TsougosISvolosPKousiE. The contribution of diffusion tensor imaging and magnetic resonance spectroscopy for the differentiation of breast lesions at 3T. Acta Radiol2014; 55: 14–23.
2.
PartridgeSCZiadlooAMurthyR. Diffusion tensor MRI: Preliminary anisotropy measures and mapping of breast tumors. J Magn Reson Imaging2010; 31: 339–347.
3.
BaltzerPTSchäferADietzelM. Diffusion tensor magnetic resonance imaging of the breast: a pilot study. Eur Radiol2011; 21: 1–10.
4.
EyalEShapiro-FeinbergMFurman-HaranE. Parametric diffusion tensor imaging of the breast. Invest Radiol2012; 47: 284–291.
5.
TsushimaYTakahashi-TaketomiAEndoK. Magnetic resonance (MR) differential diagnosis of breast tumors using apparent diffusion coefficient (ADC) on 1.5-T. J Magn Reson Imaging2009; 30: 249–255.
6.
BrandãoACLehmanCDPartridgeSC. Breast magnetic resonance imaging: diffusion-weighted imaging. Magn Reson Imaging Clin N Am2013; 21: 321–336.
7.
NissanNFurman-HaranEFeinberg-ShapiroM. Tracking the mammary architectural features and detecting breast cancer with magnetic resonance diffusion tensor imaging. J Vis Exp2014; 94: e52048–e52048. . DOI:10.3791/52048.
8.
PartridgeSCMurthyRSZiadlooA. Diffusion tensor magnetic resonance imaging of the normal breast. Magn Reson Imaging2010; 28: 320–328.
9.
TagliaficoARescinitoGMonettiF. Diffusion tensor magnetic resonance imaging of the normal breast: reproducibility of DTI-derived fractional anisotropy and apparent diffusion coefficient at 3.0 T. Radiol Med2012; 117: 992–1003.
10.
NissanNFurman-HaranEShapiro-FeinbergM. Diffusion-tensor MR imaging of the breast: hormonal regulation. Radiology2014; 271: 672–680.
11.
WiedererJPazahrSLeoC. Quantitative breast MRI: 2D histogram analysis of diffusion tensor parameters in normal tissue. MAGMA2014; 27: 185–193.
12.
Furman-HaranEEyalEShapiro-FeinbergM. Advantages and drawbacks of breast DTI. Eur J Radiol2012; 81: S45–S47.