Figure S1. Comparison of tumor volume, ADC and rCBV in different magnetic fields. Tumor volume and rCBV were not different in 1.5 T or 3 T and that for all patient groups (blue and red, respectively). ADC value within enhancing lesion was significantly lower at 1.5 T (1.062μm2/ms) compared to 3 T (1.163μm2, p < 0.05) within ‘other’ group. No other valuable difference was found with standard MRI metrics. (TIF 174 kb
PURPOSE: The purpose of this study was to estimate the diagnostic accuracy of relative cerebral bloo...
The results of the intraobserver variability. Table S1 Intraobserver variability for pathologist A -...
Table S2. Spearman’s rho test. Correlation between the three dose parameters in the respective three...
Figure S2. Comparison of arterial, venous or overlap components proportional to enhancing tumor volu...
Table S1. Histopathology of primary lesion for âOtherâ cohort. Primary lesion site and number of...
PURPOSE:To identify clinically relevant magnetic resonance imaging (MRI) features of different types...
Appendix 1. Methodological comparison of IPD meta-analysis and previous study-level analysis of agre...
Figure S1. Cross table for calculation of sensitivity, specificity, PPV, NPV and accuracy. Figure S2...
Figure S1. Representative images for response evaluation in brain metastasis. An intracranial respon...
Dataset supporting conclusions. The minimal dataset necessary to replicate the findings reported in ...
Purpose: To compare parametric maps, measured values and value distributions of cerebral blood volu...
Details MR sequences. Details blood sample measurements. Table S1. Patient details. Figure S1. Trans...
Purpose: Plasma volume and blood volume are imaging-derived parameters that are often used to evalua...
Table S1. Mean and SD values of DCE parameters (Ktrans, kep). Table S2. Paired sample ttest of the m...
Figure S2. Dmono plotted against other diffusion coefficients MD (A), Dbi (B) and Dmono (C) for each...
PURPOSE: The purpose of this study was to estimate the diagnostic accuracy of relative cerebral bloo...
The results of the intraobserver variability. Table S1 Intraobserver variability for pathologist A -...
Table S2. Spearman’s rho test. Correlation between the three dose parameters in the respective three...
Figure S2. Comparison of arterial, venous or overlap components proportional to enhancing tumor volu...
Table S1. Histopathology of primary lesion for âOtherâ cohort. Primary lesion site and number of...
PURPOSE:To identify clinically relevant magnetic resonance imaging (MRI) features of different types...
Appendix 1. Methodological comparison of IPD meta-analysis and previous study-level analysis of agre...
Figure S1. Cross table for calculation of sensitivity, specificity, PPV, NPV and accuracy. Figure S2...
Figure S1. Representative images for response evaluation in brain metastasis. An intracranial respon...
Dataset supporting conclusions. The minimal dataset necessary to replicate the findings reported in ...
Purpose: To compare parametric maps, measured values and value distributions of cerebral blood volu...
Details MR sequences. Details blood sample measurements. Table S1. Patient details. Figure S1. Trans...
Purpose: Plasma volume and blood volume are imaging-derived parameters that are often used to evalua...
Table S1. Mean and SD values of DCE parameters (Ktrans, kep). Table S2. Paired sample ttest of the m...
Figure S2. Dmono plotted against other diffusion coefficients MD (A), Dbi (B) and Dmono (C) for each...
PURPOSE: The purpose of this study was to estimate the diagnostic accuracy of relative cerebral bloo...
The results of the intraobserver variability. Table S1 Intraobserver variability for pathologist A -...
Table S2. Spearman’s rho test. Correlation between the three dose parameters in the respective three...