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All the aforementioned experiments were done by circular polarization of laser pulses.
This was done for practical purposes, namely due to the large volume of blood required to extract a sufficient number of primary neutrophils as well as autologous plasma to perform the aforementioned experiments.
They have been created such that a location boundary does not intersect itself, and such that the locations are as small as possible: that way, the experiments could be conducted under conditions comparable to those for the aforementioned experiments (e.g., [29, 43]).
We then produced the corresponding channel matrices using the same channel impulse responses for direct and indirect paths as in h 1(n) and repeated the aforementioned experiments and found out that the performance was not different from the ones displayed in Figures 13, 14, 15, 16, 17, and 18.
The varying parameters, in this case, were the affine transform matrix coefficients, considering the form a 1 a 2 a 3 a 4. As in the aforementioned experiments, the SIFT-based version demonstrated the best results among the four versions of our method, followed by SURF-based, RST-based, and FAST-based. Figure 19 General affine transform.
In the aforementioned experiments, we isolated CD34+/− cells from pooled hindlimb, pectoralis and triceps muscles.
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The aforementioned experiment can be understood as a baseline for matching under non-ideal conditions.
During the aforementioned experiment, the success rate of DSO has been reported as 99.6% (termed "matching correctness" in [44]).
A benchmark calculation for the same sample, as used in the aforementioned experiment, was then used to adjust and evaluate the 55Fe (n, a) cross section values in TALYS-based Evaluated Nuclear Data Library (TENDL).
Moreover, for the aforementioned experiment with DSO, the following numbers of "proper non-matches" (i.e., true negative matches), and of false negative matches have been reported in [44]: n tn = 521,n fn = 122.
The aforementioned experiment results show that through the implementation of the RMD process as a two-stage process, decreasing the number of promising modes during the RDO process, and using the coding bits generated during the HEVC coding process, our proposed algorithm can improve intra-coding efficiency.
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