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280 results for “MESA”
Sevilleta site, station Deep Well, study of plant cover of Sporobolus flexuosus (mesa dropseed) in units of percent on a yearly timescale
The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from Sevilleta (SEV) contains plant cover of Sporobolus flexuosus (mesa dropseed) measurements in percent units and were aggregated to a yearly timescale.
Sevilleta site, station Five Points, study of plant cover of Sporobolus flexuosus (mesa dropseed) in units of percent on a yearly timescale
The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from Sevilleta (SEV) contains plant cover of Sporobolus flexuosus (mesa dropseed) measurements in percent units and were aggregated to a yearly timescale.
MESA Prediction models
<p>PrediXcan prediction models from MESA cohort.</p> <p>Also includes LD compilation for S-PrediXcan</p>
FIGURE 20. Velatida. A. Remaster palmatus. Stetson Mesa Terrace, 445.4 m. B in New species, occurrence records and observations of predation by deep-sea Asteroidea (Echinodermata) from the North Atlantic by NOAA ship Okeanos Explorer
FIGURE 20. Velatida. A. Remaster palmatus. Stetson Mesa Terrace, 445.4 m. B. Large specimen (30.0 cm total diameter) of Pythonaster atlantidis, NW Florida Escarpment, 1970 m. C and D. Pythonaster atlantidis sponge predation. DeSoto Canyon, 2604 m, showing dorsal and oral views (C&D respectively). E. Feeding on hexactinellid sponge. Jaguey Spur, off Puerto Rico, 2668 m. Feeding.
New Mass and Distance Estimates for Betelgeuse through Combined Evolutionary, Asteroseismic, and Hydrodynamical Simulations with MESA
<p>inlists for MESA version 11701 used to compute evolutionary tracks accompanying this manuscript on Betelgeuse</p>
Monochromatic opacity data from the Opacity Project (OP) for use with MESA.
<p>Monochromatic opacity data from the Opacity Project (OP) for use with MESA.</p> <p>The OP_mono opacities use data and code from the OP website as modified by Haili Hu. Since the file is large, it is not included in the standard mesa download.</p> <p>If you use these opacities, you should cite Seaton (2005): https://ui.adsabs.harvard.edu/#abs/2005MNRAS.362L…1S</p>
Pit House, Mesa Verde National Monument
Pit houses were the first dwellings at Mesa Verde in Colorado. Created in RealityCapture from 113 images Source: Objaverse 1.0 / Sketchfab
Mesa verde National Park Balcony Cloud
Lidar scan.Editing, clean and uniform Mesa Verde National Park's archaeological sites spans over 700 years of Native American history from 600 - 1300 CE. The renowned cliff dwellings, the height of the Puebloans' architecture, include more than 600 alcove sites. Balcony House overlooks Soda Canyon, about 700 feet above the narrow and rugged canyon. The canyon provided a number of important resources used in the everyday lives of the Ancestral Puebloan people.More info: https://doi.org/10.26301/az9d-mx47 Mesa Verde National Park- Balcony House - LiDAR - Terrestrial , Photogrammetry . Collected by CyArk . Distrubuted by Open Heritage 3D. Source: Objaverse 1.0 / Sketchfab
Mesa Verde National Park, Step House
Step House was built around 1000 AD and was used until 1250 AD. But the reconstructed pit house was here much earlier Source: Objaverse 1.0 / Sketchfab
FIGURE 8. Diptilostatus mesae n in New genus and seven new species of Brazilian eriophyoid mites and redescription of Catachela machaerii Keifer (Acari: Prostigmata: Eriophyoidea)
FIGURE 8. Diptilostatus mesae n.sp. D, dorsal aspect of female and detail of caudal dorsal annuli; PS, prodorsal shield; V, ventral aspect of female.
Square Tower House, Mesa Verde Colorado
Located in today's southern Colorado, Ancestral Puebloans moved into the Mesa Verde area about 550 CE. Square Tower Dwellings - Mesa Verde, ColoradoThe Ancestral Puebloans (village dwellers) were at one time mistakenly called Anasazi, a Navajo word meaning enemy ancestors. One of popular stops on the Mesa Top Loop Road is this multi story cliff dwelling called Square Tower House. The structure was well made of double-coursed stone walls, constructed around 1100 CE. A 200 year period, from 1100 to 1300, Mesa Verde reflected advanced building techniques and farming practices. The population of this area may have reached several thousand and created a fair amount of trash which ended up at the base of the cliff. What we know today of these early residents are found among the clues in this garbage heap. https://www.scenicusa.net/072406.html Created in RealityCapture by Capturing Reality from 914 images in 05h:48m:35s. Source: Objaverse 1.0 / Sketchfab
Inside Long House, Mesa Verde, (Untextured)
This is one of the largest shelted pueblos at Mesa Verde National Monument in Colorado. While settle more than a thousnd years before in the area, these highly sophisticated structures used water and cover to best advantage. A seep of water in the back of this shelter was life sustaining in times of drought. The back of this shelter shows that this area was used to grind maize and prepare food. These back rooms were scanned in some detail and even wood from 700 years ago is still here. This is an un-textured model after some processing I adjusted images and got it to texture; https://sketchfab.com/3d-models/long-house-mesa-verde-e88125394cb54fec9e6b3e2a8ee46c99 Created in RealityCapture by Capturing Reality from 919 images in 04h:57m:47s. Source: Objaverse 1.0 / Sketchfab
Far View Pueblo Complex, Mesa Verde Colorado
Created in RealityCapture by Capturing Reality from 230 images in 00h:35m:22s. Source: Objaverse 1.0 / Sketchfab
Animation, MESA inlists, and post-processing package for "Is Betelgeuse really rotating? Synthetic ALMA observations of large-scale convection in 3D simulations of Red Supergiants"
<p>Videos, post-processing package for mock ALMA observations, MESA (r23.05.1 with mesasdk-x86_64-linux-23.7.3) inlists and history files, Jupyter notebook and data to reproduce figures of the paper "Is Betelgeuse really rotating? Synthetic ALMA observations of large-scale convection in 3D simulations of Red Supergiants".</p>
Figure 4 in New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)
Figure 4. Fluorescence in situ hybridization of the (TTAGG)n telomere probe (red signals) in meiotic chromosomes of five Ommexechinae species, counterstained with DAPI (blue). Rearranged chromosomes with are indicated for Ca. maculosa (A), O. macropterum (B), O. virens (C), Cl. bimaculata (D), P. signata (E). Bar = 10µm.
Figure 3 in New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)
Figure 3. Fluorescence in situ hybridization of multigene families in mitotic and meiotic chromosomes of five Ommexechinae species, counterstained with DAPI (blue). Chromosomes with positive signals for 18S rDNA (A–E), 5S rDNA (F–J), U2 snDNA (K–O) and H3 (P–T) probes are indicated in white for Ca. maculosa (A, F, K, P), O. macropterum (B, G, L, Q), O. virens (C, H, M, R), Cl. bimaculata (D, I, N, S) and P. signata (E, J, O T). Meiotic cells are presented in most species, except for O. macropterum (B, G, L) and O. virens (H), in which mitotic cells are presented. H3 FISH experiment was unsuccessful in O. macropterum, due to lack of material (Q). Bar = 10µm.
Figure 6 in New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)
Figure 6. Schematic representation of two pathways in Ommexechinae L1 autosome evolution. To explain the variable L1 morphology and the distal U2 snDNA location, at least two different inversions must be considered. In the first hypothesis (A), two pericentric inversions are considered, the first one (A1–2) modifying L1 morphology (from acrocentric to submetacentric) and U2 snDNA location (from interstitial to distal), and the second one (A2–3) restoring the acrocentric morphology in P. signata and Cl. bimaculata. The alternative hypothesis involves two different kinds of inversions (B). First, a paracentric inversion changes U2 location without affecting morphology (B1–2) and, then, a pericentric one only changes L1 morphology (B2–3). Both hypotheses are further explained in the paragraph.
Figure 1 in New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)
Figure 1. Conventional analysis of mitotic and meiotic chromosomes of five Ommexechinae species. The karyotypes (A–E) and metaphase I of males (F–J) are shown for Ca. maculosa (A, F), O. macropterum (B, G), O. virens (C, H), Cl. bimaculata (D, I) and P. signata (E, J). Male karyotypes were obtained from spermatogonial cells (A–C, E) or from cells in anaphase I (D). Chromosomes are arranged in decreasing order size, and bi-armed autosomes are indicated in red. Male metaphase I shows (F–J) the first pair of autosomes indicated with arrows and the sex chromosomes with dotted lines. The structure of P. signata neo-X chromosome is indicated with light-blue colour and the neo-Y with orange (E, J). Inset (J) highlight P. signata neo-XY. Bar = 10µm.
Figure 2 in New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)
Figure 2. Distribution of heterochromatin and chromatin base-richness in five Ommexechinae species. C banding (A–E), CMA3 (F–J) and DAPI (K–O) staining were performed in Ca. maculosa (A, F, K), O. macropterum (B, G, L), O. virens (C, H, M), Cl. bimaculata (D, I, N) and P. signata (E, J, O). Pictures were obtained from female somatic mitosis, in exception to CMA3 and DAPI for P. signata (J, O), in which spermatogonial mitosis is presented, and also in (E, inset), in which C-banding pattern is shown for neo-sex bivalent at metaphase I. Autosomes with positive signals for each technique are indicated with black and white arrows and dotted lines. Yellow arrowheads exemplify the centromeric positive pattern for different banding techniques: C-positive (D), CMA3 positive (I), and DAPI positive (L). The red arrowhead exemplifies additional interstitial C positive blocks (C). Neo-sex chromosomes and their positive signals are indicated green (neo-X) and orange (neo-Y). Insets show in detail the banding patterns of chromosomes of S group in O. macropterum (B) and O. virens (C), and P. signata neo-XY (E, J, O). C = centromere, bar = 10µm except indicated otherwise.
Figure 5 in New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)
Figure 5. Schematic representation of multigene families chromosomal locations. Species names, probes and chromosome numbers are indicated in each figure. Coloured arrowheads show chromosomes that shared probe locations for at least three species and, therefore, homeology is suggested, as follows: L1 chromosomes of all species (U2 snDNA), L2 (5S rDNA location plus H3 in some cases) of P. signata, Cl. bimaculata, O. virens and Ca. maculosa, M3 of Cl. bimaculata, Ca. maculosa, O. virens and O. macropterum (5S rDNA) and X chromosomes of Cl. bimaculata, Ca. maculosa together with XR of P. signata (18S rDNA).
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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)
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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.