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Y i, S, and N i correspond to the short time spectra of the time domain signals.
Thus, the entries of eigenvector u i correspond to the coefficients of an FIR filter which is namely the analysis filter.
(a)–(e) correspond to the 2010 event, (f)–(i) correspond to the 2003 event, and (j)–(m) correspond to the 1997 event.
I is the number of particles and w t ( i ) and x t ( i ) correspond to the weight and state variables of the i th particle, respectively.
where μ i are fixed parameters according to the application and σ i and B i correspond to the given degree of freedom.
where α 〈001〉=0.15 is set as reference and the various γ i correspond to the surface energy values of the aforementioned orientations as reported in Ref. [45].
From Equations (10 1313), and (14), we learn that the entries of eigenvector u i correspond to the coefficients of the SSA FIR filter we proposed.
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Panels a-d correspond to nNOS immunofluorescence staining, panels f-i correspond to c-Fos immunofluorescence staining.
Entries in every row of T sum to 1; rows with a single nonzero entry T i,i correspond to steady state attractors.
The variables λrest,i, λmax,i, and λmax,i correspond to the length of the i thmuscle group at rest, its maximum length and maximum rate of length change, respectively.
where y k (t i−1),y k (t i ) (resp. y k (t m ), for m≠{i−1,i}) correspond to the observations affected (resp. unaffected) by the presence of an hypothesized target in the i-th delay bin.
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