Imaging techniques to evaluate the response to treatment in oncology: current standards and perspectives
C D Marcus1, V Ladam-Marcus, C Cucu
1Department of Radiology, Robert-Debre Hospital, University of Reims, France. cmarcus@chu-reims.f
Abstract:
Response evaluation in solid tumours currently uses radiological imaging techniques to measure changes under treatment. Imaging requires a well-defined anatomical lesion to be viewed and relies on the measurement of a reduction in tumour size during treatment as the basis for presumed clinical benefit. However, with the development of anti-angiogenesis agents, anatomical imaging has became inappropriate as certain tumours would not reduce in size. Functional studies are therefore necessary and dynamic contrast enhanced magnetic resonance imaging (DCE-MRI), DCE-computed tomography (CT) and DCE-ultrasonography (US) are currently being evaluated for monitoring treatments. Diffusion-weighted MR imaging (DW-MRI) and magnetic resonance spectroscopy (MRS) are also capable of detecting changes in cell density and metabolite content within tumours. In this article, we review anatomical and functional criteria currently used for monitoring therapy. We review the published data on DCE-MRI, DCE-CT, DCE-US, DW-MRI and MRS. This literature review covers the following area: basic principles of the technique, clinical studies, reproducibility and repeatability, limits and perspectives in monitoring therapy. Anatomical criteria such as response evaluation criteria in solid tumours (RECIST) will require adaptation to employ not only new tools but also different complementary techniques such as functional imaging in order to monitor therapeutic effects of conventional and new anti-cancer agents.
Insights
Traditional tumor imaging is insufficient for new anti-cancer agents. Functional imaging techniques like dynamic contrast-enhanced MRI (DCE-MRI) and diffusion-weighted MRI (DW-MRI) offer better monitoring of treatment response in solid tumors.
Area of Science:
- Oncology
- Radiology
- Medical Imaging
Background:
- Current response evaluation in solid tumors relies on anatomical imaging to measure tumor size reduction.
- This approach is becoming inadequate with novel anti-angiogenesis agents that may not shrink tumors.
- Functional imaging is increasingly necessary to accurately monitor treatment efficacy.
Purpose of the Study:
- To review anatomical and functional imaging criteria for monitoring cancer therapy.
- To evaluate published data on dynamic contrast-enhanced MRI (DCE-MRI), DCE-CT, DCE-ultrasonography (DCE-US), diffusion-weighted MRI (DW-MRI), and magnetic resonance spectroscopy (MRS).
Main Methods:
- Literature review of anatomical and functional imaging techniques.
- Analysis of basic principles, clinical studies, reproducibility, limits, and perspectives of reviewed methods.
Main Results:
- Anatomical criteria (e.g., RECIST) need adaptation for new therapeutic agents.
- Functional imaging techniques (DCE-MRI, DCE-CT, DCE-US, DW-MRI, MRS) show promise in monitoring treatment effects.
- These advanced methods can detect changes in tumor vascularity, cell density, and metabolite content.
Conclusions:
- Functional imaging is essential for monitoring the therapeutic effects of conventional and novel anti-cancer agents.
- Existing anatomical criteria require modification to incorporate functional imaging techniques.
- A combination of anatomical and functional imaging will improve response evaluation in solid tumors.
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