Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 7 Similar Profiles
Oligodendroglia Medicine & Life Sciences
Cuprizone Medicine & Life Sciences
Demyelinating Diseases Medicine & Life Sciences
T-Lymphocytes Medicine & Life Sciences
Therapeutics Medicine & Life Sciences
Central Nervous System Medicine & Life Sciences
Metallothionein Medicine & Life Sciences
Brain Medicine & Life Sciences

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Research Output 2007 2017

Lineage tracing reveals dynamic changes in oligodendrocyte precursor cells following cuprizone-induced demyelination

Baxi, E. G., Debruin, J., Jin, J., Strasburger, H. J., Smith, M. D., Orthmann-Murphy, J. L., Schott, J. T., Fairchild, A. N., Bergles, D. E. & Calabresi, P. A. 2017 (Accepted/In press) In : GLIA.

Research output: Research - peer-reviewArticle

Cuprizone
Oligodendroglia
Demyelinating Diseases
Stem Cells
Gray Matter
Myelin Proteins
Neurology
Rats
Assays
Fluorescence

Systemic tolerance mediated by melanoma brain tumors is reversible by radiotherapy and vaccination

Jackson, C. M., Kochel, C. M., Nirschl, C. J., Durham, N. M., Ruzevick, J., Alme, A., Francica, B. J., Elias, J., Daniels, A., Dubensky, T. W., Lauer, P., Brockstedt, D. G., Baxi, E. G., Calabresi, P. A., Taube, J. M., Pardo, C. A., Brem, H., Pardoll, D. M., Lim, M. & Drake, C. G. Mar 1 2016 In : Clinical Cancer Research. 22, 5, p. 1161-1172 12 p.

Research output: Research - peer-reviewArticle

Central Nervous System Neoplasms
Brain Neoplasms
Melanoma
Vaccination
Radiotherapy

Disparate effects of mesenchymal stem cells in experimental autoimmune encephalomyelitis and cuprizone-induced demyelination

Glenn, J. D., Smith, M. D., Kirby, L. A., Baxi, E. G. & Whartenby, K. A. Sep 25 2015 In : PLoS One. 10, 9, e0139008

Research output: Research - peer-reviewArticle

Cuprizone
Autoimmune Experimental Encephalomyelitis
Demyelinating Diseases
Mesenchymal Stromal Cells
encephalitis

Transfer of myelin-reactive Th17 cells impairs endogenous remyelination in the central nervous system of cuprizone-fed mice

Baxi, E. G., DeBruin, J., Tosi, D. M., Grishkan, I. V., Smith, M. D., Kirby, L. A., Strasburger, H. J., Fairchild, A. N., Calabresi, P. A. & Gocke, A. R. Jun 3 2015 In : Journal of Neuroscience. 35, 22, p. 8626-8639 14 p.

Research output: Research - peer-reviewArticle

Cuprizone
Th17 Cells
Myelin Sheath
Central Nervous System
Animal Models