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Results: 34
Number of items: 34
  • Open Access
    Mekkes, N. J., Groot, M., Hoekstra, E., de Boer, A., Dagkesamanskaia, E., Bouwman, S., Wehrens, S. M. T., Herbert, M. K., Wever, D. D., Rozemuller, A., Eggen, B. J. L., Huitinga, I., & Holtman, I. R. (2024). Identification of clinical disease trajectories in neurodegenerative disorders with natural language processing. Nature medicine, 30(4), 1143-1153. https://doi.org/10.1038/s41591-024-02843-9
  • Open Access
    van den Bosch, A. M. R., Wever, D., Schonewille, P., Schuller, S. L., Smolders, J., Hamann, J., & Huitinga, I. (2024). Cortical CD200–CD200R and CD47–SIRPα expression is associated with multiple sclerosis pathology. Brain Communications, 6(4), Article fcae264. https://doi.org/10.1093/braincomms/fcae264
  • Open Access
    de Vries, L. E., Huitinga, I., Kessels, H. W., Swaab, D. F., & Verhaagen, J. (2024). The concept of resilience to Alzheimer's Disease: current definitions and cellular and molecular mechanisms. Molecular Neurodegeneration, 19, Article 33. https://doi.org/10.1186/s13024-024-00719-7
  • Open Access
    van den Bosch, A. M. R. (2024). Progression of multiple sclerosis: The role of microglia and neurons. [Thesis, fully internal, Universiteit van Amsterdam].
  • International Multiple Sclerosis Genetics Consortium, & MultipleMS Consortium (2023). Locus for severity implicates CNS resilience in progression of multiple sclerosis. Nature, 619(7969), 323–331. https://doi.org/10.1038/s41586-023-06250-x
  • Open Access
    van den Bosch, A. M. R., Hümmert, S., Steyer, A., Ruhwedel, T., Hamann, J., Smolders, J., Nave, K. A., Stadelmann, C., Kole, M. H. P., Möbius, W., & Huitinga, I. (2023). Ultrastructural Axon–Myelin Unit Alterations in Multiple Sclerosis Correlate with Inflammation. Annals of Neurology, 93(4), 856-870. https://doi.org/10.1002/ana.26585
  • Open Access
    Hsiao, C. C., Engelenburg, H. J., Jongejan, A., Zhu, J., Zhang, B., Mingueneau, M., Moerland, P. D., Huitinga, I., Smolders, J., & Hamann, J. (2023). Osteopontin associates with brain TRM-cell transcriptome and compartmentalization in donors with and without multiple sclerosis. iScience, 26(1), Article 105785. https://doi.org/10.1016/j.isci.2022.105785
  • Open Access
    Scheepstra, K. W. F., Mizee, M. R., van Scheppingen, J., Adelia, A., Wever, D. D., Mason, M. R. J., Dubbelaar, M. L., Hsiao, C. C., Eggen, B. J. L., Hamann, J., & Huitinga, I. (2023). Microglia Transcriptional Profiling in Major Depressive Disorder Shows Inhibition of Cortical Gray Matter Microglia. Biological Psychiatry, 94(8), 619-629. https://doi.org/10.1016/j.biopsych.2023.04.020
  • Hsiao, C.-C., Fransen, N. L., van den Bosch, A. M. R., Brandwijk, K. I. M., Huitinga, I., Hamann, J., & Smolders, J. (2021). White matter lesions in multiple sclerosis are enriched for CD20dim CD8+ tissue-resident memory T cells. European journal of immunology, 51(2), 483-486. https://doi.org/10.1002/eji.202048665
  • Open Access
    Zhang, L., Verwer, R. W. H., Zhao, J., Huitinga, I., Lucassen, P. J., & Swaab, D. F. (2021). Changes in glial gene expression in the prefrontal cortex in relation to major depressive disorder, suicide and psychotic features. Journal of Affective Disorders, 295, 893-903. https://doi.org/10.1016/j.jad.2021.08.098
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