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1,334 results for “Himalaya”
Figures 12–13 in Taxonomic review of the Teulisna pallida (Moore) species-group with descriptions of two new species from the Himalayas (Lepidoptera: Erebidae: Arctiinae: Lithosiini)
Figures 12–13. Teulisna spp.: male genitalia. Depositories of the specimens dissected: 12 in MWM/ZSM; 13 in MfN.
Data from: Effect of altitude on volatile organic and phenolic compounds of artemisia brevifolia wall ex Dc. from the Western Himalayas
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Elevational range size patterns of vascular plants in Himalaya contradict Rapoport’s rule
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Resources and seasonality drive the composition of mixed-species bird flocks along an elevational gradient in the Himalaya
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Modeled Ice thickness Distribution of Glaciers in Chandra Basin, Western Himalayas, India
<p>The glacier ice thickness distribution data provided here was generated using an optimally parameterized GlabTop2_IITB [Glacier Bed Topography Indian Institute of Technology Bombay (IITB) version] model with high-resolution DEM as an input. This research work is under publication in the Journal of Mountain Science. The study reports modeled ice thickness distribution and total ice volume of selected 65 glaciers (>0.5 km<sup>2</sup>) of Chandra basin, located in Western Himalayas. </p> <p> </p>
Potential Sites for Future Lake Formation in Glaciers of Chandra Basin, Western Himalayas, India
<p>The disappearance of mountain glaciers and the formation or expansion of glacial lakes are amongst the most distinguishable and dynamic impacts of climate warming in the Himalayas. The given dataset provides the potential sites for future lake formation over 65 study glaciers in the Chandra basin of the western Himalayas.</p>
Data from: 'In and out of' the Qinghai-Tibet Plateau and the Himalayas: centers of origin and diversification compared across five clades of Eurasian montane and alpine passerine birds
<p>Encompassing some of the major hotspots of biodiversity on Earth, large mountain systems have long held the attention of evolutionary biologists. The region of the Qinghai-Tibet Plateau (QTP) is considered a biogeographic source for multiple colonization events into adjacent areas including the northern Palearctic. The faunal exchange between the QTP and adjacent regions could thus represent a one-way street ('out of' the QTP). However, immigration into the QTP region has so far received only little attention, despite its potential to shape faunal and floral communities of the QTP. In this study, we investigated centers of origin and dispersal routes between the QTP, its forested margins and adjacent regions for five clades of alpine and montane birds of the passerine superfamily Passeroidea (Johansson et al., 2008; Selvatti et al., 2015). We performed an ancestral area reconstruction using BioGeoBEARS and inferred a time-calibrated backbone phylogeny for 279 taxa of Passeroidea. The oldest endemic species of the QTP was dated to the early Miocene (ca. 18 Ma). Several additional QTP endemics evolved in the mid to late Miocene (12–7 Ma). The inferred centers of origin and diversification for some of our target clades matched the 'out of Tibet hypothesis' or the 'out of Himalayas hypothesis' for others they matched the 'into Tibet hypothesis'. Three radiations included multiple independent Pleistocene colonization events to regions as distant as the Western Palearctic and the Nearctic. We conclude that faunal exchange between the QTP and adjacent regions was bidirectional through time, and the QTP region has thus harbored both centers of diversification and centers of immigration.</p>
Glacier Inventories in the Chhombo Chhu Watershed of Tista basin, Sikkim Himalaya, India
<p>Multi-temporal inventory of glaciers compiled for the Chhombo Chhu Watershed (CCW) of Tista basin, Sikkim Himalaya, India. The CCW consists of 74 glaciers (>0.02 km<sup>2</sup>) with a mean glacier size of 0.61 km<sup>2</sup>. Change analysis based on the glaciers outlines obtained from declassified hexagon KH-9 (1975), Landsat 5 TM (1989), Landsat 7 ETM+ (2000), Landsat 5 TM (2010) and Sentinel 2A (2018). The total glacier area in 1975 was 62.6 ±0.7 km<sup>2</sup>; by 2018 the glacier area had decreased to 44.8 ± 1.5 km<sup>2</sup>, an area loss of 17.9 ± 1.7 km<sup>2</sup> (0.42 ± 0.04 km<sup>2 </sup>a<sup>–1</sup>). Debris free glaciers exhibit more area loss by 11.8 ± 1.2 km<sup>2</sup> (0.27 ± 0.03 km<sup>2 </sup>a<sup>–1</sup>) followed by partially debris-covered (5.0 ± 0.4 km<sup>2</sup> or 0.12 ± 0.01 km<sup>2 </sup>a<sup>–1</sup>) and maximum debris-covered (1.0 ± 0.1 km<sup>2</sup> or –0.02 ± 0.002 km<sup>2 </sup>a<sup>–1</sup>) glaciers. The quantum of glacier area loss in the CCW of Sikkim Himalaya took its pace during 2000–2010 (0.62 ± 0.5 km<sup>2 </sup>a<sup>–1</sup>) and 2010–2018 (0.77 ± 0.6 km<sup>2 </sup>a<sup>–1</sup>) timeframes. Field investigations of selected glaciers and climatic records also support the trend in glacier recession in the CCW, as a result of significant increase in temperature trend and more or less static precipitation since 1995. Glacier retreat rates in the CCW were almost similar to the Changme Khangpu basin and other selected glaciers in Sikkim Himalaya. Thus, this glacier inventory and area change analysis will provide valuable information to the glaciological and hydrological community for the future modeling and planning of the water resources in Sikkim state of Eastern Himalaya.</p>
Data for: A comprehensive dataset of forest above-ground biomass from field observations, machine learning and topographically augmented allometric models over the Kashmir Himalaya
<p>The repository contains observed Above Ground Biomass (AGB) estimates at about 275 sample plots chosen for AGB assessment in the forests of Kashmir Himalaya. The AGB is assessed as a fucntion of dbh using various allometric equations developed specifically for the region. It also contains the AGB for years 1978, 1990, 2000, 2010 and 2021 predicted using topographcally augmeneted multivariate regression model. The extent of forest, delineated using on-screen digitization using Landsat and Sentinel image collection at decadal scale is also provided for the years 1978, 1990, 2000, 2010 and 2021.</p>
FIG. 2 in Foraminiferal biostratigraphy, facies and sequence stratigraphy analysis across the K-Pg Boundary in Hazara, Lesser Himalayas (Dhudial Section)
FIG. 2. — Generalized stratigraphy of the study area (Shah 2009).
Fig. 1 in A new species of snail-eating snakes of the genus Pareas Wagler, 1830 (Reptilia: Serpentes) from eastern Himalayas, India
Fig. 1. Pareas kaduri sp. nov. Holotype, ♂ (BNHS 3574) in life. Photograph by Zeeshan A. Mirza.
Fig. 2 in A new species of snail-eating snakes of the genus Pareas Wagler, 1830 (Reptilia: Serpentes) from eastern Himalayas, India
Fig. 2. Pareas kaduri sp. nov. Holotype, ♂ (BNHS 3574). A–B. Lateral views. Scale bars = 25 mm.
Fig. 12 in New and little-known bees of the genus Sphecodes Latreille, 1804 (Hymenoptera: Apoidea: Halictidae) from the Himalayas
Fig. 12. Sphecodes lasimensis Blüthgen, 1927, ♀ (PCMS). Habitus in lateral view. Scale bar = 1 mm.
Fig. 39 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 39: Nebria (Epinebriola) incarinata sp. nov. Male holotype. Scale bar = 5 mm.
Fig. 35 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 35: Nebria (Epinebriola) pseudorestias sp. nov. Holotype. Scale bar = 0.5 mm.
Fig. 26 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 26: Nebria (Epinebriola) numburica sp. nov. Holotype. Scale bar = 5 mm.
Fig. 24 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 24: Nebria (Epinebriola) tuberculata sp. nov. Holotype. Scale bar = 5 mm.
Fig. 28 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 28: Nebria (Epinebriola) retingensis sp. nov. Holotype. Scale bar = 5 mm.
Fig. 23 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 23: Nebria (Epinebriola) impunctata sp. nov. Paratype. Scale bar = 5 mm.
Fig. 19 in Notes on the Nebria subgenus Epinebriola K. DANIEL, 1904 with the description of Barbonebriola subgen. nov. and 13 new species from the Himalaya-Tibet orogen (Coleoptera, Carabidae, Nebriini)
Fig. 19: Nebria (Epinebriola) triseriata sp. nov. Male paratype.
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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.