Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
69
datasets available to search
ShareScore release 0.9.0
Dataset results
69 results for “relict forests”
FIGURE 5 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 5. Habitats: General view of the dry forest during rainy season (A), and during the dry season (B); Limestone outcrops ("Rochedo") within the dry forest where adult males of Oreobates remotus sp. nov. were found calling, and where the holotype was collected (C).
FIGURE 8 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 8. Bayesian consensus tree topology obtained from the combined molecular data set (cyt b and 16S) showing the placement of Oreobates remotus sp. nov. within Oreobates, and as sister taxon of O. heterodactylus. Numbers above nodes are posterior probabilities.
FIGURE 3 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 3. Adult paratopotypes of Oreobates remotus sp. nov. in life: (A) Male (MZUSP 141711) and (B) female (MZUSP 141710).
Fig. 11 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 11. Dendrogram of the similarity of the steppe faunogenetic complexes of hemipterans in Yakutia, the Minusinsk basin, Cis-Baikalia and Transbaikalia according to the Chekanovsky-Sørensen coefficient (DICE). Рис. 11. Дендрограмма сходства степных фауногенетических комплексов полужесткокрылых Якутии, Минусинской котловины, ПрибайкальЯ и ЗабайкальЯ по коЭффициенту Чекановского-СЪеренсена (DICE).
Fig. 10 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 10. True bugs of the steppe complex, found in relict forest-steppe phytocenoses of Central and North-East Yakutia. Foto by N.N. Vinokurov. Рис. 10. Полужесткокрылые степного комплекса реликтовых лесо-степных фитоценоЗов Центральной и Северо-Восточной Якутии. Pentatomomorpha: 10a — Enoplops sibiricus, 10b — Megalotomus ornaticeps, 10c — Rhopalus distinctus, 10d — Stictopleurus sericeus, 11e — Adomerus notatus, 10f — Irochrotus sibiricus, 10h — Sternodontus binodulus, 10i — Aelia frigida, 10j — Aelia sibirica, 10k — Carpocoris coreanus, 10l — Peribalus inclusus. Фото Н.Н. Винокурова.
Fig. 9 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 9. True bugs of the steppe complex, found in relict forest-steppe phytocenoses of Central and North-East Yakutia. Foto by N.N. Vinokurov. Рис. 9. Полужесткокрылые степного комплекса реликтовых лесо-степных фитоценоЗов Центральной и Северо-Восточной Якутии. a–g — Cimicomorpha: 9a — Nabis nigrovittatus, 9b — Leptopterna albescens, 9c — Notostira sibirica, 9d — Macrotylus mundulus, 9e — Derephysia foliacea abbreviata, 9f — Lasiacantha haplophylli, 9g — Tingis bianchii; h–l — Pentatomomorpha: 9h — Neides propinquus, 9i — Lygaeosoma sibiricum, 9j — Geocoris mongolicus, 9k — Pionosomus monochrous, 9l — Crophius bermani. Фото Н.Н. Винокурова.
Fig. 8 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 8. The relationship of chorological groups within the steppe complex of heteropteran in the middle taiga subzone of Yakutia. Рис. 8. СоотношениЯ хорологических групп степного комплекса полужесткокрылых среднетаежной подЗоны Якутии.
Fig. 7 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 7. Petrophytic steppes with participation Krascheninnikovia lenensis (Kumin.) on Cambrian limestones in the Lena valley, the vicinity of the Olekminsk town. Photo by N.K. Sosina. Рис. 7. Петрофитные степи с участием Krascheninnikovia lenensis (Kumin.) на кембрийских иЗвестнЯках в долине Лены, окрестности г. Олекминск. Фото Н.К. Сосиной.
Fig. 6 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 6. Petrophytic steppe slope (dominant Artemisia frigida) on the Lena River, Erkeeni valley. Photo by N.K. Sosina. Рис. 6. Петрофитный степной склон (доминант Artemisia frigida), р. Лена, долина ЭркЭЭни. Фото Н.К. Сосиной.
Fig. 5 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 5. Thermokarst alas depression in the Leno-Amga interfluve, Central Yakutia. Photo by A.P. Isaev. Рис. 5. АласнаЯ котловина на Лено-Амгинском междуречье, ЦентральнаЯ ЯкутиЯ. Фото А.П. Исаева.
Fig. 4 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 4. Feather-grass steppe with Stipa capillata on the slope of the Lena River in the Tuymaada valley. Photo by N.K. Sosina. Рис. 4. КовыльнаЯ степь со Stipa capillata на склоне р. Лена в долине Туймаада. Фото Н.К. Сосиной.
Fig. 3. A in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 3. A fragment of a four-grass steppe (Cleistegenes squarrosa, Koeleria cristata, Stipa krylovii, and Festuca lenesis) in the lower slope of the Lena River, Tuymaada valley. Photo by N.K. Sosina. Рис. 3. Фрагмент четырехЗлаковой степи иЗ Cleistegenes squarrosa, Koeleria cristata, Stipa krylovii и Festuca lenesis в нижней части склона р. Лена, долина Туймаада. Фото Н.К. Сосиной.
Fig. 2 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 2. Asian part of the arid Daurian-Yakutian-Chukotian-Alaskan arc (after Galanin & Belikovich [2012], modified). Рис. 2. АЗиатскаЯ часть аридной даурско-Якутско-чукотско-алЯскинской дуги (по: Галанин, Беликович [2012], с иЗменениЯми).
Fig. 1 in Zoogeographic relationships between true bugs (Heteroptera) in the fauna of relict forest-steppes of the middle taiga subzone of Yakutia and the steppes of southern East Siberia
Fig. 1. Distribution of steppe vegetation in Yakutia (after Troeva & Cherosov [2012], modified). Рис. 1. Распространение степной растительности в Якутии (по: Troeva & Cherosov [2012], c иЗменениЯми).
Distribution. Endemic to relict forest patches at elevations over 1500 m in the Rungwe and Udzungwa Mts in S Tanzania. Not known from any of the other Eastern Arc Mts in Tanzania. in Soricidae
Distribution. Endemic to relict forest patches at elevations over 1500 m in the Rungwe and Udzungwa Mts in S Tanzania. Not known from any of the other Eastern Arc Mts in Tanzania.
FIGURES 71–84 in New species and records of Dissomphalus Ashmead (Hymenoptera, Bethylidae) from Cerrado, Caatinga and relicts of the Atlantic Forest from northeastern Brazil
FIGURES 71–84. Dissomphalus, ♂. 71–75. D. caipora sp. nov.. 71. Head, dorsal view. 72. Tergal process, dorsal view. 73. Genitalia, dorsal view. 74. Genitalia, ventral view. 75. Apical lobes of aedeagal dorsal body, dorsal view. 76–79. D. mapinguari sp. nov.. 76. Head, dorsal view. 77. Tergal process, dorsal view. 78. Genitalia, dorsal view. 79. Genitalia, ventral view. 80–84. D. matintaperera sp. nov.. 80. Head, dorsal view. 81. Tergal process, dorsal view. 82. Genitalia, dorsal view. 83. Genitalia, ventral view. 84. Apex of aedeagal ventral ramus, ventral view. Scales-bar: 100 µm.
FIGURES 42–55 in New species and records of Dissomphalus Ashmead (Hymenoptera, Bethylidae) from Cerrado, Caatinga and relicts of the Atlantic Forest from northeastern Brazil
FIGURES 42–55. Dissomphalus, ♂. 42–46. D. boibumba sp. nov.. 42. Head, dorsal view. 43. Tergal process, dorsal view. 44. Genitalia, dorsal view. 45. Genitalia, ventral view. 46. Apical lobes of aedeagal dorsal body, dorsal view. 47–50. D. capelobo sp. nov.. 47. Head, dorsal view. 48. Tergal process, dorsal view. 49. Genitalia, dorsal view. 50. Genitalia, ventral view. 51–55. D. iracema sp. nov.. 51. Head, dorsal view. 52. Tergal process, dorsal view. 53. Genitalia, dorsal view. 54. Genitalia, ventral view. 55. Apical lobes of aedeagal dorsal body, dorsal view. Scales-bar: 100 µm.
FIGURES 56–70 in New species and records of Dissomphalus Ashmead (Hymenoptera, Bethylidae) from Cerrado, Caatinga and relicts of the Atlantic Forest from northeastern Brazil
FIGURES 56–70. Dissomphalus, ♂. 56–59. D. joaquinae sp. nov.. 56. Head, dorsal view. 57. Tergal process, dorsal view. 58. Genitalia, dorsal view. 59. Genitalia, ventral view. 60–65. D. torem sp. nov.. 60. Head, dorsal view. 61. Tergal process, dorsal view. 62. Genitalia, dorsal view. 63. Genitalia, ventral view. 64. Apical lobes of aedeagal dorsal body, posterior view. 65. Outer lobe of aedeagal dorsal body, lateral view. 66–70. D. boiuna sp. nov.. 66. Head, dorsal view. 67. Tergal process, dorsal view. 68. Genitalia, dorsal view. 69. Genitalia, ventral view. 70. Apical lobes of aedeagal dorsal body, ventral view. Scales-bar: 100 µm.
FIGURES 30–41 in New species and records of Dissomphalus Ashmead (Hymenoptera, Bethylidae) from Cerrado, Caatinga and relicts of the Atlantic Forest from northeastern Brazil
FIGURES 30–41. Dissomphalus, ♂. 30–33. D. acutipupu sp. nov.. 30. Head, dorsal view. 31. Tergal process, dorsal view. 32. Genitalia, dorsal view. 33. Genitalia, ventral view. 34–37. D. cuca sp. nov.. 34. Head, dorsal view. 35. Tergal process, dorsal view. 36. Genitalia, dorsal view. 37. Genitalia, ventral view. 38–41. D. jurupari sp. nov.. 38. Head, dorsal view. 39. Tergal process, dorsal view. 40. Genitalia, dorsal view. 41. Genitalia, ventral view. Scales-bar: 100 µm.
FIGURES 17–29 in New species and records of Dissomphalus Ashmead (Hymenoptera, Bethylidae) from Cerrado, Caatinga and relicts of the Atlantic Forest from northeastern Brazil
FIGURES 17–29. Dissomphalus, ♂. 17–20. D. iara sp. nov.. 17. Head, dorsal view. 18. Tergal process, dorsal view. 19. Genitalia, dorsal view. 20. Genitalia, ventral view. 21–24. D. saci sp. nov.. 21. Head, dorsal view. 22. Tergal process, lateral view. 23. Genitalia, dorsal view. 24. Genitalia, ventral view. 25–29. D. irupe sp. nov.. 25. Head, dorsal view. 26. Spine in gena, lateral view. 27. Tergal process, dorsal view. 28. Genitalia, dorsal view. 29. Genitalia, ventral view. Scales-bar: 100 µm.
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.