Fig. 4. Shells of Amphidromus (Amphidromus) spp. A−F. Amphidromus roseolabiatus Fulton, 1896. A–B. Typical form from Ban Phavong, Khammouan, Laos (CUMZ 7011). C–D. Form with white lip from Nam Turn Bridge, Bolikhamxay, Laos (CUMZ 7006). E–F. Form with white lip from Tam Mung Korn, Bolikhamxay, Laos (CUMZ 7004). G. Amphidromus laosianus Bavay, 1898 from Khone, Champasak, Laos (RMNH 101049). H. Amphidromus protania Lehmann & Maassen, 2004, holotype (RMNH 98143). I. Amphidromus givenchyi Geret, 1912 from Thad Lor Waterfall, Salavan, Laos (CUMZ 7015). J–K. Amphidromus syndromoideus sp. nov. from the type locality. J. Holotype (CUMZ 7019). K. Paratype (CUMZ 7020).
Fig. 8 in Taxonomic review of the tree snail genus Amphidromus Albers, 1850 (Pulmonata: Camaenidae) in Laos, with the description of two new species
Fig. 8. Genitalia, mating pairs, shell banding formula and radula morphology. A–B. Amphidromus (Syndromus) contrarius (Müller, 1774) from Timor (ZMA). A. Genital system. B. Internal structures of penis and vagina. C. Mating pair of Amphidromus (Syndromus) sp., showing the protruded vaginal simulator pilaster (vsp, red arrows) and its possible function as a stimulating organ. D. Schematic drawing of shell banding, where the numbers 1 to 6 on the last whorl indicate the position of each band. E–G. Radula morphology of Amphidromus (Syndromus) contrarius (Müller, 1774) from Timor (ZMA). E. Central tooth, with the first to fifth lateral teeth. F. Lateral teeth with the tricuspid marginal teeth transition. G. Outermost marginal teeth. Numbers indicate the order of the lateral and marginal teeth. Central tooth indicated by 'C'.
Figure 4. Optimal maximum-likelihood tree resulting from the RAxML analysis. Bootstrap support values greater than 50 in Taxonomy of Micronesian monitors (Reptilia: Squamata: Varanus): endemic status of new species argues for caution in pursuing eradication plans
Figure 4. Optimal maximum-likelihood tree resulting from the RAxML analysis. Bootstrap support values greater than 50% are shown on the nodes. Scale bar corresponds to the mean number of nucleotide substitutions per site.
Fig. 2. Bayesian majority rule consensus tree reconstructed for 90 in Phylogenetic analysis and systematic position of two new species of the ant genus Crematogaster (Hymenoptera, Formicidae) from Southeast Asia
Fig. 2. Bayesian majority rule consensus tree reconstructed for 90 taxa using five genes (ArgK, CAD, LWRh, Top1, Wg) in a MrBayes analysis. Most of the outgroups are not shown. Above node numbers indicate posterior probability, bootstrap value for MP, and bootstrap value for ML. Data were partitioned by PartitionFinder v.1.1.1 and analyzed using a best fit model for each gene and codon position, with 10 million generations and a burn-in of 25 %.
Figs 18-20 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 18-20 Sage tree cricket. 18. Adult male; 19. Adult female; 20. Raised tegmina of male preparing to sing.
Fig 29 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Fig 29 Seventeen-second waveform of two male sage tree crickets at 17.3°C. Areas of interest shown in Fig. 30a–e.
Figs 51-59 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 51-59 Metanotal glands comparisons. 51.Oecanthus nigricornis; 52.O argentinus; 53.O. celerinictus; 54.O. forbesi; 55.O. salviisp. nov.; 56.O. quadripunctatus; 57.O. laricis; 58.O. pini; and 59.O. walkeri.
Figs 4-7 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 4-7 Location of Oecanthus salviisp. nov. discovery. 4. Road to Lake Annie; 5. Eastern edge of lake with foot of Lake Annie Mountain; 6. Western edge of lake; and 7. Cattle drive along western shore.
Figs 37-42 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 37-42 Shapes of copulatory blades in (v)-ventral and (d)-dorsal views. 37.Oecanthus walkeri; 38.O. nigricornis; 39.O. quadripunctatus; 40.O. argentinus; 41.O. salviisp. nov.; and 42.O. celerinictus.
Fig 30 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Fig 30 Waveform sections from Fig. 29. a. Single male then joined by another male; b. The same two males in imperfect synchrony evolving into opposition; c. The same two males in near synchrony, pausing, then in opposition; d. The same two males in various degrees of synchrony; e. The same two males achieving synchrony.
Figs 31-36 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 31-36 Drawings showing variations of antennal markings. 31.Oecanthus quadripunctatus; 32.O. celerinictus; 33.O. argentinus; 34.O. nigricornis/O. forbesi; 35.O. pini; and 36.O. walkeri.
Figs 43-50 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 43-50 Male subgenital plates. 43.Oecanthus salviisp. nov.; 44.O. walkeri; 45.O. celerinictus; 46.O. quadripunctatus; 47.O. pini; 48.O. nigricornis; 49. O. forbesi; and 50.O. argentinus.
Figs 25- 26 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 25- 26 One-second trilling of male sage tree cricket at 24.8°C. 25. 41 pulses per second; 26. Dominant frequency 3.5 kHz.
Fig 28 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Fig 28 Dominant frequency vs. pulses per second of Oecanthus salviisp. nov. compared to other members of the nigricornis species group: O. walkeri, O. quadripunctatus, O. nigricornis, O. argentinus, and O. pini (data in Suppl. materials 1, 2).
Figs 21-24 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 21-24 Adult sage tree cricket male abdomen, limb setae coloring, and hind femoral-tibial joints. 21. Creamy white ventral abdomen; 22. Dark black setae on limbs; 23. Ventral view of joints; and 24. Dorsal view of joints and two horizontal black lines on tibiae.
Figs 8-10 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Figs 8-10 Host plants at Lake Annie. 8. Big sagebrush; 9a. Mountain sagebrush; 9b. Mountain sagebrush inflorescences; 10a. Rubber rabbitbrush; 10b. Rubber rabbitbrush inflorescences.
Fig 27 from: Collins N, Schneider KR (2020) Oecanthus salvii sp. nov. (Orthoptera: Gryllidae: Oecanthinae): A new tree cricket species from Modoc County in northeast California. Journal of Orthoptera Research 29(1): 91-99. https://doi.org/10.3897/jor.29.50400
Fig 27 Song pulse rates of Oecanthus salviisp. nov., O. forbesi, O. celerinictus, O. nigricornis, O. argentinus, O. quadripunctatus, O. walkeri, and O. pini (data in Suppl. materials 1, 2).
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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.