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For each type of node i = n, o, Γi corresponds to the average rate of connectivity change between WGDs, k → kΓi.
In agreement with the manually quantified trend, we observe an increase from 59.4 to 65.6% in the rate of connectivity statements validated in BAMS (P = 0.00071, hypergeometric test).
To analyze the level of gene sharing outside inverted regions, relative to that inside the inversion regions, we consider the average rate of connectivity (as compared to expected) of outside regions: where γ i,out, γ out,j, and γ out,out denote the rates corresponding to outside the inversion regions on their respective arms.
The average rate of connectivity (as compared to expected) within the inverted regions follows as: By taking the ratio of these average rates: we obtain a measure of how under (or over) connected the regions outside the inversions are compared to those within the inverted regions.
Similar(56)
use multiple in vivo two-photon targeted whole-cell recordings to measure the rates of connectivity, amplitude, kinetics, reliability, and short-term plasticity of monosynaptic excitatory connections between layer 2 cortical pyramidal neurons.
Using these abundance data, we estimated the rates of connectivity between sites where parents and offspring were sampled.
Lastly, we present our parentage results within the context of in situ estimates of adult abundance to illustrate that the rates of connectivity between sites must be substantial.
The main results only depend on the following two combinations of evolutionary parameters, Γo = γo + γ and Γn = γn + γ, which correspond to the average rates of connectivity change between successive WGDs, k → kΓi, for each type of duplicates, i = o, n.
The connectivity kernels (J_{ij}colon overline{varOmega}timesoverline{varOmega}mapstomathbb{R}) are assumed to be isotropic and given by J_{ij}bigl x,x'bigr)=rho_{j} eta_{ij}e^{-mu_{ij}lvert x-x'rvert}, (34) where (rho_{j}) is the density of neurons of type j, (eta_{ij}) is the maximal connection strength, and (mu_{ij}) is the spatial decay rate of the connectivity.
In the last few years, the rate of digital connectivity have continuously risen, and although more than half the world's population still lacks Internet access, global connectivity increased from 6.8%to38.1%1% between 2000 and 2013, while cellular subscriptions increased from 12.1% to 92.6% (World Bank).
During the adaptation of a bacterial population to a new ecological niche, and particularly for intracellular bacteria, selective pressures are shifted and ecological niches reduced, resulting in a lower rate of genetic connectivity.
Related(18)
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