Nanoparticles influence pathophysiology of spinal cord injury and repair
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Elsevier
Reference131 articles.
1. F15063, a potential antipsychotic with dopamine D(2)/D(3) antagonist, 5-HT (1A) agonist and D(4) partial agonist properties: (IV) duration of brain D2-like receptor occupancy and antipsychotic-like activity versus plasma concentration in mice;Assie;Naunyn-Schmiedeberg’s Archives of Pharmacology,2007
2. New year, new cost constraints;Babb;Rehab Management,2009
3. Comparative study of lung function in Iranian factory workers exposed to silica dust;Bahrami;Eastern Mediterranean Health Journal,2003
4. An integrin inhibiting molecule decreases oxidative damage and improves neurological function after spinal cord injury;Bao;Experimental Neurology,2008
5. Setting the limits for engineered nanoparticles in European surface waters – are current approaches appropriate?;Baun;Journal of Environmental Monitoring,2009
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