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Documenting in detail the mineralization of modern polychaete tubes is critical to ensuring the validity of fossil-modern comparisons and to advancing current understanding of the taphonomy and palaeontology of polychaete worms.
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To advance current understanding of environmental behaviors of ENPs, this work provides an introductory overview of ENP fate and transport in porous media.
This paper aims to advance current understanding of the impact of organizational fit through complementarity analysis of 26 AMT and 12 engineering management practices.
Moreover, a new function of Tnni2 in the regulation of bone development may have also advanced current understanding of the pathological mechanism of human DA2B disorder (Zhu et al., 2014).
The latest findings regarding the structural design principles and mechanical properties are presented in order to advance current understanding of keratinous materials and to stimulate the development of new bioinspired materials.
Over time, as we are able to prospectively study larger numbers and to examine interrelationships among both early-developing behaviors and biological indices of interest, we hope this work will advance current understanding of the neurodevelopmental origins of autism.
Findings would greatly advance current understanding of microbial interactions important to plant biology.
10 To advance current understanding of benzene health effects and susceptibility, studies of paediatric cancers that include estimates of environmental exposure to benzene, rather than surrogate exposure indicators, have been recommended.
The availability and synthesis of genomic data from preterm infants, controls and parents will significantly advance current understanding of the genomics of birth timing, paving the way for the determination of the mechanisms regulating the timing of parturition.
Despite these challenges, which are familiar to practitioners of biochemical genetics, statistical identification of gene-metabolite associations by mQTL and mGWAS promises to significantly advance current understandings of gene function, metabolic regulation and mechanisms of pathology.
Here, we review the contribution of protein engineering approaches namely, the incorporation of unnatural amino acids and a biosynthetic CuA cofactor into the T1 copper protein azurin to advancing the current understanding of how the unique structures of T1 copper and CuA centers confer their proteins with efficient and tailored ET properties.
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