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680 results for “exclusion”
Figs 53-61 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 53-61: Geostiba meghruica nov.sp.: (53) male habitus; (54) male forebody; (55) male abdominal segments VI-VIII; (56-59) median lobe of aedeagus in lateral and in ventral view; (60- 61) spermatheca. Scale bars: 53: 1.0 mm; 54-55: 0.2 mm; 56-61: 0.1 mm.
Figs 63-70 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 63-70: Geostiba unicuneata nov.sp.: (63) male forebody; (64) male elytra; (65) male abdominal segments VI-VIII in dorsal view; (66) male tergites VII-VIII in lateral view; (67-68) median lobe of aedeagus in lateral and in ventral view; (69-70) spermatheca. Scale bars: 63-66: 0.2 mm; 67-70: 0.1 mm.
Figs 42-52 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 42-52: Geostiba pambakica nov.sp.: (42) male forebody; (43) male elytra; (44) median portion of male tergite VII; (45-49) median lobe of aedeagus in lateral and in ventral view; (50-52) spermatheca. Scale bars: 42-43: 0.2 mm; 44-52: 0.1 mm.
Figs 1-14 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 1-14: Geostiba kobrisensis PACE (1-4) and G. recta nov.sp. (5-14): (1-2, 5-8) median lobe of aedeagus in lateral and in ventral view; (3-4, 11-14) spermatheca; (9) median portion of male abdominal tergite VII; (10) female sternite VIII. Scale bars: 0.1 mm.
Map 2 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Map 2: Distributions of the species of the G. carinicollis group: G. articarinata ASSING (black square), G. convergens ASSING (white square), G. uniplicata ASSING (black diamond), G. krzysztofi (ROUBAL) (white diamonds), G. carinicollis (EPPELSHEIM) (white circles), G. unituber nov.sp. (black circle), G. pambakica nov.sp. (white triangles), G. unicuneata nov.sp. (black star), G. meghruica nov.sp. (white star).
Figs 32-40 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 32-40: Geostiba unituber nov.sp.: (32) male pronotum and elytra; (33-35) median portion of male tergite VII; (36-38) median lobe of aedeagus in lateral and in ventral view; (39-40) spermatheca. Scale bars: 0.1 mm.
Map 1 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Map 1: Distributions of Geostiba zerchei PACE (white triangle), G. medea PACE (black triangle), and of the species of the G. bituberculatus group: G. recta nov.sp. (white circles), G. largata nov.sp. (black circles), G. artifistula nov.sp. (white asterisk), G. bituberculata (EPPELSHEIM) (black squares), G. kobrisensis PACE (white squares).
Figs 15-25 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 15-25: Geostiba largata nov.sp.: (15) male habitus; (16) male forebody; (17) male elytra; (18- 22) median lobe of aedeagus in lateral and in ventral view; (23-25) spermatheca. Scale bars: 15: 1.0 mm; 16: 0.5 mm; 17-25: 0.1 mm.
Figs 26-31 in A revision of Geostiba of the West Palaearctic region. XXIII. On the Sibiota species of the Caucasus region exclusive of Turkey (Coleoptera: Staphylinidae: Aleocharinae)
Figs 26-31: Geostiba artifistula nov.sp.: (26) male forebody; (27) male elytra; (28-29) median lobe of aedeagus in lateral and in ventral view; (30-31) spermatheca. Scale bars: 26: 0.2 mm; 27-31: 0.1 mm.
Text-fig. 7. Enamel microstructure in the molars of (a) Allosorex stenodus (KOE-4196 / Z 28207 – OF 6512) and (b) Blarina brevicauda (KOE-1435). SEM photos showing transverse sections of the paralophid in a lower molar. The schmelzmuster of Allosorex is one-layered and formed exclusively from radial enamel (RE), whereas the schmelzmuster of Blarina is two-layered, with an inner enamel of laterally inclined radial enamel with distinct interrow sheets (REIS). The radial enamel of the outer layer is heavily pigmented and therefore poorly etched. The pigmentation does not affect the schmelzmuster. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 7. Enamel microstructure in the molars of (a) Allosorex stenodus (KOE-4196 / Z 28207 – OF 6512) and (b) Blarina brevicauda (KOE-1435). SEM photos showing transverse sections of the paralophid in a lower molar. The schmelzmuster of Allosorex is one-layered and formed exclusively from radial enamel (RE), whereas the schmelzmuster of Blarina is two-layered, with an inner enamel of laterally inclined radial enamel with distinct interrow sheets (REIS). The radial enamel of the outer layer is heavily pigmented and therefore poorly etched. The pigmentation does not affect the schmelzmuster.
Text-fig. 5. Macroevolutionary trends related to the IC model in the first three teeth of the six families of extinct sloths, as well as specimens of the "basal Megatherioidea", Pseudoglyptodon, and Bradypus. Dashed line (- -) shows the regression including all data; solid line shows the regression after the exclusion of Octodontotherium (shown in the plot as a filled triangle). in Unexpected Inhibitory Cascade In The Molariforms Of Sloths (Folivora, Xenarthra): A Case Study In Xenarthrans Honouring Gerhard Storch'S Open-Mindedness
Text-fig. 5. Macroevolutionary trends related to the IC model in the first three teeth of the six families of extinct sloths, as well as specimens of the "basal Megatherioidea", Pseudoglyptodon, and Bradypus. Dashed line (- -) shows the regression including all data; solid line shows the regression after the exclusion of Octodontotherium (shown in the plot as a filled triangle).
Text-fig. 4. Macroevolutionary trends related to the IC model in the last three teeth of the six families of extinct sloths, as well as specimens of the "basal Megatherioidea", Pseudoglyptodon, and Bradypus. Dash-dot line (-.-) shows the regression including all data; solid line shows the regression after the exclusion of Octodontotherium (shown in the plot as a filled triangle). in Unexpected Inhibitory Cascade In The Molariforms Of Sloths (Folivora, Xenarthra): A Case Study In Xenarthrans Honouring Gerhard Storch'S Open-Mindedness
Text-fig. 4. Macroevolutionary trends related to the IC model in the last three teeth of the six families of extinct sloths, as well as specimens of the "basal Megatherioidea", Pseudoglyptodon, and Bradypus. Dash-dot line (-.-) shows the regression including all data; solid line shows the regression after the exclusion of Octodontotherium (shown in the plot as a filled triangle).
Dark Photon Exclusions from Existing Axion Haloscope Measurements
<p>Dark photon exclusions for polarized and unpolarized dark photons converted from axion measurements are each in a .mat file.</p> <p>Keys for the data are 'RBF_ueV', 'RBF_chi', 'UF_ueV', 'UF_chi', 'HAYSTAC_ueV', 'HAYSTAC_chi', 'ADMX_ueV', 'ADMX_chi', 'CAPP_ueV', and 'CAPP_chi' to obtain exclusions for dark photons for each of these experiments in the polarized and unpolarized cases. Each case has its own .mat file.</p> <p>The .py file is the Python code used to calculate cos<sup>2</sup>(theta), the square of the dot product between the dark photon polarization and the axis of the haloscope cavity in the slowly varying polarized case described in <a href="https://arxiv.org/abs/2104.09334">the associated manuscript</a>. The code shows how to calculate cos<sup>2</sup>(theta) using probability, taking the rotation of the earth into account for longer measurements. (If your computer is slow, you can use the find and replace function in your IDE to change all 'block=True' statements to 'block=False' and also change num_pts=50 instead of 500.)</p> <p>To use the .mat file format in Python, use a script like the following:</p> <pre>import matplotlib.pyplot as plt from scipy.io import loadmat mat_file = loadmat('haloscope_exclusions_unpolarized.mat') masses_in_ueV = mat_file['HAYSTAC_ueV'][0] chi_exclusion = mat_file['HAYSTAC_chi'][0] plt.figure() plt.semilogy(masses_in_ueV, chi_exclusion) plt.xlabel('Mass ($\mu$eV)') plt.ylabel('$\chi$') plt.title('HAYSTAC unpolarized dark photon exclusions') plt.show() </pre>
Supplementary Data and Codes for "Exclusive seismoacoustic detection and characterisation of an unseen and unheard fireball in the North Atlantic" by Stephen P. Hicks and Sandro B. Matos, et al.
<p>Supplementary Dataset containing windowed seismic traces for the 29 June 2022 fireball event near the Azores in the North Atlantic, as studied in the manuscript entitled, "Exclusive seismoacoustic detection and characterisation of an unseen and unheard fireball in the North Atlantic" by Stephen P. Hicks and Sandro B. Matos, et al.</p> <p>A Python Jupyter Notebook is also provided that reproduces the main figures of the paper.</p>
Enemy exclusion effects on biodiversity-productivity relationship in subtropical forest experiment
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Trees have similar growth responses to first-entry fires and reburns following long-term fire exclusion
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Recordings from: Evaluation of a coastal acoustic buoy for cetacean detections, bearing accuracy, and exclusion zone monitoring
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Data from: Birds that breed exclusively on islands have smaller clutches
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Data and code from: The functional form of specialized predation affects whether Janzen-Connell effects can prevent competitive exclusion
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Evolutionary history of grazing and resources determine herbivore exclusion effects on plant diversity
Ecological models predict that the effects of mammalian herbivore exclusion on plant diversity depend on resource availability and plant exposure to ungulate grazing over evolutionary time. Using an experiment replicated in 57 grasslands on six continents, with contrasting evolutionary history of grazing, we tested how resources (mean annual precipitation and soil nutrients) determine herbivore exclusion effects on plant diversity, richness, and evenness. Here we show that at sites with a long history of ungulate grazing, herbivore exclusion reduced plant diversity by reducing both richness and evenness, and the responses of richness and diversity to herbivore exclusion decreased with mean annual precipitation. At short with a short history of grazing, the effects of herbivore exclusion were not related to precipitation but differed for native and exotic plant richness. Thus, plant species’ evolutionary history of grazing continues to shape the response of the world’s grasslands to changing mammalian herbivory.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.