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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... |
Jul 1, 2026 -
Understanding the Contributions of Proprioception to Upper Limb Capacity and Real-World Performance After Stroke
Tabular Data - 5.9 KB - 7 Variables, 32 Observations - UNF:6:5sfN3DVx3Id3oi/J6A23CQ==
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Jul 1, 2026 -
Understanding the Contributions of Proprioception to Upper Limb Capacity and Real-World Performance After Stroke
Plain Text - 1.1 KB -
MD5: 3e3895dffd405ca9f0d5afadf381145f
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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... |
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