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Paper Details

Radiogenomics of <i>C9orf72</i> Expansion Carriers Reveals Global Transposable Element Derepression and Enables Prediction of Thalamic Atrophy and Clinical Impairment.
J Neurosci
4
2023
ALS, C9, C9-FTD, FTD, HRE, Hexanucleotide repeat, TE, TEs, Thalamic atrophy, amyotrophic lateral sclerosis, atrophy, atrophy of, atrophy of multiple pulvinar nuclei, atrophy of thalamic nuclei, blood, clinical impairment, disproportionate atrophy of the right mediodorsal lateral nucleus, frontotemporal dementia, genetic elements, human, human endogenous LINE-1 element, human genome, human whole-blood RNA, neurodegenerative diseases, peripheral blood, sporadic and familial FTD, thalamic atrophy, transposable element, transposable elements
Author NameAffiliation
Ethan G GeierWeill Institute for Neurosciences, University of California san francisco
Ethan G Geier
Anna KarydasWeill Institute for Neurosciences, University of California san francisco
Justin K IchidaKeck School of Medicine of USC, University of Southern California
Aaron D GitlerStanford University School of Medicine
Joel H KramerWeill Institute for Neurosciences, University of California san francisco
Joel H KramerGlobal Brain Health Institute, University of California, and Trinity College Dublin
Howard J RosenWeill Institute for Neurosciences, University of California san francisco
Howard J RosenGlobal Brain Health Institute, University of California, and Trinity College Dublin
Adam L BoxerWeill Institute for Neurosciences, University of California san francisco
William W SeeleyWeill Institute for Neurosciences, University of California san francisco
William W SeeleyUniversity of California san francisco
Bruce L MillerWeill Institute for Neurosciences, University of California san francisco
Bruce L MillerGlobal Brain Health Institute, University of California, and Trinity College Dublin
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