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Imaging oxygenation of human tumours

European Radiology · 2006 · Vol. 17(4) · pp. 861–872
Anwar R. PadhaniKenneth A. KrohnJason S. LewisM. Alber

Abstract

Tumour hypoxia represents a significant challenge to the curability of human tumours leading to treatment resistance and enhanced tumour progression. Tumour hypoxia can be detected by non-invasive and invasive techniques but the inter-relationships between these remains largely undefined. (18)F-MISO and Cu-ATSM-PET, and BOLD-MRI are the lead contenders for human application based on their non-invasive nature, ease of use and robustness, measurement of hypoxia status, validity, ability to demonstrate heterogeneity and general availability, these techniques are the primary focus of this review. We discuss where developments are required for hypoxia imaging to become clinically useful and explore potential new uses for hypoxia imaging techniques including biological conformal radiotherapy.

Cancer, Hypoxia, and MetabolismAdvanced MRI Techniques and ApplicationsMedical Imaging Techniques and ApplicationsHypoxia (environmental)MedicineNeuroradiologyInterventional radiologyRadiologyPathologyNeurologyOxygen

MeSH terms

HumansMagnetic Resonance ImagingNeoplasmsOxygenCell HypoxiaRadiotherapy, ConformalPositron-Emission Tomography

Funding

  • U.S. Department of Energy
  • National Institutes of Health
Citations
319
FWCI
8.05
field-weighted impact
References
54
Percentile
98%
vs. same field & year
Citations per year
References
Tumor Hypoxia: Definitions and Current Clinical, Biologic, and Molecular Aspects
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Annals of Internal Medicine · 1974 · 3,501 citations
Towards multidimensional radiotherapy (MD-CRT): biological imaging and biological conformality
International Journal of Radiation Oncology*Biology*Physics · 2000 · 928 citations
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