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The frequency response function (FRF) of each sensor axis was calculated and the process repeated.
CT scans of elbows from five volunteers were used to simulate fluoroscopy; the actual rotation axis was calculated with CT-based flexion extension analysis.
The virtual concentration for each standard-gas axis was calculated by projecting the vector obtained to the axis (Figure 1b).
The normalized length of the ipsilateral patch along the O-I axis was calculated as follows: P1P2/LM×100.
The normalized length of the ipsilateral patch along the DM-VL axis was calculated as follows: Q1Q2/D'V'×100.
The average minor axis was calculated as the mean of a series of axis values taken throughout the length of each myotube.
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Instantaneous velocities on the atomization axis were calculated as a function of the atomization duration.
As a result, a vector corresponding to the relevance of the frequency axis is calculated.
The main axis is calculated as follows: Step 1: Calculate all possible D ij based on the geodesic distance transform [29], where 1≤i,j≤N.
The center of rotation and primary axis are calculated by the modeling software based on the unique design of the shape.
The actual elbow rotation axis is calculated from the CT scans with the elbow in different states of flexion, as described previously [10].
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