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66 results for “ZooMS”
ZooMS identification of a whale bone tool from Bronze Age Heiloo, the Netherlands
<p>This dataset contains the ZooMS data used in the palaeoproteomic identification of a whale bone tool from Bronze Age Heiloo, the Netherlands. The same project was also analysed using LC-MS/MS. The reference to the data repository containing the LC-MS/MS data can be found in the associated publication.</p>
Haptic Zoom: An interaction model for desktop haptic devices with limited workspace - Evaluation data
<p>Raw data collected in the evaluation of the new interaction technique for force feedback desktop haptic devices called Haptic Zoom.<br><br></p> <p>Gutiérrez-Fernández, A., Fernández-Llamas, C., Esteban, G. & Conde, Miguel A. (2023). Haptic Zoom: An Interaction Model for Desktop Haptic Devices with Limited Workspace. <em>International Journal of Human–Computer Interaction, 39</em>(4), 851-862. <a href="https://doi.org/10.1080/10447318.2022.2049140">https://doi.org/10.1080/10447318.2022.2049140</a></p>
Integrating ZooMS and zooarchaeology: new data from the Uluzzian levels of Uluzzo C Rock Shelter, Roccia San Sebastiano cave and Riparo del Broion
<p>ZooMS spectra of Riparo del Broion, Roccia San Sebastiano cave and Uluzzo C Rock Shelter.</p>
020946_1450_zoom_location_001_mars_hirise
020946_1450_zoom_location_001_mars_hirise the "Knob" as referred to here: https://skfb.ly/6MVKG more info may be available here: "Light-Toned Rock" https://www.uahirise.org/dtm/dtm.php?ID=ESP_020946_1450 This signal was analyzed by Organic. Tools used: gdal, qgis, houdini https://www.instagram.com/organiccomputer/ Source: Objaverse 1.0 / Sketchfab
DRAFT: zoom La Citadelle de Sisteron (France)
DRAFT:Zoom1 It looks like 50,000 faces does a good job for the castle. Source: Objaverse 1.0 / Sketchfab
017399_1680_zoom_location_001_mars_hirise
017399_1680_zoom_location_001_mars_hirise this test focuses on a small outcrop as seen in the overview of this area located here: https://skfb.ly/6MVI9 more info may be available here: "Light-Toned Layering in Noctis Region Pit" https://www.uahirise.org/dtm/dtm.php?ID=ESP_017399_1680 This signal was analyzed by Organic. Tools used: gdal, qgis, houdini https://www.instagram.com/organiccomputer/ Source: Objaverse 1.0 / Sketchfab
Separable processes for live "in-person" and "zoom-like" faces
<p>Increased reliance on Zoom-like (webcam) platforms for interpersonal communications has raised the question of how this new virtual format compares to real face-to-face interactions. This question is also relevant to current models of face processing. Neural coding of simulated faces engages feature-selective processes in the ventral visual stream and two-person live face-to-face interactions engage additional face processes in the lateral and dorsal visual streams. However, it is not known if and/or how live in-person face processes differ from live virtual face processes because the faces and tasks are essentially the same. Current views of functional specificity predict no neural difference between the virtual and live conditions. Here we compare the same live faces viewed both over a video format and in person with measures of functional near-infrared spectroscopy (fNIRS), eye tracking, pupillometry, and electroencephalography (EEG). Neural activity was increased in dorsal regions for in-person face gaze and was increased in ventral regions for virtual face gaze. Longer dwell times on the face, increased arousal indexed by pupil diameter, increased neural oscillation power in the theta band, and increased cross-brain coherence were also observed for the in-person face condition. These findings highlight the fundamental importance of real faces and natural interactions for models of face processing.</p>
ZooMS spectra for PNAS Review Richter et al. 2021
<p>PMF data produced via MALDI-TOF from bone collagen.</p>
A comparison of minimally-invasive sampling techniques for ZooMS analysis of bone artifacts: MALDI-TOF mass spectra
<p><span></span></p> <p>Bone and antler are important raw materials for tool manufacture in many cultures, past and present. The modification of osseous features which take place during artifact manufacture frequently makes it difficult to identify either the bone element or the host animal, which can limit our understanding of the cultural, economic, and/or symbolic factors which influence raw material acquisition and use. While biomolecular approaches can provide taxonomic identifications of bone or antler artifacts, these methods are frequently destructive, raising concerns about invasive sampling of culturally-important artifacts or belongings. Collagen peptide mass fingerprinting (Zooarchaeology by Mass Spectrometry or ZooMS) can provide robust taxonomic identifications of bone and antler artifacts. While the ZooMS method commonly involves destructive subsampling, minimally-invasive sampling techniques based on the triboelectric effect have also been proposed. In this paper, we compare three previously proposed minimally-invasive sampling methods (forced bag, eraser, and polishing film) on an assemblage of 15 bone artifacts from the pre-contact site EjTa-4, a large midden complex located on Calvert Island, British Columbia, Canada. We compare the results of the minimally-invasive methods to 10 fragmentary remains sampled using the conventional destructive ZooMS method. We assess the reliability and effectiveness of these methods by comparing MALDI-TOF spectral quality, the number of diagnostic and high molecular weight peaks as well as the taxonomic resolution reached after identification. We find that coarse fiber-optic polishing films are the most effective of the minimally-invasive techniques compared in this study, and that the spectral quality produced by this minimally-invasive method was not significantly different from the conventional destructive method. Our results suggest that this minimally-invasive sampling technique for ZooMS can be successfully applied to culturally significant artifacts, providing comparable taxonomic identifications to the conventional, destructive ZooMS method.</p>
MALDI-TOF-MS spectra of modern South African rodents for ZooMS
<p>MALDI-TOF-MS spectra of extracted collagen from modern South African rodents. These spectra were used to develop peptide markers for Zooarchaeology by Mass Spectrometry (ZooMS). All spectra are uploaded in .mzml format.</p> <p>One sample per species was also analyzed with LC-MS/MS. This data is available at PXD040129 and were uploaded through MassIVE (MSV000091290).</p>
Tryps-IN: A streamlined palaeoproteomics workflow enables ZooMS analysis of 10,000-year-old petrous bones from Jordan rift-valley
<p>Poor preservation of collagen in dry and/or arid environments has hindered the application of Zooarchaeology by mass spectrometry (ZooMS) analysis in many regions of the world, and as a result many zooarchaeological investigations have relied exclusively on the morphological assessment of fragmentary remains, due to the inadequate preservation of biomolecules. The climatic conditions of Southwest Asia include extreme temperature fluctuations unconducive to preservation of proteins and DNA. We performed zooarchaeological analysis of remains from the 10,000-year-old site of Shkārat Msaied in Jordan and sub-sampled twenty-eight petrous bones, the hardest bone in the mammalian skeleton, for species identification by ZooMS. Using an unconventional and simplified extraction protocol we call Tryps-IN, in which digestion was performed without removal of the demineralising EDTA, we taxonomically identified several fragments, outperforming the established ZooMS work-flow. A subset of identifications was subsequently confirmed using liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) protein sequencing. The new methodology presented here opens the possibility of further bioarchaeological investigation of other fragmentary faunal assemblages within this region of archaeological significance. </p>
Supplementary material from: ZooMS confirms geometric morphometrics species identification of ancient sheep and goat
<p><span>Geometric morphometrics can effectively distinguish isolated third lower molars of present-day sheep and goat, but its applicability to archaeological specimens has yet to be established. Using a modern reference collection of 743 sheep and goats and a 2D-landmark-based geometric morphometric (GMM) protocol, this study aimed to morphometrically identify 109 archaeological specimens, used as case studies, dating from the Late Neolithic to the modern period/era. These morphometric identifications were then compared to molecular identifications via collagen peptide mass fingerprinting, known as Zooarcheology by Mass Spectrometry (ZooMS). ZooMS confirmed the morphometric identifications for 104 specimens, with the five misidentified specimens all morphometrically identified as goat. </span></p> <p><span>Modern sheep and goats have larger teeth and distinct shapes compared to their archaeological counterparts, suggesting strong differences between archaeological and modern specimens potentially linked with recent breed improvement or geographic origin of the specimens. In addition, for both species, </span><span>some of the archaeological dental morphologies do not match with any of our modern references</span><span>.</span></p> <p><span>This study validates the applicability of geometric morphometrics for identifying isolated archaeological sheep and goat teeth. It represents a stepping stone for future, non-destructive, bioarchaeological studies of the two species.</span></p>
020946_1450_zoom_location_003_mars_hirise
020946_1450_zoom_location_003_mars_hirise another sand/rock interface -- a 3rd closer look into here -> https://skfb.ly/6MVKG more info may be available here: "Light-Toned Rock" https://www.uahirise.org/dtm/dtm.php?ID=ESP_020946_1450 This signal was analyzed by Organic. Tools used: gdal, qgis, houdini https://www.instagram.com/organiccomputer/ Source: Objaverse 1.0 / Sketchfab
017399_1680_zoom_location_002_mars_hirise
017399_1680_zoom_location_002_mars_hirise this test focuses on a small outcrop as seen in the overview of this area located here: https://skfb.ly/6MVI9 more info may be available here: "Light-Toned Layering in Noctis Region Pit" https://www.uahirise.org/dtm/dtm.php?ID=ESP_017399_1680 This signal was analyzed by Organic. Tools used: gdal, qgis, houdini https://www.instagram.com/organiccomputer/ Source: Objaverse 1.0 / Sketchfab
The Imperative Trial: Treatment of Acute Ischemic Stroke With the Zoom Reperfusion System
ClinicalTrials.gov study NCT04129125. IPD Sharing: NO. Countries: 1. Publications: 1.
Using bone technology and ZooMS to understand indigenous use of marine mammals at Iita, northwest Greenland
Open the record for dataset details and reuse information.
Zooming in on the temporal dimensions of plant-soil feedback: plant sensitivity and microbial dynamics
Open the record for dataset details and reuse information.
Supplementary material from: ZooMS confirms geometric morphometrics species identification of ancient sheep and goat
Open the record for dataset details and reuse information.
A comparison of minimally-invasive sampling techniques for ZooMS analysis of bone artifacts: MALDI-TOF mass spectra
Open the record for dataset details and reuse information.
Separable processes for live “in-person” and “zoom-like” faces
Open the record for dataset details and reuse information.
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