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IEE-L developed the methods, reconstructed the two genome-scale metabolic models, performed the simulations and drafted the manuscript.
Given the very tight biological coherence of the Wnt cluster identified by the L method and according to the principle of "guilt by association," it is likely that other gene members of the cluster also belong to the Wnt pathway.
Moreover, similar to the standard l q method, the mixed l 2/l q method performs better and better as q decreases.
In contrast, the Method L estimated the disequilibrium parameters (D L ) adequately in all seven simulated situations.
Most of the Wnt cyclic gene candidates predicted by the L method are also predicted by at least one of the other methods.
As a second alternative, the l - method, we search the l-space and when a supposed l-optimum is found, we factorize the lengths into rates and times.
The program for determining the best fit between the elliptic equation to the image of the drop involved the use of two methods: the L-M Method and the L-Q Method.
Furthermore, we will compare the sparse signal recovery ability of the non-convex l 2/l q (0 < q < 1) method to <span class="lh">the convex l 2/l 1 method and the standard l q method by conducting a series of simulation studies.
In Section 7, we show that the non-convex l 2/l q (0 < q < 1) method has stronger block-sparsity promoting ability than <span class="lh">the convex l 2/l 1 method and the standard l q method through a series of simulations.
Here, our analysis is focused on Hill's method (H) and the method (L) developed in the present study.
The purpose of experiments was to compare the recovery performance of the mixed l 2/l q method and the l q method for block-sparse signals without noise and with noise respectively.
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