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Below, we demonstrate that this estimate accurately reflects the fluid conditions inside the channel, and that by adjusting the position of the interface, time-varying chemical signals can be generated and applied to living cells, and their responses observed.
Below, we demonstrate that forming such bridges is of fundamental importance, especially if it can be achieved at the level of individual trials.
In contrast, based on the theatrical analyses and empirical results presented below, we demonstrate that the MV, selected by the proposed motion estimation process, is less affected by QP.
Below we demonstrate that one of the studied photosynthetic genes, rbcL, evolved under positive selection during adaptive radiation in Schiedea.
Below we demonstrate that additional investigation provides further insight into the results.
Below we demonstrate that LARS2 is able to fully aminoacylate modified tRNA at low Mg2+; thus, the lower plateau values do not represent enzyme inactivation under these conditions.
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The results presented below demonstrate that child anxiety, as measured by its temperamental predispositions or by anxious complaints, indeed affects coparenting.
Moreover, we demonstrated that below this cutoff, search results can differ due to coverage biases of the different databases.
Moreover, we demonstrated that FBG levels below 4.5 mmol/l were also associated with enhanced thrombin generation and trend towards higher platelet activation, which might contribute to prothrombotic fibrin clot phenotype in this clinical setting.
While not biased towards a particular coding paradigm by design, we demonstrate below that decision-making in this model is entirely reduced to the competition between LNs in terms of latency to the first spike: the LN that spikes first becomes the effective 'winner' even though it may receive less excitation on average during the course of stimulation than other LNs.
We demonstrate below that methylated cytosines are heterogeneously distributed and locally clustered in different species.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com