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21 results for “karst spring”
Figure 4 in Ephemeroptera, Plecoptera, and Trichoptera assemblages of karst springs in relation to some environmental factors: a case study in central Bosnia and Herzegovina
Figure 4. CCA analyses of the EPT taxa assemblages. WT – Water temperature; pH – pH value; D – discharge; LL – leaf litter; MF – macrophytes; Cond – conductivity; SN – sand; DET – detritus.
Figure 5 in Ephemeroptera, Plecoptera, and Trichoptera assemblages of karst springs in relation to some environmental factors: a case study in central Bosnia and Herzegovina
Figure 5. Functional feeding type composition of EPT assemblage.
Figure 2 in Ephemeroptera, Plecoptera, and Trichoptera assemblages of karst springs in relation to some environmental factors: a case study in central Bosnia and Herzegovina
Figure 2. Values of: A) EPT index of studied springs, B) Shannon's diversity index.
Hydraulic and geochemical impact of occasional saltwater intrusions through a submarine spring in a karst and thermal aquifer (Balaruc peninsula near Montpellier, France)
<p>Contains geochemical and isotopic data presented in the scientific paper "Hydraulic and geochemical impact of occasional saltwater intrusions through a submarine spring in a karst and thermal aquifer (Balaruc peninsula near Montpellier, France)".</p> <p>Files contain physico-chemical parameters, major ions, rare earth elements and isotopic data (Sr, B) for karst and thermal groundwater samples collected between 2010 and 2018 in the Balaruc-les-Bains (France) area.</p>
FIGURE 2 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 2. Niphargus kermanshahi sp. nov., holotype, lateral view. Specimen collected from Kangarshah spring.
FIGURE 7 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 7. Bayesian consensus tree of 58 Niphargus taxa (54 taxa from Esmaeili-Rineh et al. 2015), based on the 28S ribosomal DNA sequences. Species are identified and named according to the taxonomic description. Posterior probabilities are indicated on main branches.
FIGURE 6 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 6. Niphargus kermanshahi sp. nov., male 12 mm (holotype, ZCRU Amph.1023). (A) Pleopod I; (B) Pleopod II; (C) Pleopod III; (D) Uropod I; (E) Uropod II; (F) Uropod III; (G) Epimeral plates; (H) Telson. Scale bars: 1=0.5 mm (G–H); 2=1 mm (A–E); 3=2mm (F).
FIGURE 4 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 4. Niphargus kermanshahi sp. nov., male 12 mm (holotype, ZCRU Amph.1023). (A–B) Gnathopod I; (C–D) Gnathopod II; (E) Maxilla II; (F) Labium; (G) Maxilliped. Scale bars: 1=0.5 mm (E–G); 2=1 mm (A–D).
FIGURE 5 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 5. Niphargus kermanshahi sp. nov., male 12 mm (holotype, ZCRU Amph.1023). (A) Pereopod III; (B) Pereopod IV; (C) Pereopod V; (D) Pereopod VI; (E) Pereopod VII. Scale bars: 1mm (A–E).
FIGURE 3 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 3. Niphargus kermanshahi sp. nov., male 12 mm (holotype, ZCRU Amph.1023). (A) Antenna I; (B) Antenna II; (C) Head; (D–E) Maxilla I; (F) Left mandible; (G) Right mandible; (H) Mandibular palp. Scale bars: 1=0.25 mm (F–G); 2=0.5 mm (C–E, H); 3=1mm (A–B).
FIGURE 1. a in Planothidium marganaiensis sp. nov. (Bacillariophyta), a new cavum-bearing species from a karst spring in south-western Sardinia (Italy)
FIGURE 1. a) Geographic location of the San Giovanni spring (San Giovanni karst system), b) south entrance of the San Giovanni cave, c) water abstraction system, d) San Giovanni spring.
FIGURES 2–57 in Planothidium marganaiensis sp. nov. (Bacillariophyta), a new cavum-bearing species from a karst spring in south-western Sardinia (Italy)
FIGURES 2–57. LM. Planothidium marganaiensis G.G.Lai, Ector & C.E.Wetzel sp. nov. Type population from the San Giovanni spring, Sardinia (Italy). Figs 2–28: Rapheless valve (SV) with cavum. Figs 29–32: Girdle views. Figs 33–57: Raphe valve (RV) with shortened striae in the central area.
FIGURES 58–65. SEM. Planothidium marganaiensis G.G in Planothidium marganaiensis sp. nov. (Bacillariophyta), a new cavum-bearing species from a karst spring in south-western Sardinia (Italy)
FIGURES 58–65. SEM. Planothidium marganaiensis G.G.Lai, Ector & C.E.Wetzel sp. nov. Type population from the San Giovanni spring, Sardinia (Italy). Figs 58–62: Rapheless valve (SV). Figs 58–60: External view showing depressions along the apical axis and multiseriate striae. Note the striae continuing shortly onto the valve mantle, without interruption (Figs 58–59). Figs 61–62: Internal view showing the round cavum with a narrow aperture towards the valve mantle. Figs 63–65: Raphe valve (RV). Fig. 63: External view showing multiseriate striae not extended on the valve mantle and distal raphe ends bent unilaterally. Figs 64–65: Internal view showing striae sunken between raised virgae and composed of areolae covered by individual hymenes. Note the proximal external raphe ends slightly deflected into opposite sides and distal raphe terminating on poorly developed helictoglossae, continuing shortly onto the valve mantle.
Data for "Identification of Karst Spring Hydrographs Using Laboratory and Numerical Simulations Considering Combined Discrete-Continuum Approaches"
<p>This is the dataset for "Identification of Karst Spring Hydrographs Using Laboratory and Numerical Simulations Considering Combined Discrete-Continuum Approaches”.</p>
FIGURES 3–51. Sellaphora gologonica G.G in Sellaphora gologonica sp. nov. (Bacillariophyta, Sellaphoraceae), a new diatom species from a Mediterranean karst spring (Sardinia, Italy)
FIGURES 3–51. Sellaphora gologonica G.G. Lai, Ector & C.E. Wetzel sp. nov. Population "Su Gologone" spring. LM (Figs 3–46): size reduction series of the population. Specimen here depicted in Figs 6–7. Frustules rectangular in girdle view (Fig. 31). SEM (Figs 47–51): Figs 47–50. External views showing striae patterns (strongly radiate) and double areolae near the axial area on the valve surface. Arrows–sinuous raphe system. Fig. 51. Internal view showing slightly deflected raphe endings. Arrows–large rounded apical pits present at both apices. LM scale bar = 10 μm.
FIGURES 52–59 in Sellaphora gologonica sp. nov. (Bacillariophyta, Sellaphoraceae), a new diatom species from a Mediterranean karst spring (Sardinia, Italy)
FIGURES 52–59. SEM comparison between Sellaphora gologonica sp. nov. from Su Gologone spring (Sardinia) and Sellaphora seminulum from Grunow's original material. Figs 52–55. External views of S. gologonica sp. nov. Figs 56–58. External views of S. seminulum. Fig. 59. Internal view of S. seminulum. Arrows–apical pits present at apices.
FIGURE 2 in Sellaphora gologonica sp. nov. (Bacillariophyta, Sellaphoraceae), a new diatom species from a Mediterranean karst spring (Sardinia, Italy)
FIGURE 2. Sa Vena spring: water emergency point (a), brook (b), water abstraction system inside the rock (c).
FIGURE 1 in Description of new endemic species of the genus Niphargus Schiödte, 1849 (Amphipoda: Niphargidae) from a karst spring in Zagros Mountains in Iran
FIGURE 1. Distribution map of the genus Niphargus in Iran.
Supplementary material 1 from: Premate E, Fišer Ž, Kuralt Ž, Pekolj A, Trajbarič T, Milavc E, Hanc Ž, Kostanjšek R (2022) Behavioral observations of the olm (Proteus anguinus) in a karst spring via direct observations and camera trapping. Subterranean Biology 44: 69-83. https://doi.org/10.3897/subtbiol.44.87295
Figure S1
FIGURE 1 in Sellaphora gologonica sp. nov. (Bacillariophyta, Sellaphoraceae), a new diatom species from a Mediterranean karst spring (Sardinia, Italy)
FIGURE 1. Geographic location of the Sa Vena spring (Su Gologone karst system).
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Allen Brain Atlas
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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.