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Diffusion tensor magnetic resonance imaging of the normal breast
Authors:Savannah C Partridge  Revathi S Murthy  Ali Ziadloo  Steven W White  Kimberly H Allison  Constance D Lehman
Institution:1. Department of Radiology, University of Washington, Seattle, WA 98195, USA;2. Department of Bioengineering, University of Washington, Seattle, WA 98195, USA;3. Department of Computer Science, University of Washington, Seattle, WA 98195, USA;4. Department of Pathology, University of Washington, Seattle, WA 98195, USA
Abstract:

Purpose

The objective of this study was to evaluate diffusion anisotropy of the breast parenchyma and assess the range and repeatability of diffusion tensor imaging (DTI) parameters in normal breast tissue.

Materials and Methods

The study was approved by our institutional review board and included 12 healthy females (median age, 36 years). Diffusion tensor imaging was performed at 1.5 T using a diffusion-weighted echo planar imaging sequence. Diffusion tensor imaging parameters including tensor eigenvalues (λ1, λ2, λ3), fractional anisotropy (FA) and apparent diffusion coefficient (ADC) were measured for anterior, central and posterior breast regions.

Results

Mean normal breast DTI measures were λ1=2.51×10−3 mm2/s, λ2=1.89×10−3 mm2/s, λ3=1.39×10−3 mm2/s, ADC=1.95±0.24×10−3 mm2/s and FA=0.29±0.05 for b=600 s/mm2. Significant regional differences were observed for both FA and ADC (P<.05), with higher ADC in the central breast and higher FA in the posterior breast. Comparison of DTI values calculated using b=0, 600 s/mm2 vs. b=0, 1000 s/mm2, showed significant differences in ADC (P<.001), but not FA. Repeatability assessment produced within-subject coefficient of variations of 4.5% for ADC and 11.4% for FA measures.

Conclusion

This study demonstrates anisotropy of water diffusion in normal breast tissue and establishes a normative range of breast FA values. Attention to the influence of breast region and b value on breast DTI measurements may be important for clinical interpretation and standardization of techniques.
Keywords:Diffusion tensor imaging (DTI)  Normal breast  Fractional anisotropy (FA)  Apparent diffusion coefficient (ADC)  Repeatability
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