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1 es, are constructed and combined for further biological analyses.
2 IR spectroscopy is an excellent method for biological analyses.
3 ined with genetic, cytological and molecular biological analyses.
4 ates their assessment by routine chemical or biological analyses.
5 esis is of major importance for a variety of biological analyses.
6 al for broad utility in proteomics and other biological analyses.
7 providing two simple examples of downstream biological analyses.
8 um parvum metabolic map and facilitates cell biological analyses.
9 arcinoma (PDA) initiation, we used molecular biological analyses and mouse models of klf4 gain- and l
17 r reference genomes, for use in a variety of biological analyses including SNP discovery, genotyping
18 uences and/or structures is crucial for many biological analyses, including functional annotation of
20 The challenge is to use genetic and cell biological analyses, integrated with our knowledge of pl
22 believe that this progress will enable novel biological analyses of hundreds of mammalian-sized genom
26 structural modeling and biochemical and cell biological analyses of structure-based mutations, we inv
27 conformational preferences and results from biological analyses of these analogues allow a detailed
28 conformational preferences and results from biological analyses of these analogues(1,2) allow a deta
30 t included structural, biochemical, and cell biological analyses revealed two distinct chemotypes wit
33 ent probes to DNA molecules for a variety of biological analyses such as DNA sequencing by synthesis.
36 e topography as well as biochemical and cell-biological analyses to identify coat proteins whose asse
37 band in prion-infected mice, subsequent cell biological analyses uncovered a surprisingly coordinated
40 ing biochemical, molecular modeling and cell biological analyses, we have investigated the interactio
42 es, protein expression patterns and advanced biological analyses will not be drastically impacted by
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