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Another important factor in DWI is the maximum b-value.
In this paper, we propose a novel framework to automatically segment stroke lesions in DWI.
Using a cross-sectional design, this study tested three hypotheses related to the utility of biomarkers in DWI assessment.
In DWI, MRI is used to assess the Brownian motions of water molecules within a certain tissue of interest.
No signal alteration was seen in DWI images while ADC maps showed high signal indicating vasogenic edema (Fig. 1b, c).
Besides the qualitative assessment of signal intensity in DWI, images can be assessed quantitatively by the measurement of ADC values.
In DWI, (D) MRI displays an obvious hyperintense signal, whereas in the hepatobiliary phase (E), it shows a homogenous hypointense signal.
In DWI, tissue contrast is obtained through differences in free water motion between various tissue types and between normal and pathological tissues.
A fat saturation might be added to T1w and/or T2w scans according to personal preferences and is mandatory in DWI.
However, drawing VOI for ADC evaluation was another problem due to the lack of anatomical information caused by the suppressed signal in many normal tissues in DWI [11].
No signal alteration was seen in DWI images (b) in presence of high signal on ADC maps indicating vasogenic edema (c).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com