Mia Emgård

Affiliations: 
1996-2001 Lund University, Lund, Skåne län, Sweden 
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"Mia Emgård"
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Publications

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Emgård M, Piao J, Aineskog H, et al. (2014) Neuroprotective effects of human spinal cord-derived neural precursor cells after transplantation to the injured spinal cord. Experimental Neurology. 253: 138-45
Emgård M, Holmberg L, Samuelsson EB, et al. (2009) Human neural precursor cells continue to proliferate and exhibit low cell death after transplantation to the injured rat spinal cord. Brain Research. 1278: 15-26
Emgård M, Hallin U, Karlsson J, et al. (2003) Both apoptosis and necrosis occur early after intracerebral grafting of ventral mesencephalic tissue: a role for protease activation. Journal of Neurochemistry. 86: 1223-32
Ahn YH, Emgård M, Brundin P. (2003) Ultrastructural characterization of dissociated embryonic ventral mesencephalic tissue treated with neuroprotectants. Cell Transplantation. 12: 235-41
Emgård M, Blomgren K, Brundin P. (2002) Characterisation of cell damage and death in embryonic mesencephalic tissue: a study on ultrastructure, vital stains and protease activity. Neuroscience. 115: 1177-87
Karlsson J, Emgård M, Brundin P. (2002) Comparison between survival of lazaroid-treated embryonic nigral neurons in cell suspensions, cultures and transplants. Brain Research. 955: 268-80
Petersén Å, Hansson O, Emgård M, et al. (2000) Grafting of Nigral Tissue Hibernated with Tirilazad Mesylate and Glial Cell Line-Derived Neurotrophic Factor. Cell Transplantation. 9: 577-584
Petersen A, Hansson O, Emgård M, et al. (2000) Grafting of nigral tissue hibernated with tirilazad mesylate and glial cell line-derived neurotrophic factor. Cell Transplantation. 9: 577-84
Mundt-Petersen U, Petersén A, Emgård M, et al. (2000) Caspase inhibition increases embryonic striatal graft survival. Experimental Neurology. 164: 112-20
Karlsson J, Emgard M, Brundin P, et al. (2000) trans-resveratrol protects embryonic mesencephalic cells from tert-butyl hydroperoxide: electron paramagnetic resonance spin trapping evidence for a radical scavenging mechanism. Journal of Neurochemistry. 75: 141-50
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