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888 results for “canary”
Canary Islands La Palma: pinar disperso change map (2003-2015)
<p>A change map for the land cover class "PINAR DISPERSO" in "La Palma" PA, obtained by the Cross Correlation Analysis algorithm (CCA) [1,2] considering at time T1 the layer "PINAR DISPERSO" from an existing land cover map dated 2003 and at time T2 a Landsat 8 image dated July 8th, 2015.</p> <p>The map was produced at 30 meters spatial resolution and projected in WGS84/UTM28N.</p> <p>The map has binary values where value 1 indicates pixels changed from PINAR DISPERSO to other whereas value 0 indicates No changed/Not considered pixels.</p> <p>[1] Koeln, G., & Bissonnette, J. (2000). Cross-correlation analysis: Mapping landcover changes with a historic landcover database and a recent, single-date, multispectral image. Proc. 2000 ASPRS Annual Convention, Washington, D.C. (8 pp.).</p> <p>[2] C. Tarantino, M. Adamo, R. Lucas, P. Blonda. (2016). “Detection of changes in semi-natural grasslands by cross correlation analysis with Worldview-2 images and new Landsat 8 data”, Remote Sensing of Environment, Vol. 175C, pp. 65-72, doi: 10.1016/j.rse.2015.12.031, ISSN 0034-4257</p>
Canary Islands La Palma: cloudiness timely presence (2016)
<p>A map representing the cloudiness timely presence on "La Palma" PA from December 2015 to April 2016.</p> <p>The map has 10 values related as follows:</p> <p>Value 1 = presence of cloudiness in 1 scene</p> <p>Value 2 = presence of cloudiness in 2 scene</p> <p>Value 3 = presence of cloudiness in 3 scene</p> <p>Value 4 = presence of cloudiness in 4 scene</p> <p>Value 5 = presence of cloudiness in 5 scene</p> <p>the higher values correspond to higher cloudiness timely presence.</p> <p>The map was produced from Sentinel-2A at 60 meters spatial resolution and projected in WGS84/UTM28N.</p>
Canary Islands La Palma: improductivo change map (2003-2015)
<p>A change map for the land cover class "IMPRODUCTIVO" in "La Palma" PA, obtained by the Cross Correlation Analysis algorithm (CCA) [1,2] considering at time T1 the layer "IMPRODUCTIVO" from an existing land cover map dated 2003 and at time T2 a Landsat 8 image dated July 8th, 2015.</p> <p>The map was produced at 30 meters spatial resolution and projected in WGS84/UTM28N.</p> <p>The map has binary values where value 1 indicates pixels changed from IMPRODUCTIVO to other whereas value 0 indicates No changed/Not considered pixels.</p> <p>[1] Koeln, G., & Bissonnette, J. (2000). Cross-correlation analysis: Mapping landcover changes with a historic landcover database and a recent, single-date, multispectral image. Proc. 2000 ASPRS Annual Convention, Washington, D.C. (8 pp.).</p> <p>[2] C. Tarantino, M. Adamo, R. Lucas, P. Blonda. (2016). “Detection of changes in semi-natural grasslands by cross correlation analysis with Worldview-2 images and new Landsat 8 data”, Remote Sensing of Environment, Vol. 175C, pp. 65-72, doi: 10.1016/j.rse.2015.12.031, ISSN 0034-4257</p>
Canary Islands La Palma: cloud cover map (2016)
<p>A multi-temporal cloud cover map related to 5 Sentinel-2A images in "La Palma" PA from December 2015to April 2016.</p> <p>The 5 layers representing the cloud cover (as OR among different temporal and spatial acquisitions in each month) were related to the following dates: December 2015, January 2016, February 2016, March 2016 and April 2016 .</p> <p>The maps was produced at 60 meters spatial resolution and projected in WGS84/UTM28N.</p> <p>The map has binary values where value 1 indicates cloud cover pixels whereas value 0 indicates No cloud cover pixels.</p>
Canary Islands La Palma: cultivo change map (2003-2015)
<p>A change map for the land cover class "CULTIVO" in "La Palma" PA, obtained by the Cross Correlation Analysis algorithm (CCA) [1,2] considering at time T1 the layer "CULTIVO" from an existing land cover map dated 2003 and at time T2 a Landsat 8 image dated July 8th, 2015.</p> <p>The map was produced at 30 meters spatial resolution and projected in WGS84/UTM28N.</p> <p>The map has binary values where value 1 indicates pixels changed from CULTIVO to other whereas value 0 indicates No changed/Not considered pixels.</p> <p>[1] Koeln, G., & Bissonnette, J. (2000). Cross-correlation analysis: Mapping landcover changes with a historic landcover database and a recent, single-date, multispectral image. Proc. 2000 ASPRS Annual Convention, Washington, D.C. (8 pp.).</p> <p>[2] C. Tarantino, M. Adamo, R. Lucas, P. Blonda. (2016). “Detection of changes in semi-natural grasslands by cross correlation analysis with Worldview-2 images and new Landsat 8 data”, <em>Remote Sensing of Environment</em>, Vol. 175C, pp. 65-72, doi: 10.1016/j.rse.2015.12.031, ISSN 0034-4257</p>
Canary Islands La Palma: cloudiness timely presence (2015)
<p>A map representing the cloudiness timely presence on "La Palma" PA from August to December 2015.</p> <p>The map has 10 values related as follows:</p> <p>Value 1 = presence of cloudiness in 1 scene</p> <p>Value 2 = presence of cloudiness in 2 scene</p> <p>Value 3 = presence of cloudiness in 3 scene</p> <p>Value 4 = presence of cloudiness in 4 scene</p> <p>Value 5 = presence of cloudiness in 5 scene</p> <p>Value 6 = presence of cloudiness in 6 scene</p> <p>Value 7 = presence of cloudiness in 7 scene</p> <p>Value 8 = presence of cloudiness in 8 scene</p> <p>Value 9 = presence of cloudiness in 9 scene</p> <p>Value 10 = presence of cloudiness in 10 scene</p> <p>the higher values correspond to higher cloudiness timely presence.</p> <p>The map was produced from Landsat 8 at 30 meters spatial resolution and projected in WGS84/UTM28N.</p>
Landscape and biodiversity indicators for La Palma - Canary Island
<p>Landscape and biodiversity indicators have been identified as crucial for detecting changes in the Land Cover/Habitat map target classes and evaluating threats and intense impacts on certain areas of a site. This analysis is useful to prevent future ecosystem degradation, update the preservation strategies or take immediate mitigation actions.</p> <p>Regarding La Palma – Canary Island, Landscape and biodiversity indicators were generated for 2007. The Land Cover/Habitat map and Object-ID raster files were used as input to estimate the indicators. The outputs include a raster file of each indicator and a file “indValues.csv” containing the values of indicators per object.</p> <p>The calculated indicators are: (i) PLAND; (ii) PD; (iii) SHAPE_MN; (iv) CA; (v) MPS; (vi) MESH; (vii) AWMPFD. Indicator files are accompanied by INSPIRE metadata XML. Detailed information can be found in the “Readme.pdf” included in the zip containing the dataset.</p>
Figures 1-6. 1 – A in Description of a new species in the genus Ancylis Hübner, 1825 from the Canary Islands and additional faunistic information (Lepidoptera: Tortricidae, Enarmoniini)
Figures 1-6. 1 – A. klimeschana sp. n. Ht. ♀ Spain: Canary Islands, La Gomera: Vallehermoso, 300 m. 15.-16.iv.1998 (K. Larsen leg., gen. prep. 4184 KL). 2 – A. klimeschana sp. n. Pt. ♀ Spain: Canary Islands, La Gomera: Hermigua, El Convento, 600 m 6.-13.iv.2007, leg. W. Losert (coll. KL). 3 – A. comptana ♀, France: Dienay-sur-Ignon, 26.vi.1993 leg. M. Hellers (coll. KL). 4 – A. sparulana ♀, Portugal: Algarve, Salema camping, 55 m, 19.-22.iv.2017 leg. P. Skou (coll. KL). 5 – A. comptana ♀, Spain: Mallorca, Alcudia, s'Albufereta, 20.-21.ix.2009 (KL leg. et coll., gen. prep. 4439 KL).
Figure 2 in Water mites from Fuerteventura, Canary Islands, Spain (Acari: Hydrachnidia)
Figure 2. Arrenurus caesaraugustanus Viets, male, A-B. A = Male with incomplete dorsal shield, dorsal view; B = detail of petiole. Scale bars: A = 200 µm, B = 50 µm.
Figure 1. Neumania fortiventa n in Water mites from Fuerteventura, Canary Islands, Spain (Acari: Hydrachnidia)
Figure 1. Neumania fortiventa n. sp., A-E = holotype male. A = venter; B = Genital field; C = palp; D = I-leg-4-6; E = IV-leg-5-6. Scale bars: A = 200 µm, B-E = 50 µm.
Fig. 1 in Confirmation of the presence of Zelus renardii Kolenati, 1857 (Hemiptera: Reduviidae) on the Canary Islands (Spain)
Fig. 1.- Specimen of Zelus renardii Kolenati, 1857 from Playa de las Américas, Tenerife. (Photo: Camilla Lund Kristensen).
Figure 2. - Trachinus pellegrini. A in On the presence of Trachinus pellegrini (Trachinidae) in the Canary and Cape Verde Islands (north-eastern Atlantic)
Figure 2. - Trachinus pellegrini. A: Juvenile from the Canary Islands (TFMC-VP/1947, 68.0 mm TL, 59.6 mm SL); B: Subadult from the Cape Verde Islands (MMF42285, 119 mm TL, 101 mm SL). Scale bars = 25 mm.
Figure 3. - Collection locations for the new records from the Canaries. 1 in New records of non-indigenous fishes (Perciformes and Tetraodontiformes) from the Canary Islands (north-eastern Atlantic)
Figure 3. - Collection locations for the new records from the Canaries. 1: Holocentrus adscensionis, 2: Cephalopholis taeniops, 3: Paranthias furcifer, 4: Prognathodes marcellae, 5: Abudefduf saxatilis, 6: Abudefduf hoefleri, 7: Acanthurus bahianus, 8: Acanthurus coeruleus, 9: Acanthurus chirurgus, 10: Acanthurus monroviae, 11: Cantherhines pullus.
Figure 2 in New records of non-indigenous fishes (Perciformes and Tetraodontiformes) from the Canary Islands (north-eastern Atlantic)
Figure 2. - Non-native species introduced to the Canaries. A: Holocentrus adscensionis; B: Cephalopholis taeniops; C: Paranthias furcifer; D: Prognathodes marcellae; E: Abudefduf saxatilis; F: Abudefduf hoefleri; G: Acanthurus bahianus; H: Acanthurus coeruleus; I: Acanthurus chirurgus; J: Acanthurus monroviae; K: Cantherhines pullus. Scale bars = 5 cm.
Figure 2. - A in The family Bramidae (Perciformes) from the Canary Islands (Northeastern Atlantic Ocean), with three new records
Figure 2. - A: Pterycombus brama (TFMC-VP/01919, 328 mm SL); B: Taractes asper (TFMCBM-VP/1936, 228 mm SL); and C: Taractes rubescens (772 mm SL) from the Canary Islands.
Linked collectors and determiners for: Two interesting new ground spiders (Araneae) from the Canary Islands and Greece.
Natural history specimen data linked to collectors and determiners held within, "Two interesting new ground spiders (Araneae) from the Canary Islands and Greece". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b6e0d24a-7e5c-4894-9742-f7a57b3f4592">https://bionomia.net/dataset/b6e0d24a-7e5c-4894-9742-f7a57b3f4592</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b6e0d24a-7e5c-4894-9742-f7a57b3f4592">https://gbif.org/dataset/b6e0d24a-7e5c-4894-9742-f7a57b3f4592</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Review of the genus Agonochaetia Povolný (Lepidoptera, Gelechiidae), and description of a new genus and species from the Canary Islands.
Natural history specimen data linked to collectors and determiners held within, "Review of the genus Agonochaetia Povolný (Lepidoptera, Gelechiidae), and description of a new genus and species from the Canary Islands". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/30f61169-25e7-49b9-bd53-560062736a31">https://bionomia.net/dataset/30f61169-25e7-49b9-bd53-560062736a31</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/30f61169-25e7-49b9-bd53-560062736a31">https://gbif.org/dataset/30f61169-25e7-49b9-bd53-560062736a31</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Taxonomic revision of the genus Calendula (Asteraceae) in the Canary Islands.
Natural history specimen data linked to collectors and determiners held within, "Taxonomic revision of the genus Calendula (Asteraceae) in the Canary Islands". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/62444b6b-4cfe-4e91-bbd6-810a1bdf730c">https://bionomia.net/dataset/62444b6b-4cfe-4e91-bbd6-810a1bdf730c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/62444b6b-4cfe-4e91-bbd6-810a1bdf730c">https://gbif.org/dataset/62444b6b-4cfe-4e91-bbd6-810a1bdf730c</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Micromeria tenensis (Lamiaceae), a new species from Tenerife, Canary Islands.
Natural history specimen data linked to collectors and determiners held within, "Micromeria tenensis (Lamiaceae), a new species from Tenerife, Canary Islands". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0f1515bb-7aa8-443d-91c5-ef773c4f6001">https://bionomia.net/dataset/0f1515bb-7aa8-443d-91c5-ef773c4f6001</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0f1515bb-7aa8-443d-91c5-ef773c4f6001">https://gbif.org/dataset/0f1515bb-7aa8-443d-91c5-ef773c4f6001</a>. Formatted as a Frictionless Data package.
Figures 8–13 in Some bathyal cheilostome Bryozoa (Bryozoa, Cheilostomata) from the Canary Islands (Spain, Eastern Atlantic), with descriptions of three new species, a new genus, and a new family
Figures 8–13. (8) Distansescharella alcicornis (MNCN 25.03/3723). (9–13) Acorania enmediensis gen. et sp. nov.: (9–12) holotype (MNCN 25.03/3726); (13) paratype 1 (MNCN 25.03/3727). (9) Autozooid with ovicell and avicularia, the broken ovicell at right shows the unfused endooecium and ectooecium. (10) Growing tip of a branch. (11) Uniporous chamber, distal side, with pore and limit of the chamber (arrow). (12) Inner side of the frontal wall, with condyles. (13) Ancestrula and first zooids.
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