Eero Ċastrén

Active 1988–2025

Also published as
Eero Castrén
104
Papers
19,539
Citations
76
h-index
100
i10-index

Citations

Citations per year for Eero Ċastrén1971: 1 citations1985: 6 citations1988: 1 citations1989: 1 citations1990: 6 citations1991: 8 citations1992: 11 citations1993: 53 citations1994: 73 citations1995: 110 citations1996: 105 citations1997: 108 citations1998: 121 citations1999: 147 citations2000: 122 citations2001: 101 citations2002: 87 citations2003: 109 citations2004: 153 citations2005: 126 citations2006: 178 citations2007: 199 citations2008: 209 citations2009: 208 citations2010: 230 citations2011: 241 citations2012: 239 citations2013: 235 citations2014: 250 citations2015: 176 citations2016: 174 citations2017: 198 citations2018: 147 citations2019: 512 citations2020: 475 citations2021: 524 citations2022: 397 citations2023: 330 citations2024: 575 citations2025: 283 citations2026: 20 citations1972–1984: no citations, so these years are not shown1986–1987: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 2,003 citing papers, 26.7% of this breakdownChina: 678 citing papers, 9% of this breakdownGermany: 476 citing papers, 6.4% of this breakdownUnited Kingdom: 384 citing papers, 5.1% of this breakdownItaly: 382 citing papers, 5.1% of this breakdownCanada: 312 citing papers, 4.2% of this breakdownJapan: 293 citing papers, 3.9% of this breakdownFrance: 266 citing papers, 3.5% of this breakdownSpain: 199 citing papers, 2.7% of this breakdownFinland: 178 citing papers, 2.4% of this breakdownBrazil: 176 citing papers, 2.3% of this breakdownAustralia: 173 citing papers, 2.3% of this breakdown
0%26.7%Other 26.4%

Fields

  • Neuroscience51.8%
  • Medicine19%
  • Biochemistry, Genetics and Molecular Biology17.5%
  • Psychology5.8%
  • Computer Science2.5%
  • Environmental Science0.6%
  • Other2.8%

Topics

  • Nerve injury and regeneration7.9%
  • Neurogenesis and neuroplasticity mechanisms7.6%
  • Neuroscience and Neuropharmacology Research6.5%
  • Tryptophan and brain disorders5.4%
  • Stress Responses and Cortisol4.8%
  • Neuroinflammation and Neurodegeneration Mechanisms2.5%
  • Other65.3%

Coauthors

All papers

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  1. Psychedelics promote plasticity by directly binding to BDNF receptor TrkB

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Ilpo Vattulainen, Plínio Casarotto, Eero Ċastrén - Nature Neuroscience 2023 cited by 432

  2. Brain-Derived Neurotrophic Factor Signaling in Depression and Antidepressant Action

    Authors: , - Biological Psychiatry 2021 cited by 522

  3. Serotonin and neuroplasticity – Links between molecular, functional and structural pathophysiology in depression

    Authors: , , , - Neuroscience & Biobehavioral Reviews 2017 cited by 445

  4. Neuronal plasticity and neurotrophic factors in drug responses

    Authors: , - Molecular Psychiatry 2017 cited by 282

  5. The role of BDNF and its receptors in depression and antidepressant drug action: Reactivation of developmental plasticity

    Authors: , - Developmental Neurobiology 2010 cited by 856

  6. The Antidepressant Fluoxetine Restores Plasticity in the Adult Visual Cortex

    Authors: , , , , , , , - Science 2008 cited by 915

  7. Beyond the 5-HT2AReceptor: Classic and Nonclassic Targets in Psychedelic Drug Action

    Authors: , , , , , , , , , - Journal of Neuroscience 2023 cited by 85

  8. Psychedelics and Neural Plasticity: Therapeutic Implications

    Authors: , , , , , , , - Journal of Neuroscience 2022 cited by 83

  9. Is mood chemistry?

    Authors: - Nature reviews. Neuroscience 2005 cited by 561

  10. Activation of the TrkB Neurotrophin Receptor Is Induced by Antidepressant Drugs and Is Required for Antidepressant-Induced Behavioral Effects

    Authors: , , , , , , , , , , , - Journal of Neuroscience 2003 cited by 796

  11. Role of neurotrophic factors in depression

    Authors: , , - Current Opinion in Pharmacology 2006 cited by 667

  12. Brain-derived neurotrophic factor in mood disorders and antidepressant treatments

    Authors: , - Neurobiology of Disease 2016 cited by 340

  13. Neuronal plasticity and antidepressant actions

    Authors: , - Trends in Neurosciences 2013 cited by 239

  14. Brain-Derived Neurotrophic Factor and Antidepressant Drugs Have Different But Coordinated Effects on Neuronal Turnover, Proliferation, and Survival in the Adult Dentate Gyrus

    Authors: , , , , - Journal of Neuroscience 2005 cited by 754

  15. Pharmacologically Diverse Antidepressants Rapidly Activate Brain-Derived Neurotrophic Factor Receptor TrkB and Induce Phospholipase-Cγ Signaling Pathways in Mouse Brain

    Authors: , , , , , , , , - Neuropsychopharmacology 2007 cited by 306

  16. Neuronal Network Plasticity and Recovery From Depression

    Authors: - JAMA Psychiatry 2013 cited by 191

  17. Trustworthiness and metrics in visualizing similarity of gene expression

    Authors: , , , , , - BMC Bioinformatics, BMC Bioinform. 2003 cited by 151

  18. Fear Erasure in Mice Requires Synergy Between Antidepressant Drugs and Extinction Training

    Authors: , , , , , , , , , , , , - Science 2011 cited by 393

  19. TrkB transmembrane domain: bridging structural understanding with therapeutic strategy

    Authors: , , , , - Trends in Biochemical Sciences 2024 cited by 41

  20. Dysregulation of TrkB Receptors and BDNF Function by Amyloid-β Peptide is Mediated by Calpain

    Authors: , , , , , , , , , , - Cerebral Cortex 2014 cited by 109

  21. Pharmacological and optical activation of TrkB in Parvalbumin interneurons regulate intrinsic states to orchestrate cortical plasticity

    Authors: , , , , , , , , , , , , , , , - Molecular Psychiatry 2021 cited by 50

  22. BDNF receptor TrkB as the mediator of the antidepressant drug action

    Authors: , , - Frontiers in Molecular Neuroscience 2022 cited by 48

  23. Culturing primary neurons from rat hippocampus and cortex

    Authors: , , , , - Neuronal Signaling 2019 cited by 113

  24. Ketamine and its metabolite 2 R ,6 R ‐hydroxynorketamine promote ocular dominance plasticity and release tropomyosin‐related kinase B from inhibitory control without reducing perineuronal nets enwrapping parvalbumin interneurons

    Authors: , , , - European Journal of Neuroscience 2023 cited by 24