Scinovex
articleTop 1% cited

Elastic moduli of normal and pathological human breast tissues: an inversion-technique-based investigation of 169 samples

Physics in Medicine and Biology · 2007 · Vol. 52(6) · pp. 1565–1576
Abbas SamaniJudit ZubovitsDonald B. Plewes

Abstract

Understanding and quantifying the mechanical properties of breast tissues has been a subject of interest for the past two decades. This has been motivated in part by interest in modelling soft tissue response for surgery planning and virtual-reality-based surgical training. Interpreting elastography images for diagnostic purposes also requires a sound understanding of normal and pathological tissue mechanical properties. Reliable data on tissue elastic properties are very limited and those which are available tend to be inconsistent, in part as a result of measurement methodology. We have developed specialized techniques to measure tissue elasticity of breast normal tissues and tumour specimens and applied them to 169 fresh ex vivo breast tissue samples including fat and fibroglandular tissue as well as a range of benign and malignant breast tumour types. Results show that, under small deformation conditions, the elastic modulus of normal breast fat and fibroglandular tissues are similar while fibroadenomas were approximately twice the stiffness. Fibrocystic disease and malignant tumours exhibited a 3–6-fold increased stiffness with high-grade invasive ductal carcinoma exhibiting up to a 13-fold increase in stiffness compared to fibrogalndular tissue. A statistical analysis showed that differences between the elastic modulus of the majority of those tissues were statistically significant. Implications for the specificity advantages of elastography are reviewed.

Ultrasound Imaging and ElastographyElasticity and Material ModelingUltrasonics and Acoustic Wave PropagationElastographyStiffnessBreast tissueSoft tissueElastic modulusMedicineBiomedical engineeringPathologyMaterials scienceRadiology

Funding

  • Terry Fox Foundation
  • Canadian Institutes of Health Research
  • National Cancer Institute
Citations
695
FWCI
16.49
field-weighted impact
References
24
Percentile
100%
vs. same field & year
Citations per year
Cited by
Imaging the elastic properties of tissue: the 20 year perspective
Physics in Medicine and Biology · 2010 · 477 citations
References
Biomechanics. Mechanical Properties of Living Tissues
Journal of Applied Mechanics · 1982 · 6,060 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Elastic moduli of normal and pathological human breast tissues: an inversion-technique-based investigation of 169 samples · Scinovex