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911 results for “SI”
Figure 10 from: Kokhia MS, Golovatch SI (2020) Diversity and distribution of the millipedes (Diplopoda) of Georgia, Caucasus. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 199-219. https://doi.org/10.3897/zookeys.930.47490
Figure 10 Map of Ajaria showing the distributions of some endemic or subendemic species. Designations: blue ball (Adshardicus strasseri), red diamond (Brachydesmus kvavadzei), green ball (Dentatosoma denticulatum), orange star (Dentatosoma zeraboseli), yellow square (Omobrachyiulus adsharicus), white triangle (Omobrachyiulus divaricatus), yellow ball (Paranotosoma cordatum), yellow triangle (Syrioiulus adsharicus).
Figure 6 from: Kokhia MS, Golovatch SI (2020) Diversity and distribution of the millipedes (Diplopoda) of Georgia, Caucasus. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 199-219. https://doi.org/10.3897/zookeys.930.47490
Figure 6 Map showing the distributions of four particularly widespread millipedes endemic or subendemic to Georgia. Designations: yellow ball (Hirudisoma roseum), green ball (Chaetoleptophyllum flexum), pink square (Metamastigophorophyllon torsivum), blue star (Julus colchicus).
Figure 12 from: Kokhia MS, Golovatch SI (2020) Diversity and distribution of the millipedes (Diplopoda) of Georgia, Caucasus. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 199-219. https://doi.org/10.3897/zookeys.930.47490
Figure 12 Map of eastern Georgia showing the distributions of some endemic or subendemic species. Designations: green ball (Alpinella waltheri), red ball (Brachydesmus assimilis), blue triangle (Cylindroiulus kacheticus), yellow ball (Cylindroiulus parvus), yellow ring (Hyleoglomeris specialis), orange square (Julus kubanus), red diamond (Leptoiulus tanymorphus), white ball (Pseudoflagellophorella eskovi), red ring (Pseudoflagellophorella papilioformis).
Figure 3 from: Kokhia MS, Golovatch SI (2020) Diversity and distribution of the millipedes (Diplopoda) of Georgia, Caucasus. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 199-219. https://doi.org/10.3897/zookeys.930.47490
Figure 3 Map of western Georgia with its transect (light blue), Pitsunda – Arabika Plateau – Khaishi – Bagdati – Batumi, and macro relief (bottom).
Figure 15 from: Golovatch SI, Liu W (2020) Diversity, distribution patterns, and fauno-genesis of the millipedes (Diplopoda) of mainland China. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 153-198. https://doi.org/10.3897/zookeys.930.47513
Figure 15 Distribution of the family Haplodesmidae, genus Eutrichodesmus in mainland China. Red lines show the transect Mengla – Hekou – Beichuan – Guiyang – Huanjiang – Guilin – Yichang – Qingyuan – Guidong – Fenyi – Wuyishan – Hangzhou, along which the elevations are crudely indicated below. 1E. dorsiangulatus2E. monodentus3E. arcicollaris4E. triangularis5E. tenuis6E. latellai7E. obliteratus8E. incisus9E. latus10E. soesilae11E. triglobius12E. distinctus13E. trontelji14E. planatus15E. similis16E. sketi17E. lipsae18E. jianjia19E. apicalis20E. digitatus21E. spinatus22E. simplex23E. anisodentus24E. pectinatidentis.
Figure 3 from: Golovatch SI, Liu W (2020) Diversity, distribution patterns, and fauno-genesis of the millipedes (Diplopoda) of mainland China. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 153-198. https://doi.org/10.3897/zookeys.930.47513
Figure 3 Distribution of the family Paracortinidae, genus Paracortina in mainland China. Red lines show the transect Batang – Shangrila – Yajiang – Zhenxiong – Baise, along which the elevations are crudely indicated below. 1P. viriosa2P. serrata3P. thallina4P. carrinata5P. leptoclada6P. stimula7P. voluta8P. chinensis9P. yinae10P. zhangi.
Figure 13 from: Golovatch SI, Liu W (2020) Diversity, distribution patterns, and fauno-genesis of the millipedes (Diplopoda) of mainland China. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 153-198. https://doi.org/10.3897/zookeys.930.47513
Figure 13 Distribution of the family Paradoxosomatidae, genus Tylopus in mainland China. Red lines show the transect Shangrila – Dali – Mengzi – Jinyunshan – Du'an, along which the elevations are crudely indicated below. 1T. reductus2T. kabaki3T. similis4T. schawalleri5T. sinensis6T. nigromarginatus7T. deharvengi.
Figure 10 from: Golovatch SI, Liu W (2020) Diversity, distribution patterns, and fauno-genesis of the millipedes (Diplopoda) of mainland China. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 153-198. https://doi.org/10.3897/zookeys.930.47513
Figure 10 Distribution of the family Paradoxosomatidae, genus Hedinomorpha in mainland China. Red lines show the transect Shangrila – Ganzi – Liangshan – Xining – Lanzhou – Jiuzhaigou – Xi'an, along which the elevations are crudely indicated below. 1H. montana2H. yunnanensis3H. proxima4H. crassiterga5H. bifida6H. subnigra7H. reducta8H. martensi9H. circofera10H. affinis11H. nigra12H. altiterga13H. flavobulbus14H. biramipedicula15H. jeekeli; neither H. circularis nor H. hummelii is mapped because their exact type localities remain unknown.
Figure 11 from: Golovatch SI, Liu W (2020) Diversity, distribution patterns, and fauno-genesis of the millipedes (Diplopoda) of mainland China. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 153-198. https://doi.org/10.3897/zookeys.930.47513
Figure 11 Distribution of the family Paradoxosomatidae, genus Sigipinius in mainland China. Red lines show the transect Aksu – Shangrila – Lijiang – Kangding – Jiuzhaigou, along which the elevations are crudely indicated below. 1S. kabaki2S. montana3S. spiniger4S. dentiger5S. campanuliformis6S. complex7S. simplex8S. pinnifer9S. grahami.
Figure 12 from: Golovatch SI, Liu W (2020) Diversity, distribution patterns, and fauno-genesis of the millipedes (Diplopoda) of mainland China. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 153-198. https://doi.org/10.3897/zookeys.930.47513
Figure 12 Distribution of the family Paradoxosomatidae, genus Hylomus in mainland China. Red lines show the transect Tianlin – Ziyun – Du'an – Huanjiang – Guilin – Linwu – Qingyuan – Jiujiang, along which the elevations are crudely indicated below. 1H. minutuberculus2H. getuhensis3H. phasmoides4H. variabilis5H. parvulus6H. scolopendroides7H. nodulosus8H. scutigeroides9H. spinitergus10H. lui11H. yuani12H. cornutus13H. lingulatus14H. spinissimus15H. eupterygotus16H. laticollis17H. simplipodus18H. similis19H. draco; H. longispinus is not mapped because its exact type locality remains unknown.
Figure 5 from: Kokhia MS, Golovatch SI (2020) Diversity and distribution of the millipedes (Diplopoda) of Georgia, Caucasus. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 199-219. https://doi.org/10.3897/zookeys.930.47490
Figure 5 Map of eastern Georgia with its transect (light blue), Omalo – Tianeti – Akhmeta – Shilda – Kvareli – Lagodekhi – Tamariani, and its macro relief (bottom).
Tracking Decomposition Layer Formation in Thin-Film Si Electrodes via Thermogalvanic Profiles
<p>This dataset contains the raw data for the publication "Tracking Decomposition Layer Formation in Thin-Film Si Electrodes via Thermogalvanic Profiles" by Hubrechtsen et al, published in Small Methods. The upload includes all data for the original figures presented in the main paper and the supporting information, organized in labelled folders containing raw data and the corresponding figure. </p>
Figure 7 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 7 Egerocoris gen. nov. new species, subgenital plate. A, B.E. dimorphus sp. nov.; C, D.E. ecuatorianus sp. nov.; E, F.E. chaparensis sp. nov.; A. Subgenital plate right posterolateral view; C, E. Subgenital plate right lateral view; B, D, F. Subgenital plate posterior view; DT–dorsal tooth; LPSP–left process of subgenital plate; RPSP–right process of subgenital plate.
Figure 4 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 4 Egerocoris dimorphus sp. nov., dorsal view of cuneus. A. Male holotype; B. Female paratype.
Figure 10 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 10 Egerocoris gen. nov. new species, aedeagus right lateral view. A.E. dimorphus sp. nov.; B.E. ecuatorianus sp. nov.; C.E. chaparensis sp. nov.; Ae–aedeagus; BE–basal expansion.
Figure 6 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 6 Egerocoris gen. nov. new species, dorsal and ventral views of genital capsule. A, B.E. dimorphus sp. nov.; C, D.E. ecuatorianus sp. nov.; E, F.E. chaparensis sp. nov.; A, C, E. Genital capsule dorsal view; B, D, F. Genital capsule ventral view; DT–dorsal tooth; RP–right paramere; LP–left paramere; LPSP–left process of subgenital plate; RPSP–right process of subgenital plate.
Figure 3 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 3 Thomasomiris gen. nov. and Egerocoris gen. nov. new species, head and pronotum lateral view. A.T. setosus sp. nov., female holotype; B.E. dimorphus sp. nov., male holotype; C.E. ecuatorianus sp. nov., male holotype; D.E. chaparensis sp. nov., male holotype.
Figure 5 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 5 Egerocoris gen. nov. new species, left lateral view of genital capsule. A, B.E. dimorphus sp. nov.; C, D.E. ecuatorianus sp. nov.; E, F.E. chaparensis sp. nov.; A, C, E. Genital capsule not dissected; B, D, F. Genital capsule dissected; DT–dorsal tooth; LPSP–left process of subgenital plate; RPSP–right process of subgenital plate.
Figure 1 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 1 Thomasomiris gen. nov. and Egerocoris gen. nov. new species, dorsal habitus and labels. A.T. setosus sp. nov., female holotype; B.E. dimorphus sp. nov., male holotype; C.E. ecuatorianus sp. nov., male holotype; D.E. chaparensis sp. nov., male holotype.
Figure 2 from: Minghetti E, Montemayor SI, Dellapé PM (2024) Two new genera and four new species of Neotropical Eccritotarsini (Heteroptera, Miridae, Bryocorinae). Deutsche Entomologische Zeitschrift 71(1): 1-15. https://doi.org/10.3897/dez.71.104130
Figure 2 Thomasomiris gen. nov. and Egerocoris gen. nov. new species, head frontal view. A.T. setosus sp. nov., female holotype; B.E. dimorphus sp. nov., male holotype; C.E. ecuatorianus sp. nov., male holotype; D.E. chaparensis sp. nov., male holotype.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.