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46 results for “Gran Canaria”
Fig. 2. A. D in Three new species of Dolichoiulus millipedes from the underground of Gran Canaria, with notes on the circumscription of the genus (Diplopoda, Julida, Julidae)
Fig. 2. A. D. typhlocanaria sp. nov., male from Cueva de la Luna, midbody rings. Scale 0.1 mm. B. D. oromii sp. nov., detail of posterior margin of midbody ring, showing diagnostic setae. Scale 0.05 mm.
Fig. 4. Posterior gonopods, mesal views. A. D in Three new species of Dolichoiulus millipedes from the underground of Gran Canaria, with notes on the circumscription of the genus (Diplopoda, Julida, Julidae)
Fig. 4. Posterior gonopods, mesal views. A. D. typhlocanaria sp. nov., specimen from Barranco Draguillo. B. D. typhlocanaria sp. nov., specimen from Cueva de la Luna. C. D. oromii sp. nov. ap: anterior process, pp: posterior process, mp: mesomerital process. Scales 0.1 mm.
Fig. 1 in Three new species of Dolichoiulus millipedes from the underground of Gran Canaria, with notes on the circumscription of the genus (Diplopoda, Julida, Julidae)
Fig. 1. Size diagram for Dolichoiulus typhlocanaria sp. nov. The diagram shows number of podous (leg-bearing) body rings (p.r., x axis) and vertical body diameter in mm (y axis). For a given number of podous rings D. typhlocanaria sp. nov. is thicker than the two other species (see Fig. 5), and females are thicker than males.
Seawater temperature data from Gando Bay (Gran Canaria, 25 and 40m depth) and Playa Chica (Lanzarote, 80m depth) in the Canary islands, collected using HOBO temperature loggers.
<p>Seawater temperature data collected using HOBO temperature loggers at three sites in the Canary Islands.</p> <p>Temperature data loggers were attached to 50 cm-long metal stakes partially buried into the seabed (Hobo data-logger Pendant Temp-Light, Onset Computer Corporation, USA), at 25 m and 40 m in Gando Bay (Gran Canaria; 27°55'56.1"N 15°21'11.0"W) and at 80 m in Playa Chica (Lanzarote; 28°55'04.7"N 13°40'11.8"W).</p> <p>- At 25 m, loggers were set up to record measurements every 2 hours, from October 9<sup>th</sup>, 2019, to June 3<sup>rd</sup>, 2020 (one logger, one dataset), and then every 15 minutes from June 3<sup>rd</sup>, 2020, to October 7<sup>th</sup>, 2021 (one logger, one dataset).</p> <p>- At 40 m, one logger was set up to take a measurement every 5 minutes (July 12<sup>th</sup> to August 25<sup>th</sup>, 2017, and September 21<sup>st</sup> to October 10<sup>th</sup>, 2018) (two loggers, two datasets).</p> <p>- At 80 m, one logger was set up to take a measurement every 4 hours, from January 10<sup>th</sup> to February 17<sup>th</sup>, 2021 (one logger, one dataset), and every 15 minutes from February 17<sup>th</sup> to October 19<sup>th</sup>, 2021 (one logger, one dataset).</p>
Fig. 2 in Pine Forest Earthworms From Canary Islands (Tenerife And Gran Canaria)
Fig. 2. The projection of the species and edaphic variables: CA = calcium, OM = organic matter, K = potassium, PH = pH in water. Ac = A. chlorotica, Ar = A. rosea bimastoides, At = A. trapezoi-
Figure 1 in Acetaminophen as an oral toxicant for invasive California kingsnakes (Lampropeltis californiae) on Gran Canaria, Canary Islands, Spain
Figure 1. Length and mass distributions for treatment groups. Small vertical ticks are individual values for females (♀, above center line) and males (♂, below). Red and blue boxes are mean ± 1 standard deviation for females and males, respectively. The dark vertical line is the mean of both sexes, and the dark horizontal line is ± 1 standard deviation of both sexes. Statistical tests for differences among all pairwise comparisons of treatment groups indicated no substantial length or mass biases.
Figure 4 in Acetaminophen as an oral toxicant for invasive California kingsnakes (Lampropeltis californiae) on Gran Canaria, Canary Islands, Spain
Figure 4. Survival curves for time to death of all dosed California kingsnakes that succumbed to acetaminophen intoxication. Shaded areas indicate 95% compatibility intervals for the survival estimates (lines). Differences between the 5th and 95th percentiles of dosage (B) and body condition (C) demonstrate the size of the respective effect.
Figure 3 in Acetaminophen as an oral toxicant for invasive California kingsnakes (Lampropeltis californiae) on Gran Canaria, Canary Islands, Spain
Figure 3. Dosages (mg/kg) evaluated in this study (log scale). Black ticks indicate snakes that died, red indicates survivors. The dark gray area is the frequency distribution of dosages that were evaluated.
Figure 2 in Acetaminophen as an oral toxicant for invasive California kingsnakes (Lampropeltis californiae) on Gran Canaria, Canary Islands, Spain
Figure 2. Observed mortality rates by treatment group and sex. Lines indicate point estimates of mortality rate (%) and shaded areas are the 95% compatibility intervals of the estimate.
Fig. 2 in Nuevo registro del troglobio Canariletia holosterna (Molero, Gaju, López & Bach, 2014) (Zygentoma, Nicoletiidae) en Gran Canaria (Islas Canarias).
Fig. 2.- Mapa de la isla de Gran Canaria, con la ubicación de las tres cavernas en las que se ha podido detectar la presencia de Canariletia holosterna (Molero, Gaju, López & Bach, 2014).
Figure 2. A in The first record of a Pseudamnicola sp. from Gran Canaria (Spain) (Gastropoda: Hydrobiidae)
Figure 2. A small stream in the Azuaje ravine (Canary islands), the type locality of Pseudamnicola canariensis n. sp.
Linked collectors and determiners for: Report of Frank Balfour-Browne's collecting in Gran Canaria and Madeira (1932 - 1933), with the description of Ochthebius (Cobalius) lanthanus sp. nov. (Coleoptera, Hydraenidae).
Natural history specimen data linked to collectors and determiners held within, "Report of Frank Balfour-Browne's collecting in Gran Canaria and Madeira (1932 - 1933), with the description of Ochthebius (Cobalius) lanthanus sp. nov. (Coleoptera, Hydraenidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/e60f0994-fd5e-4082-9f8f-fe4a19b91808">https://bionomia.net/dataset/e60f0994-fd5e-4082-9f8f-fe4a19b91808</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/e60f0994-fd5e-4082-9f8f-fe4a19b91808">https://gbif.org/dataset/e60f0994-fd5e-4082-9f8f-fe4a19b91808</a>. Formatted as a Frictionless Data package.
Dataset of 40Ar/39Ar ages from the Canary Islands_Esfinge y Tamaraceite (Gran Canaria)
<p>Lava dating by means of Ar / Ar radiometric analysis performed by the University of Oregon de La Esfinge y Tamaraceite (Gran Canaria, Canary Islands)</p>
Gravity data used in the paper "Imaging the volcanic structures beneath Gran Canaria Island using new gravity data"
<p>This file includes the values of gravity and complete Bouguer gravity anomaly calculated for the land gravity stations in Gran Canaria Island (Canary Islands, Spain). Each station has the corresponding UTM coordinates (Zone 28N) in metres (Datum WGS84). </p> <p>This gravity data set has been used in the paper:</p> <p>Montesinos, F. G., Arnoso, J., Gómez-Ortiz, D., Benavent, M., Blanco-Montenegro, I., Vélez, E., et al. (2022). Imaging the volcanic structures beneath Gran Canaria Island using new gravity data. <em>Journal of Geophysical Research: Solid Earth</em>, 127, e2022JB024863. <a href="https://doi.org/10.1029/2022JB024863">https://doi.org/10.1029/2022JB024863</a></p> <p> </p> <p> </p> <p> </p>
Fig. 1 in Pine Forest Earthworms From Canary Islands (Tenerife And Gran Canaria)
Fig. 1. Maps of Tenerife and Gran Canaria with the sites mentioned in Appendix 1
Figure 1 in The first record of a Pseudamnicola sp. from Gran Canaria (Spain) (Gastropoda: Hydrobiidae)
Figure 1. Left: shell of Pseudamnicola canariensis n. sp; right: map of study area.
FIGURE 2 in On the generic placement of the narrow-range endemic ' Helix ' arguineguinensis Seddon & Aparicio, 1998 from Gran Canaria (Canary Islands)
FIGURE 2. Shells of Monilearia (Monilearia) arguineguinensis (Seddon & Aparicio, 1998). A) Spain, Canary Islands, Gran Canaria, settlement E of Argüineguin, 27°45'38'' N, 15°40'04'' W, 50 m a.s.l., leg. E. Schlegel (ZMH 92264), B) Spain, Canary Islands, Gran Canaria, coll. Melvill-Tomlin, ex Wollaston (NMW 1955.158.02113), C) Spain, Canary Islands, Gran Canaria, Argüineguin, syntype coll. Mousson, ex Wollaston (ZMZ 505021). Photographs: A) F. Walther, B) Copyright Amgueddfa Cymru - National Museum Wales C) Copyright CSCF Neuchâtel, E. Neubert. Scale bar: 5 mm.
Ambient noise tomography of Gran Canaria island (Canary Islands) for geothermal exploration
<p>This file contains the 3-D S-wave velocity model of Gran Canaria island.</p> <p><strong>Abstract</strong></p> <p>Ambient noise tomography (ANT) has proved to be efficient in resolving crustal structures for different purposes. Despite the numerous studies carried out in Gran Canaria in the past for purposes of geothermal exploration, ANT had never been used before on this island. We applied this technique to understand Gran Canaria island's shallow structure, determining the 3-D S-wave velocity model of the island and focusing on its implications for geothermal exploration. We used data from 30 seismic stations installed between October 2019 and February 2020. Our findings revealed five relevant velocity anomalies helpful in understanding the island's geology and its geothermal potential. In particular, we identified two high-velocity anomalies in the central part of the island aligned with the primary northwest-southeast structural trends of Gran Canaria. We interpret them as evidence of intrusive volcanic bodies emplaced during the early stages of the island's geological history. We also identified three low-velocity zones located in different parts of the island. We maintain that these anomalies could be associated with porous and highly fractured materials produced during the more recent volcanic episodes. In addition, we observed a spatial correlation of anomalies in the electric conductivity identified in previous studies and strong lateral gradients in our S-wave velocity model. We interpret them as evidence of hydrothermal circulation and thermal anomalies in correspondence of lateral contacts between different geological units and/or faults.</p> <p> </p>
FIGURE 1 in Report of Frank Balfour-Browne's collecting in Gran Canaria and Madeira (1932 - 1933), with the description of Ochthebius (Cobalius) lanthanus sp. nov. (Coleoptera, Hydraenidae)
FIGURE 1. One of the two trays with Balfour-Browne specimens of "Ochthebius lejolisii" collected in Gran Canaria deposited in the Royal Scottish Museum (RSM), containing 15 paratypes of O. lanthanus sp. nov.
FIGURES 8–9 in Report of Frank Balfour-Browne's collecting in Gran Canaria and Madeira (1932 - 1933), with the description of Ochthebius (Cobalius) lanthanus sp. nov. (Coleoptera, Hydraenidae)
FIGURES 8–9. Habitat of Ochthebius (Cobalius) lanthanus sp. nov. 8) rockpools in Taliarte; 9) rockpools in Arucas (Gran Canaria) (photos: IR).
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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)
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DANDI Archive for NWB datasets
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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
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