Kenneth D. Poss

Active 1995–2025

97
Papers
22,346
Citations
72
h-index
95
i10-index

Citations

Citations per year for Kenneth D. Poss1971: 5 citations1996: 2 citations1997: 9 citations1998: 19 citations1999: 77 citations2000: 114 citations2001: 118 citations2002: 117 citations2003: 164 citations2004: 160 citations2005: 158 citations2006: 169 citations2007: 175 citations2008: 164 citations2009: 158 citations2010: 165 citations2011: 201 citations2012: 238 citations2013: 248 citations2014: 257 citations2015: 263 citations2016: 244 citations2017: 246 citations2018: 223 citations2019: 719 citations2020: 832 citations2021: 917 citations2022: 661 citations2023: 420 citations2024: 584 citations2025: 315 citations2026: 7 citations1972–1995: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 2,244 citing papers, 33.6% of this breakdownChina: 687 citing papers, 10.3% of this breakdownGermany: 507 citing papers, 7.6% of this breakdownUnited Kingdom: 417 citing papers, 6.2% of this breakdownJapan: 244 citing papers, 3.6% of this breakdownItaly: 211 citing papers, 3.2% of this breakdownFrance: 192 citing papers, 2.9% of this breakdownSpain: 161 citing papers, 2.4% of this breakdownNetherlands: 158 citing papers, 2.4% of this breakdownCanada: 148 citing papers, 2.2% of this breakdownAustralia: 145 citing papers, 2.2% of this breakdownSwitzerland: 132 citing papers, 2% of this breakdown
0%33.6%Other 21.4%

Fields

  • Biochemistry, Genetics and Molecular Biology65.5%
  • Medicine22.8%
  • Neuroscience4.5%
  • Immunology and Microbiology1.6%
  • Environmental Science1.4%
  • Engineering1.1%
  • Other3.1%

Topics

  • Congenital heart defects research8.7%
  • Heme Oxygenase-1 and Carbon Monoxide5.7%
  • Zebrafish Biomedical Research Applications4.4%
  • Tissue Engineering and Regenerative Medicine3.4%
  • Developmental Biology and Gene Regulation2.8%
  • Cardiac Fibrosis and Remodeling2.3%
  • Other72.7%

Coauthors

All papers

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  1. Heart Regeneration in Zebrafish

    Authors: , , - Science 2002 cited by 1,974

  2. Single-cell analysis uncovers that metabolic reprogramming by ErbB2 signaling is essential for cardiomyocyte proliferation in the regenerating heart

    Authors: , , , , , , , , , , , , , , , , , , , , , , , - eLife 2019 cited by 285

  3. Primary contribution to zebrafish heart regeneration by gata4+ cardiomyocytes

    Authors: , , , , , , , , , - Nature 2010 cited by 1,076

  4. Gene regulatory programmes of tissue regeneration

    Authors: , - Nature Reviews Genetics 2020 cited by 210

  5. The zebrafish as a model for complex tissue regeneration

    Authors: , , , - Trends in Genetics 2013 cited by 583

  6. Control of osteoblast regeneration by a train of Erk activity waves

    Authors: , , , , , , , , , - Nature 2021 cited by 207

  7. Transgenic mice for in vivo epigenome editing with CRISPR-based systems

    Authors: , , , , , , , , , , , , , , , , , , , , , , - Nature Methods 2021 cited by 138

  8. Modulation of tissue repair by regeneration enhancer elements

    Authors: , , , , , , , , , - Nature 2016 cited by 341

  9. Cardiac regeneration strategies: Staying young at heart

    Authors: , - Science 2017 cited by 362

  10. Transplantation and in vivo imaging of multilineage engraftment in zebrafish bloodless mutants

    Authors: , , , , , - Nature Immunology 2003 cited by 854

  11. Injury-induced ctgfa directs glial bridging and spinal cord regeneration in zebrafish

    Authors: , , , , , - Science 2016 cited by 271

  12. The epicardium as a hub for heart regeneration

    Authors: , - Nature Reviews Cardiology 2018 cited by 245

  13. Fibronectin is deposited by injury-activated epicardial cells and is necessary for zebrafish heart regeneration

    Authors: , , , - Developmental Biology 2013 cited by 249

  14. Coronary Revascularization During Heart Regeneration Is Regulated by Epicardial and Endocardial Cues and Forms a Scaffold for Cardiomyocyte Repopulation

    Authors: , , , , , , , , , - Developmental Cell 2019 cited by 139

  15. Advances in understanding tissue regenerative capacity and mechanisms in animals

    Authors: - Nature Reviews Genetics 2010 cited by 432

  16. The regenerative capacity of zebrafish reverses cardiac failure caused by genetic cardiomyocyte depletion

    Authors: , , , , , , , , , , , , , - Development 2011 cited by 382

  17. Nrg1 is an injury-induced cardiomyocyte mitogen for the endogenous heart regeneration program in zebrafish

    Authors: , , , - eLife 2015 cited by 308

  18. Retinoic Acid Production by Endocardium and Epicardium Is an Injury Response Essential for Zebrafish Heart Regeneration

    Authors: , , , , , , - Developmental Cell 2011 cited by 484

  19. A Dynamic Epicardial Injury Response Supports Progenitor Cell Activity during Zebrafish Heart Regeneration

    Authors: , , , , , , - Cell 2006 cited by 846

  20. Heme oxygenase 1 is required for mammalian iron reutilization

    Authors: , - National Academy of Sciences, Proceedings of the National Academy of Sciences 1997 cited by 1,018

  21. Reduced stress defense in heme oxygenase 1-deficient cells

    Authors: , - National Academy of Sciences, Proceedings of the National Academy of Sciences 1997 cited by 1,304

  22. Nerves Regulate Cardiomyocyte Proliferation and Heart Regeneration

    Authors: , , , , , , , , , , , , , , - Developmental Cell 2015 cited by 261

  23. Epicardial regeneration is guided by cardiac outflow tract and Hedgehog signalling

    Authors: , , , - Nature 2015 cited by 219

  24. Spinal cord repair is modulated by the neurogenic factor Hb-egf under direction of a regeneration-associated enhancer

    Authors: , , , , , , , , , , , , , - Nature Communications 2023 cited by 46