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We have been using Legionella pneumophila and Coxiella burnetii as model pathogens to study this process.
The methods by which our galaxy eats and the telescopes used to study this process will be presented.
The inherent heterogeneity and asynchronous nature of the reprogramming process renders it difficult to study this process using bulk genomic techniques.
To study this process, we used a tracheal allograft mouse model that recapitulates large airway changes observed in patients undergoing lung transplantation.
However the application of one or two techniques to study this process means that the characterization is often only partial.
Numerical modelling is used to study this process and to arrive at predictions of current compaction-driven land subsidence rates.
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CO2 injection is a well-established method for enhanced oil recovery and numerous studies have been dedicated to studying this process at the pore level.
To quantitatively study this process, a time-resolved analysis of cellular dynamics at the single-cell level is an essential prerequisite.
Many models have been used to study this interaction process during the past several decades.
Time resolved Raman spectroelectrochemistry is used to study this interesting process strongly dependent on the experimental conditions.
To study this dynamic process, we have adapted a dual split protein assay originally developed to study the kinetics of human immunodeficiency virus (HIV) mediated fusion.
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