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205 results for “Kashmir”
Figures 3–4. Zonitis afghanica Kaszab, 1958 in Meloidae (Coleoptera) of Pakistan and Kashmir with the description of three new species, new faunistic and taxonomic records, and a zoogeographic analysis
Figures 3–4. Zonitis afghanica Kaszab, 1958: habitus (3); Zonitoschema melanarthra (Fairmaire, 1894): habitus (4).
Figure 2 in Meloidae (Coleoptera) of Pakistan and Kashmir with the description of three new species, new faunistic and taxonomic records, and a zoogeographic analysis
Figure 2. Stenoria osellai Bologna sp. nov. (holotype): tegmen in ventral (a) and lateral (b) views, and spiculum gastrale (c).
Figure 8 in Meloidae (Coleoptera) of Pakistan and Kashmir with the description of three new species, new faunistic and taxonomic records, and a zoogeographic analysis
Figure 8. Hycleus pakistanus Bologna sp. nov. (holotype): mesosternum (a); tegmen in lateral view (b).
Fig. 2 in Range extension of Cyrtopodion himalayanus Duda and Sahi, 1978 (Reptilia: Sauria) in Jammu Province of State Jammu and Kashmir from District Doda, Northern India
Fig. 2. Cyrtopodion himalayanus (A) Enlarged lateral view of head. (B) Full lateral view of the body.
Fig. 4 in Lactarius indohirtipes and L. sharmai (Russulales, Basidiomycota): two novel species from Jammu and Kashmir, India
Fig. 4. Line drawings of Lactarius indohirtipes K.Verma, Uniyal & Mehmood sp. nov. (CAL 1918). A. Basidia. B. Pleuropseudocystidia. C. Basidiospores. D. Pleuromacrocystidia. E. Transverse section through pileipellis. Scale bars: A–B, D–E = 10 μm; C = 2 μm.
Fig. 6 in Lactarius indohirtipes and L. sharmai (Russulales, Basidiomycota): two novel species from Jammu and Kashmir, India
Fig. 6. Line drawings of Lactarius sharmai K.Verma, Uniyal & Mehmood sp. nov. (CAL 1919). A. Basidia. B. Pleuropseudocystidia. C. Basidiospores. D. Marginal cells. E. Cheiloleptocystidia. F. Transverse section through pileipellis. Scale bars: A–B, D–F = 10 μm; C = 5 μm.
Fig. 1 in Lactarius indohirtipes and L. sharmai (Russulales, Basidiomycota): two novel species from Jammu and Kashmir, India
Fig. 1. ML phylogram (RAxML) inferred from the nrITS alignment. Lactarius indohirtipes K.Verma, Uniyal & Mehmood sp. nov. is highlighted in bold blue.
Fig. 2 in Lactarius indohirtipes and L. sharmai (Russulales, Basidiomycota): two novel species from Jammu and Kashmir, India
Fig. 2. ML phylogram (RAxML) inferred from the ITS-rDNA alignment. Lactarius sharmai K.Verma, Uniyal & Mehmood sp. nov. is highlighted in bold blue.
Fig. 3. Lactarius indohirtipes K in Lactarius indohirtipes and L. sharmai (Russulales, Basidiomycota): two novel species from Jammu and Kashmir, India
Fig. 3. Lactarius indohirtipes K.Verma, Uniyal & Mehmood sp. nov. (CAL 1918). A. Basidiomata in the field. B. Basidiomata at the base camp. C. Lamellae showing latex. D. Pleuropseudocsytidia. E, F. Basidia. G. Pleuromacrocystidia. H. Transverse section through pileipellis. I. Lamellae edge. J. Basidiospores under light microscope. K–M. Basidiospores under SEM. Scale bars: A, C = 20 mm; D–J = 10 μm; K–M = 2 μm.
Fig. 5. Lactarius sharmai K in Lactarius indohirtipes and L. sharmai (Russulales, Basidiomycota): two novel species from Jammu and Kashmir, India
Fig. 5. Lactarius sharmai K.Verma, Uniyal & Mehmood sp. nov. (CAL 1919). A. Fresh basidiomata in the field. B. Lamellae showing latex. C. Bruised context. D. Basidiomata at the base camp. E–F. Basidia. G. Pseudocystidia. H–I. Cheiloleptocystidia. J. Transverse section through pileipellis. K. Basidiospores under light microscope. L–M. Basidiospores under SEM. Scale bars: E–K = 10 μm; L–M = 2 μm.
Figure 2 in Food habits of indian crested porcupine (Hystrix indica) (Kerr 1792), in district Bagh, Azad Jammu and Kashmir
Figure 2. Percent relative frequency of different parts of plants recovered from the fecal samples collected from the study area.
Figure 3 in Food habits of indian crested porcupine (Hystrix indica) (Kerr 1792), in district Bagh, Azad Jammu and Kashmir
Figure 3. Seasonal variation in the percentage of different parts of plant recovered from fecal samples in the study area.
Linked collectors and determiners for: University of Azad Jammu and Kashmir Herbarium.
Natural history specimen data linked to collectors and determiners held within, "University of Azad Jammu and Kashmir Herbarium". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0c4eacef-79ba-4b22-8822-291b2ce69f21">https://bionomia.net/dataset/0c4eacef-79ba-4b22-8822-291b2ce69f21</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0c4eacef-79ba-4b22-8822-291b2ce69f21">https://gbif.org/dataset/0c4eacef-79ba-4b22-8822-291b2ce69f21</a>. Formatted as a Frictionless Data package.
The Mental Health Crisis in Kashmir: An Epidemic Within A Pandemic
<p>It’s not a hidden fact that the Indian government wants sole claim over the State or now known as the Union Territory of Jammu and Kashmir. Kashmir is no stranger to lockdowns, curfews and military crackdowns when rules are not followed, and has always been the primary talking point whenever someone wants to defend the Indian Armies might or every time Pakistan threatens to free Kashmir from India’s stronghold.<br>It is interesting to note that for a state that everyone wants a piece of nobody in reality pays much heed to what the inhabitants of the state want. The narrative here is not just political but it is important to understand that no conversation about Kashmir can ever be apolitical. Everything that happens or has happened in the UT of Kashmir since India's independence in 1947 till the Abrogation of Article 370 in 2019, is always going to be political. While the rest of the world is updating their Covid-19 positive caseloads every day, not much is known about the number of positive cases, recovered cases, and deaths taking place in the<br>UT of Kashmir.<br>The 30 year long insurgency in Kashmir has resulted in several generations experiencing state induced violence as well as collective community violence. The official numbers state that about 40,000 people have died since India gained independence from the British in 1947. When young children see their primary and secondary caregivers die in front of their eyes or<br>not see them return home one fine day, a lot of questions arise. Some simple questions and some complex ones, the answers of which are not enough to soothe their aching soul for the loved ones they have lost. </p>
Receiver function data from Jammu and Kashmir seismological NETwork
<p>This data constitutes Radial component P-wave receiver functions computed at Gaussian width 2.5 for teleseismic earthquakes recorded at 20 broadband stations of the Jammu and Kashmir Seismological NETwork (JAKSNET). These P-RFs are used for modeling the crustal structure of the Jammu and Kashmir Himalaya.</p>
Fig. 1 in First report of successful Naegleria detection from environmental resources of some selected areas of Rawlakot, Azad Jammu and Kashmir, Pakistan
Fig. 1. Sampling sites in the targeted area of Rawlakot, Azad Jammu and Kashmir, Pakistan
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>
A new genus of treeshrew and other micromammals from the middle Miocene hominoid locality of Ramnagar, Udhampur District, Jammu & Kashmir, India
<p>The fossil record of treeshrews, hedgehogs, and other micromammals from the Lower Siwaliks of India is sparse. Here, we report on a new genus and species of fossil treeshrew, specimens of the hedgehog Galerix, and other micromammals from the middle Miocene (Lower Siwalik) deposits surrounding Ramnagar (Udhampur District, Jammu & Kashmir), at a fossil locality known as Dehari. The treeshrew from Dehari (<em>Sivatupaia ramnagarensis </em>gen. nov. et sp. nov.) currently represents the oldest record of fossil tupaiids in the Siwaliks, extending their time range by ~2.5-4.0 million years in the region. Dietary analyses suggest that the new tupaiid was likely adapted for a less mechanically challenging or more frugivorous diet compared to other extant and fossil tupaiids. The occurrence of Galerix has only been recently documented from the Indian Siwaliks and the Dehari specimens help establish the likely presence of a relatively large Siwalik Galerix species in the Ramnagar region. In addition to the new treeshrew and hedgehogs, new specimens of the rodents Kanisamys indicus, Sayimys sivalensis, and Murinae indet. from Dehari help confirm age estimates for the Ramnagar region equivalent to the Chinji Formation in Pakistan, most likely corresponding to the middle to upper part of the Chinji Formation.</p>
Local earthquake coda waveform from the Jammu And Kashmir Seismological NETwork (JAKSNET)
<p>This dataset contains local earthquake coda waveform and pre-signal noise waveforms from the Jammu And Kashmir Seismological NETwork (JAKSNET), a joint endeavor between the Indian Institute of Science Education and Research Kolkata (IISER-K), Shri Mata Vaishno Devi University (SMVD) and the University of Cambridge, UK. The network was initiated in July 2013 and comprised 24 broadband seismograph systems deployed across the J&K Himalaya. A total of 696 vertical component coda waveforms, from 121 small-to-moderate local earthquakes of magnitude between 3.0 and 5.5, within the epicentral distance of 200 km are provided in this database. Pre-signal representative noise from 22 stations, which recorded these earthquakes, have been provided for computing signal-to-noise ratio for the coda signal. The waveform data is sampled at 100 samples per second (sps), are corrected for instrument response, and filtered in the frequency band of 0.02 to 30 Hz. Coda waveforms start from twice the S-wave arrival time and are of 90 s duration. This data has been used to compute the seismic coda-wave attenuation of the Jammu and Kashmir Himalaya. The manuscript is submitted for review in JGR Solid Earth and this dataset complements the manuscript. </p>
Fig. 6 in Ichthyofaunal Diversity Of A Ramsar Site In Kashmir Himalayas - Wular Lake
Fig. 6. Graphical representation of Diversity indices.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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