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4,937 results for “Endemic species”
Figure 7 in Two new endemic species of Chrysopodes (Neosuarius) (Neuroptera, Chrysopidae) from the Galapagos Islands
Figure 7. Male abdomen, lateral view. Chrysopodes (Neosuarius) nigripilosus. c.a. tip of caudal apodeme on T9+ectoproct c.c. callus cerci d.a. dorsal apodeme on T9+ectoproct ev.p. eversible membranous pouch gs gonarcus (lateral apodeme) s.a. sub-basal apodeme on S8+9 s.dt. setose duct s.p. setose subrectal plate S7 seventh sternite S8+9 fused eighth and ninth sternites T8 eighth tergite T9+ect fused ninth tergite and ectoproct v.a. ventrally projecting arm of apodeme on T9+ectoproct.
Fig. 6 in Description of 11 new Astiella (Spermacoceae, Rubiaceae) species endemic to Madagascar
Fig. 6. Astiella confusa Groeninckx sp. nov. A. Habit. B. Brevistylous flower. C. Open brevistylous flower. D. Ovary dissected to show placentation. E. Capsule. Drawn by Marijke Meersman. All from Humbert 20713 (BR).
Fig. 2. Distribution maps. A in Description of 11 new Astiella (Spermacoceae, Rubiaceae) species endemic to Madagascar
Fig. 2. Distribution maps. A. Astiella antongilensis Groeninckx sp. nov. B. A. antsalovansis Groeninckx sp. nov. C. A. confusa Groeninckx sp. nov. D. A. deblockiae Groeninckx sp. nov. E. A. delicatula Jovet. F. A. desseinii Groeninckx sp. nov. G. A. homolleae Groeninckx sp. nov. H. A. latifolia Groeninckx sp. nov. I. A. longifimbria Groeninckx sp. nov. J. A. perrieri Groeninckx sp. nov. K. A. pulla Groeninckx sp. nov. L. A. tsaratanensis Groeninckx sp. nov.
Fig. 18 in The Chimarra lehibemavo species-group, new and endemic to Madagascar (Trichoptera, Philopotamidae)
Fig. 18. Chimarra makiorum sp. nov., Chimarra gensonae sp. nov. and Chimarra jejyorum sp. nov., schematic distribution map and ecological profile of the capture sites in Madagascar.
Fig. 14 in The Chimarra lehibemavo species-group, new and endemic to Madagascar (Trichoptera, Philopotamidae)
Fig. 14. Chimarra tamara sp. nov. A–B. Abdominal segments IX and X. A. Lateral view with ventral margin of sternite VIII. B. Dorsal view. C. Inferior appendage, dorsal view. D–E. Phallic apparatus. D. Dorsal view. E. Lateral view. Scale bar = 0.5 mm.
Fig. 13 in The Chimarra lehibemavo species-group, new and endemic to Madagascar (Trichoptera, Philopotamidae)
Fig. 13. Chimarra saha sp. nov. A–B. Abdominal segments IX and X. A. Lateral view with ventral margin of sternite VIII. B. Dorsal view (partim). C. Inferior appendage, dorsal view. D–E. Phallic apparatus. D. Dorsal view. E. Lateral view. Scale bar = 0.5 mm.
Fig. 12 in The Chimarra lehibemavo species-group, new and endemic to Madagascar (Trichoptera, Philopotamidae)
Fig. 12. Chimarra moramanga sp. nov. A–B. Abdominal segments IX and X. A. Lateral view. B. Dorsal view. C. Inferior appendage, dorsal view. D–E. Phallic apparatus. D. Apex, dorsal view. E. Lateral view. Scale bar = 0.5 mm.
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.
Figures 6-9 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figures 6-9 Head of Mimops orientalis Kraepelin, 1903 6, 7 Head and tergite 1 and 2, dorsal and ventral views 8, 9 dorsal views of the right antenna.
Figures 2-5 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figures 2-5 Habitat of Mimops orientalis2, 3 Habitat at locality of M. orientalis in Taiping National Forest Park, Hu county, Shaanxi, China 4, 5 living specimens of M. orientalis.
Figures 16-18 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figures 16-18 Ultimate segment and ultimate legs of Mimops orientalis16 Ventral view of the ultimate segment 17 dorsal view of the ultimate segment 18 dorsal view of ultimate legs.
Figure 1 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figure 1 The current known distribution of Mimops orientalis. Two main record localities were in Shaanxi and Henan provinces, China, indicated by a red dot and a green pentagon, respectively; the red dot perhaps indicates the type locality.
Figures 10-15 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figures 10-15 10 Coxosternite and forcipules of Mimops orientalis11–15 Trunk segment features of Mimops orientalis. 11 Tergites 11–13, showing paramedian sutures and spiracle 12 sternites 5–7, showing sutures 13 spiracle on segment 5 14 ventral view of legs 5–7 (right) 15 dorsal view of leg 3 (right).
Figures 23-27 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figures 23-27 Ocelli characteristics of Scolopendromorpha23Mimops orientalis24Theatops chuanensis25Scolopendra mutilans26Scolopocryptops nigrimaculatus27Cryptops sp.
Figures 21- 22 from: Jiang C, Bai Y, Shi M, Liu J (2020) Rediscovery and phylogenetic relationships of the scolopendromorph centipede Mimops orientalis Kraepelin, 1903 (Chilopoda): a monotypic species of Mimopidae endemic to China, for more than one century. ZooKeys 932: 75-91. https://doi.org/10.3897/zookeys.932.51461
Figures 21- 22 Phylogenetic trees obtained from the COI, 16S, and 28S sequences 21ML tree from the analysis of the concatenated genes 22 tree from the Bayesian analysis of all genes combined. Numbers at the nodes are bootstrap percentages obtained from the ML analyses and posterior probabilities obtained from BI.
FIGURE 5. A–B in Discovery of a new species of Lacon Laporte (Coleoptera: Elateridae: Agrypninae) endemic to Cyprus, with a modified tarsal morphology
FIGURE 5. A–B. Type locality of Lacon cyprius sp. nov.
Fig. 29 in A mountain of millipedes I: An endemic species-group of the genus Chaleponcus Attems, 1914, from the Udzungwa Mountains, Tanzania (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 29. Chaleponcus mwabvui sp. nov., right gonopod. A. Posterior view. B. Anterior-mesal view. C. Coxa, tip, anterior view. D. Telopodite, apical-dorsal view. E. Process plp of telomere. al = anterior telomeral lamella, cu = cucullus, mf = metaplical flange, mp = mesal metaplical process, ms = metaplical shelf, mss = metaplical shelf-spine, pl = posterior telomeral lamella, plp1, plp2, posterior telomeral lamella processes, ps = proximal spine on solenomere, slm = solenomere. Scales: 0.1 mm (A–D), 0.05 mm (E).
Fig. 24 in A mountain of millipedes I: An endemic species-group of the genus Chaleponcus Attems, 1914, from the Udzungwa Mountains, Tanzania (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 24. Chaleponcus vilici sp. nov., left gonopod. A. Posterior view. B. Mesal view. C. Mesal-anterior view. D. Close-up of metaplical shelf-spine, mesal view. E. Anterior (and slightly apical/ventral) view. F. Telopodite, distal view, showing solenomere and the two distal telomere branches. al = anterior lamella of telomere, cu = cucullus, la = lateral angle of coxa, mf = metaplical flange, mp = mesal metaplical process, ms = metaplical shelf, mss = metaplical shelf-spine, pl = posterior lamella of telomere, slm = solenomere. Scales: 0.1 mm (A–D), 0.01 mm (E–F).
Fig. 2 in A mountain of millipedes I: An endemic species-group of the genus Chaleponcus Attems, 1914, from the Udzungwa Mountains, Tanzania (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 2. Body size of males of 13 species of the Chaleponcus dabagaensis group: Number of podous rings and vertical midbody diameter in large, small and 'long, thin' species (cf. text), as well as medium sized species in which the gonopod coxa has an obvious lateral process.
Fig. 4 in A mountain of millipedes I: An endemic species-group of the genus Chaleponcus Attems, 1914, from the Udzungwa Mountains, Tanzania (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 4. Limbus types in Chaleponcus species, SEM micrographs, external view, except I: internal view. — A. Lobes pointed, more than twice as long as broad (C. scopus sp. nov.). B. Lobes pointed, slightly less than twice as long as broad (C. howelli sp. nov.). C. Lobes pointed, almost equilateral triangles (C. netus sp. nov.), D. Lobes rounded, slightly longer than broad (C. dabagaensis Kraus, 1958). E. Lobes broadly rounded, slightly shorter than broad (C. hamerae sp. nov.). F. Lobes spatulate (C. gracilior sp. nov.). G. Lobes rounded, broader than long, spinose, ridged (C. krai sp. nov.). H. Lobes ca. 3 times as broad as high, rounded, spinose (C. teres sp. nov.). I. Lobes rounded, much broader than high, smooth (C. malleolus sp. nov.). J. No lobes (C. circumvallatus sp. nov.). Scales: 0.01 mm (A– F, J), 0.001 mm (G–I).
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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.