Exact(4)
c A conspicuous region.
Fig. 6 The entire process of the proposed method Fig. 7 An example of conspicuous region.
To establish a consistent cause for a virulence shift in FCoV, specifically the predominant serotype I FCoV, we sequenced the entire genome of several FECV and FIPV specimens and then concentrated on the most conspicuous region of consistent difference by collecting and sequencing additional FECV and FIPV samples.
Therefore in the first step, we calculate the second differentiation for each selected region as Eq. 2. Step 2 Conspicuous region filtering: there is a hidden periodic property in the second-order differentiation signal calculated in Step 1.
Similar(56)
d A map filtered by CRF process Fig. 8 The flowchart of the CRF process Fig. 9 The examples of conspicuous region-filtered images.
Finally, the values in the differentiation map over the threshold value are set into 0. Figure 8 shows the flow of the CRF. Figure 9 shows some examples of conspicuous region-filtered images.
Figure (a), (c), (e), and (g) shows original images and Fig. (b), (d), (f), and (h) shows the corresponding conspicuous region-filtered images Fig. 10 Two pairs of testing image.
Figure 7 c shows an example of the conspicuous regions.
Since the almost conspicuous regions are not from the periodic pattern but from the edge components in the images, the conspicuous regions disturb the detecting process.
Because the conspicuous regions have high energy irrespective of the periodicity, conspicuous regions in the second-order differential signal may lower the performance of resampling detector.
The conspicuous regions are the regions which have high energy in the second-order differentiation.
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