Mark W. Dewhirst

Active 1984–2025

196
Papers
48,668
Citations
120
h-index
194
i10-index

Citations

Citations per year for Mark W. Dewhirst1984: 3 citations1986: 2 citations1987: 2 citations1988: 4 citations1989: 2 citations1990: 6 citations1991: 2 citations1992: 7 citations1993: 18 citations1994: 24 citations1995: 27 citations1996: 46 citations1997: 38 citations1998: 122 citations1999: 140 citations2000: 202 citations2001: 252 citations2002: 240 citations2003: 267 citations2004: 346 citations2005: 312 citations2006: 394 citations2007: 500 citations2008: 599 citations2009: 621 citations2010: 675 citations2011: 629 citations2012: 626 citations2013: 652 citations2014: 552 citations2015: 544 citations2016: 593 citations2017: 529 citations2018: 481 citations2019: 1,355 citations2020: 1,471 citations2021: 1,331 citations2022: 1,003 citations2023: 649 citations2024: 861 citations2025: 443 citations2026: 19 citations1985: no citations, so this year is not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 5,463 citing papers, 30.7% of this breakdownChina: 2,175 citing papers, 12.2% of this breakdownUnited Kingdom: 1,097 citing papers, 6.1% of this breakdownGermany: 974 citing papers, 5.5% of this breakdownCanada: 723 citing papers, 4% of this breakdownItaly: 706 citing papers, 4% of this breakdownNetherlands: 510 citing papers, 2.9% of this breakdownJapan: 493 citing papers, 2.8% of this breakdownFrance: 485 citing papers, 2.7% of this breakdownSouth Korea: 378 citing papers, 2.1% of this breakdownIndia: 371 citing papers, 2.1% of this breakdownAustralia: 347 citing papers, 1.9% of this breakdown
0%30.7%Other 23%

Fields

  • Biochemistry, Genetics and Molecular Biology41.7%
  • Medicine33.3%
  • Engineering9.5%
  • Materials Science7.7%
  • Immunology and Microbiology2.8%
  • Neuroscience1.4%
  • Other3.6%

Topics

  • Cancer, Hypoxia, and Metabolism8.2%
  • Cancer Cells and Metastasis3.7%
  • Nanoplatforms for cancer theranostics3.4%
  • Nanoparticle-Based Drug Delivery3%
  • Glioma Diagnosis and Treatment2.7%
  • Angiogenesis and VEGF in Cancer2.5%
  • Other76.5%

Coauthors

All papers

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  1. Glioma stem cells promote radioresistance by preferential activation of the DNA damage response

    Authors: , , , , , , , , - Nature 2006 cited by 6,427

  2. Targeting lactate-fueled respiration selectively kills hypoxic tumor cells in mice

    Authors: , , , , , , , , , , , , , , - Journal of Clinical Investigation 2008 cited by 1,611

  3. Transport of drugs from blood vessels to tumour tissue

    Authors: , - Nature reviews. Cancer 2017 cited by 734

  4. Thresholds for thermal damage to normal tissues: An update

    Authors: , , , , , , - International Journal of Hyperthermia 2011 cited by 727

  5. Basic principles of thermal dosimetry and thermal thresholds for tissue damage from hyperthermia

    Authors: , , , , - International Journal of Hyperthermia 2003 cited by 992

  6. Elevated tumor lactate concentrations predict for an increased risk of metastases in head-and-neck cancer

    Authors: , , , , , , - International Journal of Radiation Oncology*Biology*Physics 2001 cited by 578

  7. Targeting the Lactate Transporter MCT1 in Endothelial Cells Inhibits Lactate-Induced HIF-1 Activation and Tumor Angiogenesis

    Authors: , , , , , , , , , , , , , , - PLoS ONE 2012 cited by 530

  8. Cycling hypoxia and free radicals regulate angiogenesis and radiotherapy response

    Authors: , , - Nature reviews. Cancer 2008 cited by 1,012

  9. Radiation activates HIF-1 to regulate vascular radiosensitivity in tumors

    Authors: , , , - Cancer Cell 2004 cited by 978

  10. Modulation of Murine Breast Tumor Vascularity, Hypoxia, and Chemotherapeutic Response by Exercise

    Authors: , , , , , , , , - JNCI Journal of the National Cancer Institute 2015 cited by 307

  11. Tumor Vascular Permeability, Accumulation, and Penetration of Macromolecular Drug Carriers

    Authors: , , , , , - JNCI Journal of the National Cancer Institute 2006 cited by 923

  12. A dual-emissive-materials design concept enables tumour hypoxia imaging

    Authors: , , , - Nature Materials 2009 cited by 1,144

  13. Overcoming Limitations in Nanoparticle Drug Delivery: Triggered, Intravascular Release to Improve Drug Penetration into Tumors

    Authors: , , , , , , , , , , , , , - Cancer Research 2012 cited by 455

  14. CEM43°C thermal dose thresholds: a potential guide for magnetic resonance radiofrequency exposure levels?

    Authors: , , , , , - European Radiology 2013 cited by 330

  15. IL-6 trans-signaling licenses mouse and human tumor microvascular gateways for trafficking of cytotoxic T cells

    Authors: , , , , , , , , , , , , , , , - Journal of Clinical Investigation 2011 cited by 227

  16. Temperature Matters! And Why It Should Matter to Tumor Immunologists

    Authors: , , - Cancer Immunology Research 2013 cited by 243

  17. Efficacy and Mechanisms of Aerobic Exercise on Cancer Initiation, Progression, and Metastasis: A Critical Systematic Review of In Vivo Preclinical Data

    Authors: , , , , - Cancer Research 2016 cited by 209

  18. ERRα-Regulated Lactate Metabolism Contributes to Resistance to Targeted Therapies in Breast Cancer

    Authors: , , , , , , , , , , , , - Cell Reports 2016 cited by 141

  19. Tumor Metabolism of Lactate: The Influence and Therapeutic Potential for MCT and CD147 Regulation

    Authors: , - Future Oncology 2009 cited by 277

  20. Randomized Trial of Hyperthermia and Radiation for Superficial Tumors

    Authors: , , , , , , , - Journal of Clinical Oncology 2005 cited by 562

  21. Catabolism of Exogenous Lactate Reveals It as a Legitimate Metabolic Substrate in Breast Cancer

    Authors: , , , , , , , , , , - PLoS ONE 2013 cited by 187

  22. Green's Function Methods for Analysis of Oxygen Delivery to Tissue by Microvascular Networks

    Authors: , , , - Annals of Biomedical Engineering 2004 cited by 247

  23. Exercise as Adjunct Therapy in Cancer

    Authors: , , , - Seminars in Radiation Oncology 2018 cited by 140

  24. Cyclic Hypoxia: An Update on Its Characteristics, Methods to Measure It and Biological Implications in Cancer

    Authors: , , - Cancers 2020 cited by 122