Henrik Zetterberg

17 articles listing Henrik Zetterberg in Nature Communications, Nature, Science Advances, PNAS, indexed by Paperzzz from Crossref and OSF.

  1. Prediction of mild cognitive impairment progression using time-sensitive multimodal biomarkers Science Advances
  2. Cerebrospinal fluid biomarkers reveal transdiagnostic synaptic dysfunction across major psychiatric disorders Nature Communications
  3. Plasma proteomic profiles of Alzheimer’s disease and neurodegeneration in African cohorts Nature Communications
  4. Gut bacterial metabolite imidazole propionate potentiates Alzheimer’s disease pathology Nature Communications
  5. Alzheimer’s Disease blood biomarkers measured through remote capillary sampling correlate with cognition in older adults Nature Communications
  6. Tracking the turning point in Alzheimer’s disease Science
  7. Head-to-head comparison of brain-derived pTau217 and total pTau217 for brain amyloid and tau pathology classification PNAS
  8. Biofluid biomarkers in Alzheimer’s disease and other neurodegenerative dementias Nature
  9. Biomarker-integrated prognostic stagings for Alzheimer’s Disease Nature Communications
  10. Prevalence of Alzheimer’s disease pathology in the community Nature
  11. Computational whole-body-exposome models for global precision brain health Nature Communications
  12. Plasma p-tau217 as a biomarker of Alzheimer’s disease pathology in individuals with Down syndrome Nature Communications
  13. Isotope-encoded spatial biology identifies plaque-age-dependent maturation and synaptic loss in an Alzheimer’s disease mouse model Nature Communications
  14. CSF total tau as a proxy of synaptic degeneration Nature Communications
  15. Glial reactivity correlates with synaptic dysfunction across aging and Alzheimer’s disease Nature Communications
  16. Proteomic analysis of Down syndrome cerebrospinal fluid compared to late-onset and autosomal dominant Alzheimer´s disease Nature Communications
  17. Proteomic signatures of corona and herpes viral antibodies identify IGDCC4 as a mediator of neurodegeneration Science Advances