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18 results on '"Leikfoss, Ingvild Sørum"'

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3. Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

4. sj-docx-11-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

5. sj-pdf-2-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

6. sj-docx-9-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

7. sj-pdf-3-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

8. sj-docx-8-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

9. sj-pdf-1-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

10. sj-pdf-4-msj-10.1177_13524585221097296 – Supplemental material for Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis

11. Global DNA methylation changes in treated and untreated MS patients measured over time

12. Exploring the role of the multiple sclerosis susceptibility gene CLEC16A in T cells

13. Quantitative Proteomics Reveals Protein Dysregulation During T Cell Activation in Multiple Sclerosis Patients

14. Multiple Sclerosis Risk Allele in CLEC16A Acts as an Expression Quantitative Trait Locus for CLEC16A and SOCS1 in CD4+ T Cells

15. Molecular analysis of the CLEC16A autoimmune risk locus

16. From Identification to Characterization of the Multiple Sclerosis Susceptibility Gene CLEC16A.

17. Establishment of vitamin D receptor chromatin immunoprecipitation in CD8+ T cells to identify new vitamin D receptor binding sites

18. Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis.

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