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The detailed characterization of interaction forms among multiple transcription factors allows us to build a core transcription network in ESCs using a bottom-up approach.
Analysis of these factors allows us to foresee the recovery potential of the injury and to exclude recurrences.
The proper adjustment of these factors allows us to match fluid production and pressure to the same extent.
The interdependence between these factors allows us to analyze them through an organic square of entrepreneurship (Figure 1). Figure 1 The organic square of entrepreneurship.
The estimation of articulatory targets underlying the movements due to these factors allows us to capture the trend of the variability, which can be then summarized into a single contextually invariant target by the analysis of parameter distribution [21, 22].
Focusing on these factors allows us to identify the key features of individual spike-evoking epochs (SEEs) that drive reliable spike timing, even though these SEEs show great variety in amplitude and time profile.
Similar(51)
The expression of these transcription factors, allowed us to develop multichannel tfFACS using antibodies against SOX17 and GATA4.
The use of a sequence specific transcription factors allowed us to estimate the fraction of detected peaks that contained exact matches to the expected binding motif.
Lastly, a special experimental design that took into account all the influential factors allowed us to determine the maximum-yield experimental conditions.
These two factors allow us to express the in situ gas velocity and the void fraction in terms of the bubble rise velocity, the mixture velocity, and the flow parameter.
These are the factors allowing us to realize dense, smooth, and pinhole-free CsPbBr3 perovskite films with high thermal stability, whose grain boundaries are well passivated in order to achieve not only a substantial LED performance enhancement, but a greatly improved stability.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com