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303 results for “habitat preference”
Fig. 2. Elk Falls, habitat. A in Rediscovery ofLutrochus laticepsCasey, 1893 (Coleoptera: Lutrochidae) and the Discovery ofDineutus productusRoberts, 1895 andDineutus serrulatus analisRégimbart, 1882 (Coleoptera: Gyrinidae) in Kansas, USA, with Notes on Habitat Preference
Fig. 2. Elk Falls, habitat. A) Pointer indicates area of falls where Lutrochus laticeps was found, B) Pointer indicates microhabitat of L. laticeps, C) Pointer indicates L. laticeps in moist moss, D) G. Gustafson and C. Faris collecting L. laticeps from falls.
FIGURE 1 in Species List And Habitat Preference Of Mesostigmata Mites (Acari, Parasitiformes) In Latvia
FIGURE 1: Similarity of habitats in occurrence of Mesostigmata species.
FIGURE 1 in Faunal study of velvet ants (Hymenoptera: Mutillidae) and their activity patterns and habitat preference at Ash Meadows National Wildlife Refuge, Nye County, Nevada, USA
FIGURE 1. Species accumulation curve (dotted-line) and the estimated species accumulation via the first order jackknife estimator (solid-line), with standard deviation (gray area), for velvet ants of Ash Meadows National Wildlife Refuge.
FIGURES 2–11. Male genitalia. 2 in Faunal study of velvet ants (Hymenoptera: Mutillidae) and their activity patterns and habitat preference at Ash Meadows National Wildlife Refuge, Nye County, Nevada, USA
FIGURES 2–11. Male genitalia. 2. Odontophotopsis acmaea: dorsal view (left) and internal view (right); 3. O. armata: dorsal view and lateral view of cuspis (inset); 4. O. bellona: dorsal view; 5. O. mamata: dorsal view and lateral view of cuspis (inset); 6. O. microdonta: dorsal view (right) and ventral view (left); 7. O. piute: dorsal view; 8. O. serca: dorsal view and lateral view of cuspis (inset); 9. Sphaeropthalma nana: internal view; 10. S. orestes: dorsal view (left) and ventral view (right); and 11. S. parkeri: dorsal view (left) and ventral view (right).
FIG. 4 in Small scale habitat preferences of Myotis daubentonii, Pipistrellus pipistrellus, and potential aerial prey in an upland river valley
FIG. 4. Relationship between aerial insect number (pooled for altitude and all habitat types) with air temperature (r² = 0.092)
F. 7 in Small scale habitat preferences of Myotis daubentonii, Pipistrellus pipistrellus, and potential aerial prey in an upland river valley
F. 7. Bat activity expressed as 0 ± SD bat passes hr-1 in relation to habitat type (water state) of both M. daubentonii and IG P. pipistrellus, pooled for all four altitudes
FIG. 6 in Small scale habitat preferences of Myotis daubentonii, Pipistrellus pipistrellus, and potential aerial prey in an upland river valley
FIG. 6. Percentage of most prevalent aerial insects found during the 40 nights of sweep net sampling along river Wharfe. Samples been pooled for altitude and habitat type. Insect families represented by <0.1 % not shown
FIG. 3 in Small scale habitat preferences of Myotis daubentonii, Pipistrellus pipistrellus, and potential aerial prey in an upland river valley
FIG. 3. Mean ± SD of number of aerial insects caught with sweep net above water surface (and over grass = control), pooled for all four altitudes (n = 40 nights)
FIG. 5 in Small scale habitat preferences of Myotis daubentonii, Pipistrellus pipistrellus, and potential aerial prey in an upland river valley
FIG. 5. Relationship between numbers of aerial insects caught with a sweep net (pooled for all altitudes and habitat types) above the water surface with minimum wind speed
FIG. 2 in Small scale habitat preferences of Myotis daubentonii, Pipistrellus pipistrellus, and potential aerial prey in an upland river valley
FIG. 2. Wind direction (degrees) expressed as windroses at for 10 nights from highest (a) to lowest (d) altitudes along river Wharfe
Figure 2 in Local habitat preferences of a semi-aquatic mammal, the Pyrenean desman Galemys pyrenaicus
Figure 2: Explanatory power (% of deviance explained) of GLMs relating the number of Pyrenean desman faeces to a single category of abiotic or biotic variables ("models by category"). See Table 1 for details about the variables belonging to each category.
Data from: Two widespread green Neottia species (Orchidaceae) show mycorrhizal preference for Sebacinales in various habitats and ontogenetic stages
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Data from: Ecological opportunity and the evolution of habitat preferences in an arid-zone bird: implications for speciation in a climate-modified landscape
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Data from: Habitat preference differentiates the Holocene range dynamics but not barrier effects on two sympatric, congeneric trees (Tristaniopsis, Myrtaceae).
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Effects of natal habitat preference induction on juvenile loon movements
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Data from: Elevational replacement of two Himalayan titmice: interspecific competition or habitat preference?
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Data from: Habitat preference facilitates successful early breeding in an open-cup nesting songbird
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Data from: Natal habitat preference induction in large mammals – Like mother, like child?
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Data from: Feeding ecology and habitat preferences of top predators from two Miocene carnivore-rich assemblages
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Data from: Genetic effects of landscape, habitat preference, and demography on three co-occurring turtle species
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Allen Brain Atlas
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International Brain Laboratory public data
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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.