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153 results for “cave conservation”
Figure 6 from: Turcios-Casco MA, Mazier DIO, Orellana JAS, Ávila-Palma HD, Trejo EJO (2019) Two caves in western Honduras are important for bat conservation: first checklist of bats in Santa Bárbara. Subterranean Biology 30: 41-55. https://doi.org/10.3897/subtbiol.30.35420
Figure 6 An adult female of Glossophagasoricina returning to the cave of Monte Grueso after the pollination of certain species of plants. During these surveys, we found trees with opened flowers of Crescentiaalata (Bignoniaceae). The photo was taken by Hefer Ávila.
Figure 7 from: Turcios-Casco MA, Mazier DIO, Orellana JAS, Ávila-Palma HD, Trejo EJO (2019) Two caves in western Honduras are important for bat conservation: first checklist of bats in Santa Bárbara. Subterranean Biology 30: 41-55. https://doi.org/10.3897/subtbiol.30.35420
Figure 7 Adult female of Diphyllaecaudata captured in the cave of Monte Grueso when leaving the cave for searching food. The shelters of this unstudied species in Honduras in Monte Grueso could represent an important site for their conservation. The photo was taken by Hefer Ávila.
Figure 3 from: Turcios-Casco MA, Mazier DIO, Orellana JAS, Ávila-Palma HD, Trejo EJO (2019) Two caves in western Honduras are important for bat conservation: first checklist of bats in Santa Bárbara. Subterranean Biology 30: 41-55. https://doi.org/10.3897/subtbiol.30.35420
Figure 3 A the main entrance of the cave of Monte Grueso is a climb of approximately 5 meters drop. The inside of the cave is divided into tree branches. The photo was taken by Hefer Ávila B main branch of the cave, which is often used by the bats whenever they entered or exited the cave. Notice the guano in the floor of the cave of hematophagous bats (D.ecaudata and D.rotundus). The photo was taken by Manfredo Turcios Padgett.
Figure 2 from: Turcios-Casco MA, Mazier DIO, Orellana JAS, Ávila-Palma HD, Trejo EJO (2019) Two caves in western Honduras are important for bat conservation: first checklist of bats in Santa Bárbara. Subterranean Biology 30: 41-55. https://doi.org/10.3897/subtbiol.30.35420
Figure 2 Species richness of bats in Ceguaca, Santa Bárbara based on the abundance of individuals captured during 2015 and 2016. Based on the estimator indexes, between 35.05 and 58.29% of bat species are still unrecorded. None of these accumulation curves reached an asymptote, which reflects that more sampling effort is needed in the area.
Figure 5 from: Turcios-Casco MA, Mazier DIO, Orellana JAS, Ávila-Palma HD, Trejo EJO (2019) Two caves in western Honduras are important for bat conservation: first checklist of bats in Santa Bárbara. Subterranean Biology 30: 41-55. https://doi.org/10.3897/subtbiol.30.35420
Figure 5 Pregnant female of Pteronotuspersonatus in the Cave of El Peñón during the survey of May 8, 2016. The photo was taken by Hefer Ávila.
Figure 1 from: Turcios-Casco MA, Mazier DIO, Orellana JAS, Ávila-Palma HD, Trejo EJO (2019) Two caves in western Honduras are important for bat conservation: first checklist of bats in Santa Bárbara. Subterranean Biology 30: 41-55. https://doi.org/10.3897/subtbiol.30.35420
Figure 1 Study sites at Ceguaca, Santa Bárbara in western Honduras. Note that near the Tropical Dry Forest of Ceguaca there are Humid Subtropical Forest. Also, the cave of El Peñon is located near Río Ulúa, one of the longest rivers in Honduras The life zones are based on Holdridge (1987). Map organized in QGIS software, version 2.18, Author: Diego Ordoñez.
FIGURE 15 in Three new species of Collembola (Arthropoda: Hexapoda) from Central Brazilian shallow caves: side effects of long term application of environmental law on conservation
FIGURE 15. Arrhopalites glabrofasciatus sp. nov.: fragment of abdomen with trichobothrial complex.
FIGURE 16 in Three new species of Collembola (Arthropoda: Hexapoda) from Central Brazilian shallow caves: side effects of long term application of environmental law on conservation
FIGURE 16. Arrhopalites glabrofasciatus sp. nov.: chaetotaxy of female Abd VI.
FIGURE 14 in Three new species of Collembola (Arthropoda: Hexapoda) from Central Brazilian shallow caves: side effects of long term application of environmental law on conservation
FIGURE 14. Arrhopalites glabrofasciatus sp. nov.: chaetotaxy of great abdomen.
FIGURE 13 in Three new species of Collembola (Arthropoda: Hexapoda) from Central Brazilian shallow caves: side effects of long term application of environmental law on conservation
FIGURE 13. Arrhopalites glabrofasciatus sp. nov.: view of Abd VI and furca/
FIGURE 1 in Three new species of Collembola (Arthropoda: Hexapoda) from Central Brazilian shallow caves: side effects of long term application of environmental law on conservation
FIGURE 1. Arrhopalites glabrofasciatus sp. nov.: habitus of female mounted in slide.
Figure 58 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 58 - Distribution map for Tayshaneta archambaulti sp. n. Tayshaneta coeca (Chamberlin and Ivie, 1942) and Tayshaneta oconnorae sp. n.
Figure 57 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 57 - Distribution map for Tayshaneta myopica (Gertsch, 1974) and Tayshaneta paraconcinna (Cokendolpher & Reddell, 2001).
Figure 8 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 8 - Bayesian gene tree, histone 3 (H3) from Ledford et al. (2011). Highlighted and enlarged area indicates Tayshaneta. Black nodes correspond to a posterior probability >95%. Tayshaneta highlighted in green and enlarged at right. A anopica species-group B myopica species-group C microps species-group D sandersi species-group.
Figure 54 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 54 - Female genitalia forTayshaneta species. A Tayshaneta paraconcinna (Cokendolpher & Reddell, 2001), Figure 8 Cave, Fort Hood, Bell County, Texas B Tayshaneta sandersi sp. n., District Park Cave, Travis County, Texas C Tayshaneta valverdae (Gertsch, 1974), Love Creek Ranch, Bandera County, Texas D Tayshaneta vidrio sp. n., 400 foot Cave, Brewster County, Texas E Tayshaneta whitei sp. n., Lithic Ridge Cave, Bexar County, Texas.
Figure 49 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 49 - Tayshaneta valverdae (Gertsch, 1974), Oriente Milestone Molasses Bat Cave, Val Verde County, Texas (AMNH), male right palp. A Retrolateral B Ventral C Prolateral D Retrolateral, embolus E Ventroapical F Proapical.
Figure 51 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 51 - Tayshaneta whitei sp. n., Lithic Ridge Cave, Bexar County, Texas (CASC), male right palp. A Retrolateral B Ventral C Prolateral D Retrolateral, embolus E Ventroapical F Embolus.
Figure 46 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 46 - Tayshaneta paraconcinna (Cokendolpher & Redell, 2001), Fern Cave, Hays County, Texas (TMM), male right palp. A Retrolateral B Ventral C Prolateral D Retrolateral, embolus E Ventroapical F Proapical.
Figure 45 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 45 - Tayshaneta oconnorae sp. n., Fern Cave, Hays County, Texas (TMM), male right palp. A Retrolateral B Ventral C Prolateral D Retrolateral, embolus E Ventroapical F Proapical.
Figure 43 from: Ledford J, Paquin P, Cokendolpher J, Campbell J, Griswold C (2012) Systematics, conservation and morphology of the spider genus Tayshaneta (Araneae, Leptonetidae) in Central Texas Caves. ZooKeys 167: 1-102. https://doi.org/10.3897/zookeys.167.1833
Figure 43 - Tayshaneta microps (Gertsch, 1974), Government Canyon Bat Cave, Bexar County, Texas (CASC), male right palp. A Retrolateral B Ventral C Prolateral D Retrolateral, embolus E Ventroapical F Proapical.
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Allen Brain Atlas
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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
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.