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1,118 results for “CAPES”
Figure 150 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 150. Known distribution of Acrotelsella septentrionalis sp. nov.
Figure 177 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 177. Acrotelsella obscura sp. nov., 10 km south of Coen, Queensland.
Figure 129 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 129. Acrotelsella hethicola sp. nov. holotype from Jardine River, Queensland.
Figure 151 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 151. Acrotelsella septentrionalis sp. nov. from Jardine River, Queensland.
Figure 103 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 103. Known distribution of Acrotelsella arboricola sp. nov.
Figure 104 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 104. Acrotelsella arboricola from Undara, Queensland.
Figure 101. Acrotelsella aff. marginata F2 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 101. Acrotelsella aff. marginata F2 from Punsand Bay campground, Queensland.
Figure 102. Acrotelsella aff. marginata F3 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 102. Acrotelsella aff. marginata F3 from Captain Billy Road, Queensland.
Figure 176 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 176. Known distribution of Acrotelsella obscura sp. nov.
Figure 80 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 80. Acrotelsella marginata sp. nov. from Pennefather, Queensland.
Figure 3 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 3. Acrotelsella petra sp. nov. from Balancing Rock, Chillagoe, Queensland.
Figure 2 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 2. Known distribution of Acrotelsella petra sp. nov.
Figure 30 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 30. Known distribution of Acrotelsella quattuor sp. nov.
Figure 56 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 56. Acrotelsella lauraensis sp. nov. from Laura, Queensland.
Figure 55 in On some silverfish taxa from the Cape York region of northern Australia (Zygentoma: Lepismatidae: Ctenolepismatinae)
Figure 55. Known distribution of Acrotelsella lauraensis sp. nov.
Figure 6 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 6 – Location of Tswalu Kalahari in southern Africa.
Fig. 11 in Two new species of the genus Scapanoclypeus from Northern Cape, Republic of South Africa (Coleoptera: Scarabaeidae: Melolonthinae)
Fig. 11. Distribution
Processed ADCP and CTD Data for the Processes Driving Exchange at Cape Hatteras (PEACH) Program
<p>These are the hourly acoustic doppler current profiler (ADCP) and conductivity-temperature-depth (CTD files from the ten moored bottom frames and buoys deployed as part of the PEACH program. Level 2 data have been quality-controlled and gridded to an hourly time-base. A technical report describing the details of processing and moored aspects of the experiment can be found in: Haines, S., <em>et al.</em> (2022) Mooring Data Report for the Processes driving Exchange at Cape Hatteras (PEACH) Project. (doi:10.5281/zenodo.6380851). </p>
Processed Buoy and Bulk Heat Flux Data for the Processes Driving Exchange at Cape Hatteras (PEACH) Program
<p>These are the hourly buoy and bulk heat flux from National Data Buoy Center (NDBC) buoys and the two buoys deployed as part of the PEACH program. Level 2 data have been quality-controlled and gridded to an hourly time-base. A technical report describing the details of processing and the moored aspects of the experiment can be found in: Haines, S., et al. (2022) Mooring Data Report for the Processes driving Exchange at Cape Hatteras (PEACH) Project. (doi:10.5281/zenodo.6380851).</p>
Data from: Between the Cape Fold Mountains and the deep blue sea: comparative phylogeography of selected codistributed ectotherms reveals asynchronous cladogenesis. Sampling locations and MaxEnt input files
<p><span>We compare the phylogeographic structure of thirteen codistributed ectotherms including four reptiles (a snake, a legless skink and two tortoise species) and nine invertebrates (six freshwater crabs and three velvet worm species) to test the presence of congruent evolutionary histories. </span><span>Phylogenies were estimated and dated using maximum likelihood and Bayesian methods with combined mitochondrial and nuclear DNA sequence datasets. </span><span>All taxa demonstrated a marked east/west phylogeographic division, separated by the Cape Fold Mountain range.</span><span> <span>Phylogeographic concordance factors were calculated to assess the degree of evolutionary congruence among the study species and </span></span><span>generally supported a shared pattern of diversification along the east/west longitudinal axis</span><span>. Testing simultaneous divergence between the eastern and western phylogeographic regions indicated </span><span>pseudo-congruent evolutionary histories among the study taxa, with at least three separate divergence events throughout the Mio/Plio/Pleistocene epochs.</span><span> <span>Climatic refugia were identified for each species using climatic niche modeling, </span></span><span>demonstrating taxon-specific responses to climatic fluctuations. Climate and the Cape Fold Mountain barrier explained the highest proportion of genetic diversity in all taxa, while climate was the most significant individual abiotic variable. </span><span>This study highlights the complex interactions between the Cape Fold Mountains and past climatic oscillations during the Mio/Plio/Pleistocene. The congruent east/west phylogeographic division observed in all taxa lends support to the conclusion that the longitudinal climatic gradient within the Greater Cape Floristic Region, mediated in part by the barrier to dispersal posed by the Cape Fold Mountains, plays a major role in lineage diversification and population differentiation.</span></p>
ScienceDex guides
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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.