This paper evaluated 3-dimensional radiomics features of breast magnetic resonance imaging (MRI) as prognostic factors for predicting systemic recurrence in triple-negative breast cancer (TNBC) and validated the results with a different MRI scanner. The Rad score was generated from 3-dimensional radiomic features of MRI for 231 TNBCs (training set (GE scanner), n = 182; validation set (Philips scanner), n = 49). The Clinical and Rad models to predict systemic recurrence were built up and the models were externally validated. In the training set, the Rad score was significantly higher in the group with systemic recurrence (median, -8.430) than the group without (median, -9.873, P < 0.001). The C-index of the Rad model to predict systemic rec...
Purpose: To investigate whether pretreatment breast magnetic resonance (MR) imaging features are ass...
Purpose: Triple-negative breast cancer (TNBC) has some distinctive features. The aim of the study wa...
BACKGROUND: The signal enhancement ratio (SER) of surrounding non-tumor parenchyma at breast magneti...
In the last decade, the analysis of the medical images has evolved significantly, applications and t...
Triple Negative Breast Cancer (TNBC) is an aggressive subtype of breast cancer which lacks upregulat...
To evaluate the ability of a radiomics signature based on 3T dynamic contrast-enhanced (DCE) magneti...
Background: To investigate whether the radiomics signature (Rad-score) of DCE-MRI images obtained in...
BACKGROUND: Triple-negative breast cancer (TNBC) which expresses neither hormonal receptors nor HER-...
To investigate relationships between computer-extracted breast magnetic resonance (MR) imaging pheno...
AbstractObjectiveThis study aimed at determination of the MRI predictors of triple negative breast c...
Triple-negative breast cancer (TNBC) is sometimes mistaken for fibroadenoma due to its tendency to s...
International audienceIntroduction :To assess pre-therapeutic MRI-based radiomic analysis to predict...
Purpose: MRI-based tumor response prediction to neoadjuvant systemic therapy (NST) in breast cancer ...
Purpose To investigate relationships between computer-extracted breast magnetic resonance (MR) imagi...
Objective: Triple-negative breast cancer (TNBC) is a highly proliferative breast cancer subtype. We ...
Purpose: To investigate whether pretreatment breast magnetic resonance (MR) imaging features are ass...
Purpose: Triple-negative breast cancer (TNBC) has some distinctive features. The aim of the study wa...
BACKGROUND: The signal enhancement ratio (SER) of surrounding non-tumor parenchyma at breast magneti...
In the last decade, the analysis of the medical images has evolved significantly, applications and t...
Triple Negative Breast Cancer (TNBC) is an aggressive subtype of breast cancer which lacks upregulat...
To evaluate the ability of a radiomics signature based on 3T dynamic contrast-enhanced (DCE) magneti...
Background: To investigate whether the radiomics signature (Rad-score) of DCE-MRI images obtained in...
BACKGROUND: Triple-negative breast cancer (TNBC) which expresses neither hormonal receptors nor HER-...
To investigate relationships between computer-extracted breast magnetic resonance (MR) imaging pheno...
AbstractObjectiveThis study aimed at determination of the MRI predictors of triple negative breast c...
Triple-negative breast cancer (TNBC) is sometimes mistaken for fibroadenoma due to its tendency to s...
International audienceIntroduction :To assess pre-therapeutic MRI-based radiomic analysis to predict...
Purpose: MRI-based tumor response prediction to neoadjuvant systemic therapy (NST) in breast cancer ...
Purpose To investigate relationships between computer-extracted breast magnetic resonance (MR) imagi...
Objective: Triple-negative breast cancer (TNBC) is a highly proliferative breast cancer subtype. We ...
Purpose: To investigate whether pretreatment breast magnetic resonance (MR) imaging features are ass...
Purpose: Triple-negative breast cancer (TNBC) has some distinctive features. The aim of the study wa...
BACKGROUND: The signal enhancement ratio (SER) of surrounding non-tumor parenchyma at breast magneti...