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Using these models, we show that SRVF requires significantly lesser energy for reliable transmission than Simple Positive-ACK and PLO protocols.
After giving the general idea of free deconvolution for known models, we show how the moments method works in the case where scalar random variables are considered.
For these three models, we show that best fits are obtained from a fractional-order model with fractional orders in the range 1.5 to 2.5.
Using mathematical models, we show how the self-reinforcing feedback, together with physical template, controls the ecotones between halophytic and freshwater communities.
Using sand/silicon analogue models, we show how pre-existing discontinuities can control the geometry and evolution of a younger fault network.
Using correlative bioclimatic models, we show that under future climate conditions, L. camara's range in South Africa could expand considerably over the coming decades.
Using in vitro and the well-validated yeast cell models, we show that nicotine also exerts a beneficial effect on aggregation of α-synuclein.
Using genetically engineered mouse models, we show that heterozygous mutation of Dpc4/Smad4 attenuates the metastatic potential of KrasG12D/+ Trp53R172H/+ pancreatic ductal adenocarcinomas while increasing their proliferation.
In agreement with predictions from these models, we show that minimal changes in the shape of the environment in which rats are exploring can substantially alter correlated activity patterns among place-modulated granule cells in the dentate gyrus.
In our cadaveric models, we show the inflatable bone tamp to be equivalent to conventional methods (metal tamp or elevator) for reducing depressed intra-articular fractures with large fragments.
For all maps see Additional file 2. To illustrate the sensitivity of the final models we show the predicted diameter increment for a range of conditions (Fig. 4; Additional file 3).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com