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Diffusion MRI: a new strategy for assessment of cancer therapeutic efficacy
Thomas L Chenevert1, Charles R Meyer, Bradford A Moffat
1Department of Radiology, Center for Molecular Imaging, University of Michigan Medical School, 1500 East Medical Center Drive, Ann Arbor, MI 48109-0030, USA. tlchenev@umich.edu
Abstract:
The use of anatomical imaging in clinical oncology practice traditionally relies on comparison of patient scans acquired before and following completion of therapeutic intervention. Therapeutic success is typically determined from inspection of gross anatomical images to assess changes in tumor size. Imaging could provide significant additional insight into therapeutic impact if a specific parameter or combination of parameters could be identified which reflect tissue changes at the cellular or physiologic level. This would provide an early indicator or treatment response/outcome in an individual patient before completion of therapy. Moreover, response of a tumor to therapeutic intervention may be heterogeneous. The use of imaging could assist in delineating therapeutic-induced spatial heterogeneity within a tumor mass by providing information related to specific regions that are resistant or responsive to treatment. Largely untapped potential resides in exploratory methods such as diffusion MRI, which is a nonvolumetric intravoxel measure of tumor response based upon water molecular mobility. Alterations in water mobility reflect changes in tissue structure at the cellular level. While the clinical utility of diffusion MRI for oncologic practice is still under active investigation, this overview on the use of diffusion MRI for the evaluation of brain tumors will serve to introduce how this approach may be applied in the future for the management of patients with solid tumors.
Insights
Diffusion MRI offers early insights into cancer treatment response by measuring cellular changes. This advanced imaging technique can reveal tumor heterogeneity, guiding personalized oncology care.
Area of Science:
- Oncology
- Radiology
- Medical Imaging
Background:
- Traditional oncology imaging relies on anatomical changes post-treatment.
- Assessing tumor size from gross anatomical images is the standard for therapeutic success.
- There's a need for early indicators of treatment response at the cellular level.
Purpose of the Study:
- To explore the potential of diffusion MRI in evaluating brain tumors.
- To introduce diffusion MRI as a method for assessing early therapeutic impact in oncology.
- To highlight how diffusion MRI can reveal spatial heterogeneity in tumor response.
Main Methods:
- Diffusion MRI as an exploratory imaging method.
- Measuring water molecular mobility to assess tissue at the cellular level.
- Analyzing intravoxel incoherent motion (IVIM) parameters.
Main Results:
- Diffusion MRI alterations in water mobility reflect cellular-level tissue changes.
- Potential for early detection of treatment response before therapy completion.
- Ability to delineate spatial heterogeneity in tumor response to therapy.
Conclusions:
- Diffusion MRI shows promise for evaluating brain tumors and potentially other solid tumors.
- This technique could provide earlier and more detailed insights into treatment efficacy.
- Further investigation is needed to establish the clinical utility of diffusion MRI in routine oncologic practice.