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They have been applied to correct a number of mutations using minigenes or endogenous transcripts in genetic disease context like hemophilia A [10], spinal muscular atrophy [11], X-linked immunodeficiency [12] and cystic fibrosis where the widespread mutation CFTRΔF508 was replaced efficiently in vivo by the normal sequence via a trans-splicing reaction [13].
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One can conclude that the prepared electrical grease could replace efficiently the imported electrical grease especially in isothermal application at and around room temperature.
We perform numerical experiments to show that our models to neutron reflection and transmission can be used to replace efficiently and accurately two nonactive boundary layers in whole-core transport calculations.
It is also discarded that the putative alternative replication factors are of chromosomal origin since B. subtilis does not encode structural and/or functional homologues of the DnaC helicase and DnaG primase that could replace efficiently these proteins at the fork [70].
This protein would not be able to bind DNA tightly and could be replaced very efficiently by CTCFL.
This view is reinforced by the fact that Ciapin1 has been identified as an anti-apoptotic factor in human cells [23], and is able to replace Dre2 efficiently in yeast and to interact with Tah18.
They suggest that either the emitting sites are not completely destroyed or that they are efficiently replaced by other nanotubes within the film.
In this demonstration, the alkaline Cu seed layer has been efficiently replaced by the PVD Cu prior bottom-up filling, as shown in Fig. 3.
This approach follows the recent trend showing that the traditional separate decoding of source and channel codes can be efficiently replaced by overall end-to-end optimization [21].
When this condition is fulfilled, the material microstructure at the second level can be efficiently replaced by an effective homogeneous continuum with a homogenized stress strain response.
The excellent results of clay (0.85 ≤ R2 ≤ 0.88 and 3.88 ≤ RPIQ ≤ 5.56) and sand (0.85 ≤ R2 ≤ 0.90 and 4.85 ≤ RPIQ ≤ 5.62) modeling prove that at least soil particle size analyses can be efficiently replaced by the reflectance spectroscopy methods.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com