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Thomas Christensen

Researcher at University of Copenhagen

Publications -  145
Citations -  3285

Thomas Christensen is an academic researcher from University of Copenhagen. The author has contributed to research in topics: Stroke & Medicine. The author has an hindex of 28, co-authored 132 publications receiving 2948 citations. Previous affiliations of Thomas Christensen include Aarhus University & Copenhagen University Hospital.

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Self-monitoring of oral anticoagulation: systematic review and meta-analysis of individual patient data

TL;DR: The analysis showed that self-monitoring and self-management of oral coagulation is a safe option for suitable patients of all ages and patients should also be offered the option to self-manage their disease with suitable health-care support as back-up.
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Ischemic Damage in Hippocampal CA1 is Dependent on Glutamate Release and Intact Innervation from CA3

TL;DR: The ischemia-induced damage of pyramidal cells in CA1 is dependent on glutamate release and intact innervation from CA3, and the pathogenetic significance of glutamate is investigated.
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Microglia and macrophages are major sources of locally produced transforming growth factor‐β1 after transient middle cerebral artery occlusion in rats

TL;DR: Activated microglia and macrophages are established as the major source of TGF‐β1 mRNA following experimental focal cerebral ischemia, and TGF•β1‐mediated functions may be exerted bymicroglia both in the early degenerative phase, and later in combination with blood‐borne macrophage, in the remodeling and healing phase after focal cerebral waschemia.
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Microglial and macrophage reactions mark progressive changes and define the penumbra in the rat neocortex and striatum after transient middle cerebral artery occlusion.

TL;DR: The present results are interpreted as delineating two differentially progressing penumbral zones, which are likely to reflect differences in the underlying degenerative processes.
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miRNA Expression Profiles in Cerebrospinal Fluid and Blood of Patients with Acute Ischemic Stroke

TL;DR: The preliminary results demonstrate that it is possible to detect and profile miRNAs in CSF and blood from patients with neurological diseases.