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Alpine grassland plant dataset
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Fig. 2 in Interglacial refugia and range shifts of the alpine grasshopper Stenobothrus cotticus (Orthoptera: Acrididae: Gomphocerinae)
Fig. 2 Tree from neighbour-joining analysis of selected European Stenobothrus species based on Kimura-2-parameter distances among 1,000 bp sequences of the mitochondrial gene cytochrome oxidase, subunit 1 (co1). Chorthippus parallelus used as outgroup. Bootstrap support values ≥ 50% among 1,000 bootstrap replicates given above branches
Fig. 1 in Interglacial refugia and range shifts of the alpine grasshopper Stenobothrus cotticus (Orthoptera: Acrididae: Gomphocerinae)
Fig. 1 Courtship songs of Stenobothrus cotticus from Col d'Izoard in France (a–c) and from the Rila Mts. in Bulgaria (d). a Overview of a whole courtship sequence. b Section of 4 s duration. c Single syllable
FIGURE 1. The phylogenetic tree was constructed from18S in Tardigrades in the alpine region of Northeast China with an integrative description of Crenubiotus liangshuiensis sp. nov.
FIGURE 1. The phylogenetic tree was constructed from18S rRNA+28S rRNA+ITS-2+COI sequences. Numbers at nodes indicate Bayesian posterior probability, asterisks indicate maximum support (1.00), scale bar represents substitutions per position in the BI. The new species of the local samples are highlighted. Bars at the nodes indicate 0.95 highest probability density. The sequences of the related species were downloaded from GenBank (see supplementary material Table S2 for details).
FIGURE 3 in Tardigrades in the alpine region of Northeast China with an integrative description of Crenubiotus liangshuiensis sp. nov.
FIGURE 3. Crenubiotus liangshuiensis sp. nov. cuticle granulation and pores under PCM. A–Leg IV internal granulation; B–Leg IV quadrangular pores; C–bulges on Leg III; D–Dorso-caudal band of granulation. A dashed empty arrow indicates the sparse tubercles of internal side, a white full arrow indicates the bigger quadrangular pore, a black full arrow indicates the bulges; an arrowhead indicates the granulation band. A, B: Holotype (NMS0011); C, D: Paratype (NMS0012). Scale bar: 10 µm.
Fig. 1 in Reconciling ecological and phytogeographical spatial boundaries to clarify the limits of the montane and alpine regions of sub-Sahelian Africa
Fig. 1. The most prominent high elevation areas of the Afromontane region in sub-Sahelian Africa (A–X) as well as the location of the Cape Floristic Region (Y). Adapted from Hedberg (1994), Carbutt and Edwards (2001) and Wesche et al. (2008). The Great Rift is represented by B–N, Q–U; the Albertine Rift is represented by O and P; and the Great Escarpment is represented by V–X. Key to abbreviations: A, Mount Cameroon, Cameroon (4040 m); B–K, Ethiopian Highlands (north-east Africa, Ethiopia); B, Simen Mountains (4543 m); C, Mount Guna (4225 m); D, Mount Abuna Yosef (4260 m); E, Mount Choqa (4113 m); F, Mount Abuye Meda (4012 m); G, Mangestu Mountains (4072 m); H, Mount Bada (4036 m); I, Mount Kaka (4200 m); J, Bale Mountains (4377 m); K, Mount Guge (4203 m); L, Mount Elgon, Kenya/Uganda (4315 m); M, Mount Kenya, Kenya (5199 m); N, Aberdare Mountains, Kenya (3994 m); O, Rwenzori Mountains, Democratic Republic of Congo/Uganda (5109 m); P, Virunga Mountains, Democratic Republic of Congo/Rwanda/Uganda (4507 m); Q, Mount Kilimanjaro, Tanzania (5895 m); R, Mount Hanang, Tanzania (3417 m); S, Mount Meru, Tanzania (4565 m); T, Nyika Plateau, Malawi (2605 m); U, Mount Mulanje, Malawi (3002 m); V, Mount Nyangani, Zimbabwe (2592 m); W, Chimanimani Mountains, Mozambique/Zimbabwe (2440 m); X, Drakensberg Alpine Centre, Lesotho/South Africa (3482 m) bisecting the northeastern escarpment (X1) and the south-eastern escarpment (X2); Y, Cape Floristic Region.
FIGURES 8–14 in Two new species of the sharpshooter genus Paratubana (Hemiptera: Cicadellidae Cicadellini) from alpine fields of Rio de Janeiro state, southeastern Brazil
FIGURES 8–14. Paratubana takiyae sp. nov., male. 8, genital capsule, lateral view. 9, pygofer, valve, and subgenital plate, lateral view. 10, valve and subgenital plate, ventral view. 11, connective and style, dorsal view. 12, paraphyses, ventral view. 13, paraphyses, lateral view. 14, aedeagus, lateral view. Scale bars = 0.5 mm.
Figure 7 in Alpine-Himalayan orogeny drove correlated morphological, molecular, and ecological diversification in the Persian dwarf snake (Squamata: Serpentes: Eirenis persicus)
Figure 7. Deformation wireframe showing shape variation (in dark blue) from consensus (in light blue), across the first principal component, on the value equal to the 0.04 scale factor (A) and the −0.04 scale factor (B).
Figure 4 in Alpine-Himalayan orogeny drove correlated morphological, molecular, and ecological diversification in the Persian dwarf snake (Squamata: Serpentes: Eirenis persicus)
Figure 4. Landmarks that were used on the intersection of dorsal head scales in Eirenis. For detailed definitions of each landmark see Appendix 2.
Switzerland 2022 Field Campaign - 360 degree Alpine Tethys rifted margin outcrops
<p>360 degree photospheres acquired during the summer data acquisition campaign targeting the pristine remnant outcrops of the Alpine Tethys rifted margins that are exposed in the Swiss Alps</p>
Metagenomic analysis revealed the microbial-mediated soil organic carbon loss under the degeneration succession in alpine meadow
GEO Series GSE93158. uncultured soil microorganism. 20 samples. Type: Other.
Alpine political passion
<u>Source</u>: Flickr <br><u>4DCity URL</u>: <a href="https://4dcity.org/imgupload/1656262224.5931.jpg">https://4dcity.org/imgupload/1656262224.5931.jpg</a> <br>
FIGURE 41 in New species and a new record of the mite family Scutacaridae (Acari: Heterostigmata) from alpine New Zealand
FIGURE 41. DIC micrographs of Scutacarus crassus sp. nov., female: A—dorsal view, B—ventral view.
FIGURE 2 in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)
FIGURE 2. Holotype of Arenaria minutissima (W16719!). © Natural history Museum Vienna.
Assessing the ecological uniqueness of alpine grassland
<p>The data include original measurements of plant community presence-absence across six major geographic regions in the alpine meadows of the Qinghai-Tibet Plateau. It encompasses not only surveys of plant functional traits and basic community characteristics but also detailed environmental factors such as soil conditions, rainfall, and altitude. These comprehensive datasets allow for in-depth analyses of plant functional diversity, community ecological uniqueness, and associated relationships.</p>
Swiss Alpine Refuges Dataset
<p>This dataset contains 4480 images of Swiss mountain alpine refuges collected from three online databases (Swiss Alpine Club SAC, Capanneti.ch, and Hikr.org). The data were cropped, cleaned and formatted for GAN experiments.</p> <p><strong>Source:</strong><br> Swiss Alpine Club SAC<br> Capanneti.ch<br> Hikr.org</p> <p><strong>Data:</strong><br> <em>00_full_dataset (4480 images)<br> 01_curated_dataset_1 (613 images)<br> 02_curated_dataset_2 (1203 images)<br> 03_curated_dataset_3 (624 images)<br> 04_curated_dataset_4 (3791 images)</em></p>
Transcriptional acclimation to warming temperatures in the Australian alpine herb Wahlenbergia ceracea
GEO Series GSE274951. Wahlenbergia ceracea. 72 samples. Type: Expression profiling by high throughput sequencing.
alpine plant removal
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An improved IBIS model for simulating NPP dynamics in alpine mountain ecosystems: a case study in the eastern Qilian Mountains, northeastern Tibetan Plateau
<p>The data set include figures and tables. They provide supports for an improved IBIS model for simulating NPP dynamics in alpine mountain ecosystem.</p> <p>Fig. 1 Study area</p> <p>Fig. 2 Framework of the IBIS<sub>i</sub> model</p> <p>Fig. 3 Spatialization of soil thickness</p> <p>Fig. 4 Nonlinear relation between soil thickness and slope.</p> <p>Fig. 5 Sample areas for validation</p> <p>Fig. 6 A comparison of NPP monitored by remote sensing, NPP simulated by the IBIS model and NPP simulated by IBIS<sub>i</sub> model in the EQM from 2000 to 2015.</p> <p>Table 1. Vegetation parameters regionalization</p> <p>Table 2. Initialization of total LAI</p>
Helicopter as logistic utility in alpine mountain regions: example Ennenda, Glarus, Switzerland
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.