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Several specific approaches have commonly been used to detect and quantify effects of sexual antagonism.
10, 11 Two types of approaches have commonly been used in the last years to study forces in cellular systems: traction force microscopy and elastic micropillar systems.
Two approaches have commonly been used in IPD MA: the two-stage approach in which treatment effects are analyzed within a trial and then pooled across all available trials, and the one-stage approach, where all the trials are combined and the pooled estimate is calculated stratified by trial [ 32, 33].
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This approach has commonly been used for analysing the composition of heritage objects [26 28].
In these studies, a simulation-based approach has commonly been adopted rather than using a mathematical programming-based approach.
Moreover, polynomial interpolation approaches have been commonly used for channel estimation [10].
Therefore, in order to provide useful analyses for designing hydraulic facilities and infrastructures, statistical approaches have been commonly adopted.
In recent years, mass spectrometry (MS)–based lipidomics approaches have been commonly used to study lipid metabolism in various biological systems.
During the past decade, genomic-based approaches have been commonly utilized to better understand the pathobiology of various pathogens including C. jejuni.
Two major approaches have been commonly adopted as readouts to determine the identity of these ChIP-enriched DNA fragments at the whole-genome scale: hybridization-based or sequencing-based methods.
Unlike genomic-based approaches, mass spectrometry approaches have more commonly been applied in a serial fashion (i.e., one RNA sequence at a time) and even in cases where multiplexing has been used (e.g., total census of modified nucleosides, comparative analysis of RNA digests (CARD)), there are still limitations on the upper number of RNA sequences that are amenable to LC-MS/MS analysis.
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