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367 results for “Aloe”
FIG. 4. — A, B in Nouvelles remarques sur l'identité de l'Aloe deltoideodonta Baker (Xanthorrhoeaceae) et nouveau nom, Aloe horombensis nom. nov., pour les Aloe L. affiliés du sud-Betsileo
FIG. 4. — A, B, Aloe horombensis subsp. candicans (H. Perrier) J.-P. Castillon, comb. nov, stat. nov. entre Ankaramena et Zazafotsy; C, Aloe horombensis subsp.fallax (J.-B. Castillon) J.-P. Castillon, comb. nov,stat. nov. près d'Ambalavao,mai 2010.Photos J.-P. Castillon.
FIG. 4 in Révision du groupe de l'Aloe divaricata Berger; correction d'une synonymie, combinaisons nouvelles et description d'un nouvel hybride
FIG. 4. — Aloe divaricata Berger subsp. tulearensis (T.A.McCoy & Lavranos) J.-P. Castillon, comb. nov., stat. nov. près de Saint-Augustin.
FIG. 3 in Révision du groupe de l'Aloe divaricata Berger; correction d'une synonymie, combinaisons nouvelles et description d'un nouvel hybride
FIG. 3. — Carte de distribution des différentes sous-espèces d'Aloe divaricata Berger et de l'espèce hybride x Aloe anosyana J.-P. Castillon, hybr. nov.
FIG. 2 in Révision du groupe de l'Aloe divaricata Berger; correction d'une synonymie, combinaisons nouvelles et description d'un nouvel hybride
FIG. 2. — Aloe divaricata Berger subsp. divaricata: A, une plante en provenance de Port-Bergé en culture à Tuléar; B, dans les forêts côtières, 20 km au nord de Majunga.
InSAR stack of Kuju volcano in Kyushu, Japan from ALOS ascending track 422 processed with ROI_PAC
<p>A stack of unwrapped interferograms on Kuju volcano, Kyushu, Japan</p> <p>Sensor: ALOS PALSAR ascending track 422 frame 650</p> <p>Time: 2007.01.06 - 2011.01.17, 24 acquisitions, 167 interferograms</p> <p>Processor: ROI_PAC</p> <p>Tropospheric delay estimated from ERA-5 using PyAPS is attached.</p> <p>This is an input dataset for the time series analysis with <a href="https://github.com/insarlab/MintPy/">MintPy</a>.</p>
InSAR time series analysis results of ALOS-2/PALSAR-2 data for the post-eruptive displacement of the 2015 phreatic eruption of Hakone volcano, Japan
<p>This repository contains the InSAR products used in Doke et al., GRL (submitted).</p> <p> </p> <p><strong>Dataset 1</strong>: Surface velocity data estimated by InSAR time series analysis with NetCDF grid format.</p> <ol> <li>surface_velocity_p126.nc</li> <li>surface_velocity_p18.nc</li> </ol> <p> </p> <p><strong>Dataset 2</strong>: Time-series of LOS displacements in selected locations with text format.</p> <ol> <li>time_series_p126.txt</li> <li>time_series_p18.txt</li> </ol> <p> </p> <p><strong>Dataset 3</strong>: Inputs and results of model inversion with shapefile.</p> <p>Subsampled observation data, modeled (simulated) displacements, and other parameters are shown in attribute tables in shapefiles. Shapefiles that show the location of the estimated models are also included in ZIP files.</p> <ol> <li>point_source_deflation.zip</li> <li>sill_deflation.zip</li> </ol>
Ground deformation maps of the Visso and Norcia (Italy) 2016 earthquakes from ALOS-2 SAR data
<p>The datasets consist of the Line of Sight (LoS) deformation maps obtained by applying Differential SAR Interferometry (DinSAR) to ALOS-2 (Strip Map acquisition mode) pairs.</p> <p>ALOS-2 is operated by the Japan Aerospace Exploration Agency (JAXA).</p> <p>Two maps were retrieved by processing data from both the ascending and descending track.</p> <p>Both the maps are in meters and provided in raster geotiff format.</p> <p>Data have been processed using the Sarscape© software.</p> <p>Ascending pair details:</p> <p>SAR images were acquired on 2016/08/24 and 2016/11/02, path 197, frame 850.</p> <p>The adopted DEM used for the topographic phase removal was the SRTM 1 arc second. The interferogram was generated by applying a 11x5 multi-look factor in azimuth and range, respectively.</p> <p>Final product were geocoded in UTM WGS84 33 Nord projection, and a final pixel size of 40 m.</p> <p>Descending pair details:</p> <p>SAR images were acquired on 2016/08/31 and 2016/11/09, path 92, frame 2750.</p> <p>The adopted DEM used for the topographic phase removal was the SRTM 1 arc second. The interferogram was generated by applying a 11x5 multi-look factor in azimuth and range, respectively.</p> <p>Final product were geocoded in UTM WGS84 33 Nord projection, and a final pixel size of 40 m.</p>
FIG. 5. — x Aloe anosyana J.-P in Révision du groupe de l'Aloe divaricata Berger; correction d'une synonymie, combinaisons nouvelles et description d'un nouvel hybride
FIG. 5. — x Aloe anosyana J.-P. Castillon, hybr. nov.
ALOS-2 deformation analysis results, Teller 47, Seward Peninsula
<p>ALOS-2 deformation analysis results from the Seward Peninsula</p> <p>ALOS-2 stripmap observations from<br> 2015-07-16<br> 2016-07-14<br> 2017-07-13<br> 2019-07-11</p> <p>Estimates of the line-of-sight deformation velocity (_fitted_velocity.tif) and the estimated standard error (_fitted_se.tif) were obtained by Short-BAseline Subset (SBAS) processing. Two SBAS interferogram subsets were considered, one encompassing all years (2015-2019, filenames 1519) and one encompassing years 2015-2017 (filenames 1517). The first band of these images contains the line-of-sight velocity in (m/s), the second band the estimated displacement in the middle of the study period, referenced to the beginning of the respective study period.</p> <p>Regions with questionable results (e.g., where closure analyses did not successfully correct unwrapping errors) were delineated manually in two geopackage files.</p> <p> </p>
Study of Embeda (Kadian NT, ALO-01) in Subjects With Chronic Moderate to Severe Nonmalignant Pain
ClinicalTrials.gov study NCT00415597. IPD Sharing: Not stated. Countries: 1. Publications: 3.
A Research Study of an Investigational Drug ALO-02 (Oxycodone Hydrochloride and Naltrexone Hydrochloride) in Patients With Moderate to Severe Chronic Low Back Pain
ClinicalTrials.gov study NCT01571362. IPD Sharing: Not stated. Countries: 1. Publications: 4.
A Study to Characterize the Abuse Liability of ALO-02 in Healthy, Non-Dependent, Recreational Opioid Users When ALO-02 Capsules Are Crushed and Snorted
ClinicalTrials.gov study NCT01775189. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Study of Embeda (Kadian NT, ALO-01) in Subjects With Pain Due to Osteoarthritis of the Hip or Knee
ClinicalTrials.gov study NCT00420992. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Interseismic uplift of anticlines above the Rakhine-Bangladesh Megathrust from ALOS-2 InSAR
Open the record for dataset details and reuse information.
Figure 3 in Aloe trinervis sp. nov.: A new succulent species from Indian Desert (Asphodelaceae)
Figure 3. Comparative plant parts of Aloe trinervis and Aloe vera (A & B) with respect to (1) inflorescence, (2) corolla ventral view, (3) corolla dorsal view, (4) teeth arrangement, (5) bud, (6) floral bract, (7) teeth shape (Photo: C.S. Purohit & R.N. Kulloli).
Figure 2 in Aloe trinervis sp. nov.: A new succulent species from Indian Desert (Asphodelaceae)
Figure 2. Aloe trinervis: A, inflorescence; B, leaf upper surface and margin; C, leaf lower surface and margin; D, white spots in young leaves; E, teeth; F, bract; G, bud; H, flower; I, perianth outer side; J, perianth inner side; K, stamens; L, pistil (Photo: C.S. Purohit & R.N. Kulloli).
FIGURE 7. Aloe mitriformis, a in An annotated catalogue of Aloe and Aloiampelos (Asphodelaceae subfam. Alooideae) naturalised and escaped in continental Portugal
FIGURE 7. Aloe mitriformis, a distinctive, South African representative of the genus, has long, creeping stems. It occurs naturally in the western parts of the Western Cape province and southern Northern Cape province, an area that experiences a Mediterranean-type climate, i.e., mild, wet winters and hot, dry summers, not unlike that prevalent over much of Portugal. Photograph: Gideon F. Smith.
FIGURE 6 in An annotated catalogue of Aloe and Aloiampelos (Asphodelaceae subfam. Alooideae) naturalised and escaped in continental Portugal
FIGURE 6. Aloiampelos ciliaris in Portugal. A. A dense planting in the Botanical Garden of the University of Lisbon (see Smith & Figueiredo 2016). Photograph taken on 2 January 2013. B. Grown in a garden at Casa Mata, Malveira Serra, near Lisbon. Photograph taken on 29 April 2017. C. Close-up of the distinctly ciliate leaf bases. D. Inflorescences are usually unbranched, but could rarely be oncebranched. All photographs by Gideon F. Smith, except B, which was taken by Vasco Silva.
FIGURE 5 in An annotated catalogue of Aloe and Aloiampelos (Asphodelaceae subfam. Alooideae) naturalised and escaped in continental Portugal
FIGURE 5. Aloe vera in Portugal. A. Potted specimens of A. vera (plant on the left) and A. ×nobilis (plant on the right) grown on a windowsill in Caldas da Rainha, Estremadura. Especially A. vera is often kept near a kitchen with its leaf juices used to treat minor burns and skin abrasions. Photograph taken on 11 September 2011. B. Grown in a large plant container on the stoep of a house near the town centre in Golega, in the centre of the country. Photograph taken on 17 January 2018. C. A branched inflorescence. D. Close-up of flowers and buds. All photographs by Gideon F. Smith.
FIGURE 1 in An annotated catalogue of Aloe and Aloiampelos (Asphodelaceae subfam. Alooideae) naturalised and escaped in continental Portugal
FIGURE 1. Aloe arborescens in Portugal. A. Cultivated in beds next to the Estufa Fria, Lisbon. Photograph taken on 30 December 2013. B. Cultivated near the old town centre of Coimbra, en route to the University of Coimbra. Photograph taken on 8 January 2018. C. Cultivated in the Botanical Garden of the University of Porto. Photograph taken on 22 December 2017 (see Smith & Figueiredo 2014). D. Escaped into natural vegetation at Nazaré, Estremadura (see Smith & Figueiredo 2009). Photograph taken on 4 October 2008. E. Naturalised at Praia da Ilha Pessegueiro, along the Alentejo Litoral coast, near Porto Covo. Photograph taken on 30 December 2017. F. Naturalised at Porto Covo. Photograph taken on 30 December 2017. All photographs by Gideon F. Smith.
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