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A computer program was designed for the planimetric measurement of the condensed chromatin surface (CCs)/ total nuclear surface TNs) and the nucleolus organiser regions surface (NORss) /TNs proportions in interphase nuclei.
Some SOMs grow slowly or seemingly not at all when assessed by planimetric measurement.
Our results were less promising than a recent report from Chenot et al. [ 7] that demonstrated the feasibility of planimetric measurement of the orifice area of biological prostheses.
Delgado and Bax suggested that 3D planimetric measurement of the AVA by MDCT images may provide more reliable information on the assessment of AVA in comparison with echocardiography [ 27].
However, planimetric measurement of AVA is currently performed manually by the radiologist using standard 3D visualization and measurement software, which is time consuming and introduces user dependence and intra- and interobserver variability [ 28].
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We compared planimetric measurements of lesion area obtained by each method.
Brain structure volumes were derived from planimetric measurements of serially-sectioned brains [36], [37] using AxioVision software (Zeiss).
Planimetric measurements of lesion area correlated well with those made from histological sections subsequently produced from the same vessels (wire-injury: R2 = 0.92; ligation-injury: R2 = 0.89; atherosclerosis: R2 = 0.85), confirming both the accuracy of this methodology and its non-destructive nature.
Using planimetric measurements to quantify this observation, we found that MB calyx volume (dendritic elements; figure 1B) and pedunculus cross section area (axonal elements; figure 1C) were both reduced by approximately 30% in HS flies relative to controls (CT) reared at a constant 23°C.
The curves were calculated with parameters that could be obtained through microscopic planimetric measurements.
Previous research already showed that echocardiography underestimates that the AVA and CT planimetric measurements are closer to the real AVA.
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