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In our measurements the source is usually the master.
During the electrical transport measurements, the source electrodes were grounded.
During all electrical measurements, the source electrode was electrically grounded.
However, in a few measurements the source could not be used since the path-loss to the destination was too high.
In the case of considering noise-contaminated EEG measurements, the source localization errors ranged between 8 and 18 mm in spite of the BSCRs used in the inverse calculation.
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To obtain detailed distance dependent measurements the source-detector separation was enlarged to 34 mm and the target was translated with 2-mm increments from 5 to 25 mm away from the detector keeping the target fixed at 0° angle (Fig. 1(b)).
Then, for each scalp EEG measurement, the source reconstruction was performed to identify the estimated dipole sources by the actual BSCR and the misspecified BSCRs.
In view of the insufficient measurement, the source sparse characteristic and the oversmoothing of l2-norm regularization in BLT, linear system Eq. (4) is covert to the following l1-norm regularization problem based on the CS theory: where ‖ x ‖ 1 = ∑ i x i is the l1 norm of x.
Instead of performing measurements on the source in the free state, the source mobility is obtained from measurements made in-situ.
Ito et al. (2011) estimated a coseismic slip of roughly 80 m based on ocean-bottom deformation measurements above the source region.
In such compressive transmission system, the encoding complexity is rather low because the calculation of measurements at the source node only involves the sums and differences of a small subset of the source vector.
More suggestions(15)
size the source
axis the source
measuring the source
extent the source
tests the source
measurements the trip
measurements the inversion
measurements the veteran
measurements the pinhole
measurements the transporter
measurements the number
measurements the participant
measurements the similarity
measurements the intervention
measurements the navigation
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