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A reference region was manually defined on the cerebellar cortex of coregistered magnetic resonance images.
As a standard method, parametric images of binding potential (( {BP}_{mathsf{ND}}^{ast } )) were initially generated using reference tissue manually defined on the cerebellar cortex.
Individual ROIs were manually defined on colour-coded maps of the main diffusion direction without thresholding.
Regions of interest for analyses were manually defined on three consecutive MRI slices of each pancreas.
Bone-implant contact was manually defined on overview images of Giemsa-Eosin stained sections using histomorphometric software (Axiovision 4.8, Zeiss).
The region of interest (ROI), limited to the hemidorsal region ipsilateral to the electrical stimulations, was manually defined on each slice using geometry-based information.
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Five VOIs on different slices were manually defined for each vertebral body.
Regions of interest were manually defined for 91 ROIs within Newton by drawing boxes overlaid on the spectra (see graphical view in Figure 1A-C).
The 3D isocontour regions of interest (ROIs) were manually defined for the skeletal muscle of the left ventricle (LV), forelegs, liver, and tumor in each mouse on the last 15-min images (about 60 min post 18 F-FDG injection).
Regions of interest were manually defined for each tumour compartment.
From each data set, a region of interest that included only the dendritic spine region was manually defined based on the green-fluorescence signal.
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Justyna Jupowicz-Kozak
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