1 to 4 of 4 Results
Sep 24, 2026
Wehmiller, John, 2026, "AMINOSTRATIGRAPHIC AND GEOCHRONOLOGIC DATA FOR QUATERNARY COASTAL SITES, NORTH AND SOUTH AMERICA", https://doi.org/10.82252/JJJCEE, UD Dataverse, V4, UNF:6:dFAwFwGPJivGVvUpP/BeQw== [fileUNF]
Amino acid racemization data for Quaternary-age mollusks from coastal sites, Atlantic and Pacific coasts of North and South America. Data are relevant for stratigraphic and chronologic interpretation of outcrops, subsurface sections, and offshore cores. Results are organized by USGS 1:100K quadrangles for most of the US Atlantic coast, by environme... |
Sep 4, 2026
Repetto, William; Michalak, Russell, 2026, "Protocol Prompting for Previously Funded NSF Grants", https://doi.org/10.82252/XXMB5X, UD Dataverse, V1
Grant writing success can depend on competitive intelligence. Some competitive intelligence is tactical and applies to an individual opportunity. For example, being able to see the types of projects that a funding opportunity has supported in the past can offer a prospective applicant a glimpse into whether their idea is suitable, relevant, and com... |
Jul 1, 2026
Hoh, Joanna; Semrau, Jennifer, 2026, "Understanding the Contributions of Proprioception to Upper Limb Capacity and Real-World Performance After Stroke", https://doi.org/10.82252/FL8WNA, UD Dataverse, V1, UNF:6:5sfN3DVx3Id3oi/J6A23CQ== [fileUNF]
This dataset (N = 59) contains demographic, clinical, and relevant outcomes to understand the contributions of proprioception to arm capacity and real-world performance after stroke. Capacity was quantified with a clinical and laboratory capacity measure. Real-world performance was quantified with bilaterally wrist-worn Actigraphs. Proprioception w... |
Apr 1, 2026
Mulhearn, Erin M.; Alperstein, Ariel M., 2026, "Chaperone proteins protect against desmin fragment amyloid aggregation", https://doi.org/10.82252/JUBRVV, UD Dataverse, V1, UNF:6:OSbY+oTmzXcCV0YDfFMrhg== [fileUNF]
Cytoskeletal protein desmin, a cardiac and skeletal intermediate filament that is a major protein component in cardiomyocytes, is believed to be a potential regulator of heart disease. Desmin can cleave into fragments which can form amyloid in vivo, leading to cardiomyopathy. Chaperone proteins ⍺B-crystallin and HSP27 serve to refold, sequester, or... |
