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Imaging the elastic properties of tissue: the 20 year perspective

Physics in Medicine and Biology · 2010 · Vol. 56(1) · pp. R1–R29
Kevin J. ParkerMarvin M. DoyleyDeborah J. Rubens

Abstract

After 20 years of innovation in techniques that specifically image the biomechanical properties of tissue, the evolution of elastographic imaging can be viewed from its infancy, through a proliferation of approaches to the problem to incorporation on research and then clinical imaging platforms. Ultimately this activity has culminated in clinical trials and improved care for patients. This remarkable progression represents a leading example of translational research that begins with fundamentals of science and engineering and progresses to needed improvements in diagnostic and monitoring capabilities applied to major categories of disease, surgery and interventional procedures. This review summarizes the fundamental principles, the timeline of developments in major categories of elastographic imaging, and concludes with recent results from clinical trials and forward-looking issues.

Ultrasound Imaging and ElastographyElectrical and Bioimpedance TomographyPhotoacoustic and Ultrasonic ImagingTimelinePerspective (graphical)Medical physicsClinical trialTranslational researchMedicineComputer scienceMedical imagingData scienceRadiology

MeSH terms

Clinical Trials as TopicElastic TissueHumansRadiographyHistory, 20th CenturyHistory, 21st CenturyElasticity Imaging TechniquesElastic Modulus

Funding

  • National Institutes of Health
Citations
477
FWCI
22.89
field-weighted impact
References
171
Percentile
100%
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