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The course focuses on studies of a broad range of biophysical phenomena including diffusion, polymer statistics, protein folding, macromolecular crowding, cell motion, and tissue development using computational tools and methods.
The quantitative method described to determine target displacement cannot discriminate between patient motion, prostate motion and tissue deformation.
Different factors, such as needle-guide positioning, patient and prostate motion, and tissue deformation influence the accuracy of needle positioning [ 6– 8].
This study introduces variables to describe tissue motion and tissue deformation based on ultrasound-generated images (GE-medical Vivid 7, equipped with Tissue velocity imaging (TVI)).
However, such movement may not be fully avoided due to changes in patient position, internal organ motion, and tissue swelling/edema.
Water diffusion is basically restricted by interactions with cell membranes and macromolecules, and there is an inverse correlation between the degree of water motion and tissue cellularity and cell membrane integrity [ 70].
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Advancements in imaging technologies, genetic recombination techniques, laser ablation, and microfabricated tissue models have enabled quantitative descriptions of the cellular motions and tissue deformations and stresses with unprecedented temporal and spatial resolution.
From Figs. 7 and 6, we can see that the textural features improve the quality of interpolated frame with less motion artifacts and tissue surface blur.
The only significant correlation observed was between range of motion (ROM) and tissue calcification/bone volume (BV) (Table 1) [ 13].
It is challenging to image the human esophagus in vivo with balloon-based SECM, however, because patient motion and anatomic tissue surface irregularities decenter the optics, making it difficult to keep the focus at a predetermined location within the tissue as the beam is scanned.
Ideally, content validity studies attempt to compare a test with a reference standard of the same phenomenon as that which is being palpated, i.e., palpable abnormalities in structure, motion and soft tissue.
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