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998 results for “Central Asia”
Gestational Diabetes in Central Asia: Prevalence and Management
ClinicalTrials.gov study NCT02436551. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Data from: Elevated precipitation alters the community structure of spring ephemerals by changing dominant species density in Central Asia
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Global Hyperspectral Imaging Spectral-library of Agricultural crops for Central Asia V001
The Global Hyperspectral Imaging Spectral-library of Agricultural crops (GHISA) is a comprehensive compilation, collation, harmonization, and standardization of hyperspectral signatures of agricultural crops of the world. This hyperspectral library of agricultural crops is developed for all major world crops and was collected by United States Geological Survey (USGS) and partnering volunteer agencies from around the world. Crops include wheat, rice, barley, corn, soybeans, cotton, sugarcane, potatoes, chickpeas, lentils, and pigeon peas, which together occupy about 65% of all global cropland areas. The GHISA spectral libraries were collected and collated using spaceborne, airborne (e.g., aircrafts and drones), and ground based hyperspectral imaging spectroscopy.The GHISA for Central Asia (GHISACASIA) Version 1 product provides dominant crop data (wheat, rice, corn, alfalfa, and cotton) in different growth stages across the Galaba and Kuva farm fields in the Syr Darya river basin in Central Asia. The GHISA hyperspectral library for the two irrigated areas was developed using Earth Observing-1 (EO-1) Hyperion hyperspectral data acquired in 2007 and ASD (Analytical Spectral Devices, Inc.) Spectroradiometer data acquired in 2006 and 2007. GHISACASIA is extracted from three Hyperion hyperspectral images and several thousands of field ASD Spectroradiometer data. Measurements were taken from 1,232 randomly chosen points scattered across the two farm sites throughout the growing season. All the processing algorithms are coded in Statistical Analysis System (SAS) format and available for download.Provided in the .xlsx files are the spectral library including image information, plot IDs, study area, instrument, Julian or acquisition date, and crop type labels for Central Asia sample fields.
Central Asia Temperature and Precipitation Data, 1879-2003, Version 1
This data set provides temperature and precipitation data from 298 meteorological stations in the Northern Tien Shan and Pamir Mountain Ranges of Central Asia, specifically from stations in Kazakhstan, Kyrgyzstan, Tajikistan, Turkmenistan, and Uzbekistan. The period of record covered by each station is variable, however, most stations have almost 100 years of observations with the earliest record from 1879 and the latest from 2003. The data are stored as tab-delimited ASCII text format, Microsoft Excel, and PDF, and are availabe via FTP.
Figure 4 in A new lacewing species of the Chrysoperla carnea species-group from central Asia associated with conifers (Neuroptera: Chrysopidae)
Figure 4. Dorsal view of third-instar larval head capsule (left half) of Chrysoperla duellii sp. nov. The drawing represents the typical condition seen in 21 individuals raised from the eggs of adults from several populations in Kyrgyzstan. The colour insert is a typical mature third-instar larva of the species.
Figure 3 in A new lacewing species of the Chrysoperla carnea species-group from central Asia associated with conifers (Neuroptera: Chrysopidae)
Figure 3. Adult of Chrysoperla duellii sp. nov.: (a) non-diapausing green form and (b) diapausing redfaced form. Note retention of green ground colour in (b), the overwintering (diapausing) form of C. duellii.
Figure 6 in A new lacewing species of the Chrysoperla carnea species-group from central Asia associated with conifers (Neuroptera: Chrysopidae)
Figure 6. Bar graph of the probabilities of assignment to species by a Discriminant Analysis of Principal Components (DAPC) applied to individuals identified acoustically as belonging to C. duellii sp. nov., C. boltiı C. 'carnea-K', C. downesiı C. calocedrii and C. mediterranea (same species as in Figure 5). Most individuals have a very high probability of assignment to the correct species determined by morphology and bioacoustics.
Figure 1 in A new lacewing species of the Chrysoperla carnea species-group from central Asia associated with conifers (Neuroptera: Chrysopidae)
Figure 1. Oscillographs (lower of each pair of traces) and sonographs (upper traces) of (a) a solo vibrational song (shortest repeated unit or SRU) of Chrysoperla duellii sp. nov. from Kyrgyzstan in central Asia and (b) a solo vibrational song of Chrysoperla downesi from northeastern North America, illustrating convergent song phenotypes in these two completely allopatric species. Each song was recorded at 25 ± 1°C and is drawn to the same timescale of 6.25 s. For C. duellii (a), each of the four distinctly different types of volleys characteristic of this species is labelled, while for C. downesi (b), each of its two distinctive volley types is noted. Within-volley vibrational frequency declines in each type of volley of C. duellii but increases in each type of volley of C. downesi – an important diagnostic (and plainly audible) difference between the two species.
Figure 5 in A new lacewing species of the Chrysoperla carnea species-group from central Asia associated with conifers (Neuroptera: Chrysopidae)
Figure 5. Scatterplot of the first two principal components of a Discriminant Analysis of Principal Components (DAPC) using genome-wide SNPs generated by restriction site-associated DNA sequencing (RADseq). Individuals from the six distinct carnea-group song species compared here cluster with members of their own species, and each species is isolated in principle component space. The compared species are C. duellii sp. nov.; C. duelli's two sympatric relatives, C. bolti and C. 'carnea-K'; and three conifer-associated species, C. downesiı C. calocedrii and C. mediterranea, with which C. duellii is acoustically and morphologically convergent but not sympatric. The inset displays relative amplitudes of eigenvalues of the four principal components of the DAPC.
Figure 2 in A new lacewing species of the Chrysoperla carnea species-group from central Asia associated with conifers (Neuroptera: Chrysopidae)
Figure 2. Visual comparison of the solo vibrational songs (SRUs) of the six species or distinctive populations of carnea-group lacewings known to be obligatory conifer associates. Only oscillographs are shown, all drawn to the same scale of 6.25 s. Taxa include (a) European/north African C. mediterranea, (b) central Asian Chrysoperla duellii sp. nov., (c) southern Californian C. calocedrii, (d) coastal Californian C. 'downesi FG', (e) North American C. downesi and (f) western North American C. 'downesi-2ʹ. All six conifer-associated taxa have multi-volleyed songs made up at least in part of short, rapidly repeated volley units, although song tempo and complexity vary considerably among the species.
FIGURE 14 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 14. Distribution records of Phrurolithus spp. and Bosselaerius spp. in Azerbaijan, Iran and Tajikistan: Red circles—P. festivus, Pink stars—P. azarkinae sp. n., Blue squares—P. pullatus, Yellow crosses—P. luppovae, Cyan triangles—B. hyrcanicus sp. n., Black asterisk—B. tajikistanicus sp. n.
FIGURE 13 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 13. Holotype female of Bosselaerius tajikistanicus sp. n. A–C habitus, dorsal, ventral and lateral; D, F macerated epigyne, dorsal and ventral; E intact epigyne, ventral. Scale=0.2 mm, if not otherwise indicated. Abbreviations: Fd—fertilization duct, Gr—receptacular gland, Pr—primary receptacle, Ro—receptacular outgrowth, Sr—secondary receptacle.
FIGURE 12 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 12. Epigyne of Bosselaerius hyrcanicus sp. n. A intact, ventral; B dissected, ventral; C–D variations, ventral; E–F macerated, dorsal. Scale=0.2 mm. Abbreviations: Ah—anterior hood, Gr—receptacular gland, Mh—mesal hood, Pr—primary receptacle.
FIGURE 11 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 11. SEM micrographs of Bosselaerius hyrcanicus sp. n., male. A–D palp, ventral, retrolateral, prolateral and ven- tro-retrolateral; E palpal tibia, ventral; F terminal part of the bulb, ventral; G setae covering tibia I; H extension of the palpal femur, prolateral; I trichobothrium on tibia I. Scale=0. 1 mm, if not otherwise indicated. Abbreviations: Be—base of embolus, Dp—dorsoprolateral apophysis, Em—embolus, Fe—femoral extension, St—subtegulum, Te—tooth of embolus base.
FIGURE 10 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 10. Male palp (A–E) and leg I (F) of Bosselaerius hyrcanicus sp. n. A prolateral; B dorsal; C ventroprolateral; D ventral; E–F retrolateral. Scale=0.2 mm. Abbreviations: Dp—dorsoprolateral apophysis, Em—embolus, Fe—femoral extension, Sd—sperm duct.
FIGURE 9 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 9. General appearance of Bosselaerius hyrcanicus sp. n., female (A–C) and male (D–G). A, D dorsal; B, E ventral; C, F lateral; G prosoma, dorsal.
FIGURE 8 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 8. Male palp of Phrurolithus luppovae. A ventral; B retrolateral; C dorso-retrolateral; D prolateral; E ventro-retrolateral; F dorsal. Scale=0.2 mm. Abbreviations: Em—embolus, Fe—femoral extension, Ra—retrolateral apophysis, Sa—subterminal apophysis, Sd—sperm duct, Ta—terminal apophysis, Va—retroventral apophysis.
FIGURE 5 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 5. Male of Phrurolithus pullatus. A prosoma, dorsal; B anterior part of prosoma showing palpal femur prolaterally; C palpal femur, retrolateral; D leg I, prolateral; E–H palp, ventral, retrolateral, ventro-retrolateral and dorso-retrolateral; I habi- tus, dorsal. Scale=0.2 mm, if not otherwise indicated. Abbreviations: Em—embolus, Fe—femoral extension, Ra—retrolateral apophysis, Sa—subterminal apophysis, Ta—terminal apophysis, Va—retroventral apophysis.
FIGURE 7 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 7. General appearance and epigyne of Phrurolithus luppovae. A, C–D female habitus, dorsal, lateral and ventral; B, E male habitus, dorsal and ventral; F male prosoma, frontal; G macerated epigyne, dorsal; H intact epigyne, ventral. Scale=0.2 mm, if not otherwise indicated. Abbreviations: Co—copulatory opening, Fd—fertilization duct, Gr—receptacular gland, Pr— primary receptacle, Ro—receptacular outgrowth, Sr—secondary receptacle.
FIGURE 6 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 6. General appearance and epigyne of Phrurolithus pullatus. A–C habitus, ventral, dorsal and lateral; D dissected epigyne, ventral; E, G–H macerated epigyne, dorsal; F intact epigyne, ventral. Scale=0.2 mm, if not otherwise indicated. Ab- breviations: Co—copulatory opening, Ep—endogynal plate, Gr—receptacular gland, Pr—primary receptacle, Sr—secondary receptacle.
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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.