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1 ined with genetic, cytological and molecular biological analysis.
2 and other molecules is a critical aspect of biological analysis.
3 alides to provide a library of compounds for biological analysis.
4 s substrates in high-throughput chemical and biological analysis.
5 assembly is a rapid and useful strategy for biological analysis.
6 ling strategies has become very important in biological analysis.
7 des additional capabilities for chemical and biological analysis.
8 s is a crucial step for on-chip chemical and biological analysis.
9 cient quantities to allow molecular and cell biological analysis.
10 nd provide the starting point for downstream biological analysis.
11 eochemistries were confirmed by spectral and biological analysis.
12 asma gondii as an accessible system for cell biological analysis and molecular genetic manipulation,
20 mplications for high-throughput chemical and biological analysis, lubrications, laboratory-on-chip de
22 n bottleneck in proteomics is the downstream biological analysis of highly multivariate quantitative
25 be exploited, by using programs designed for biological analysis of sequence evolution to uncover the
27 s as measured through luciferase assays, the biological analysis of stably transduced cell lines, and
31 l challenges associated with performing cell biological analysis of the delicate filopodial structure
34 lls to carry out a detailed genetic and cell biological analysis of the resulting ovarian tumor pheno
37 This allowed for the molecular cloning and biological analysis of transmitted/founder viruses and a
40 or underlying substrate and, in the case of biological analysis on skin surfaces, without electrical
44 core, while more recent biochemical and cell biological analysis shows that the two transmembrane cas
45 ul functional operation preceding downstream biological analysis, since it allows the accurate latera
47 er SCNV evaluation, immunohistochemistry and biological analysis suggested their functional relevance
50 edicinal chemistry evaluation and a two-step biological analysis to help select the optimal target co
51 ss II epitope candidates and in vitro T-cell biological analysis to identify class II-restricted epit
52 ty-eight diverse compounds were selected for biological analysis, using molecular field similarity to
53 -ICPMS) has gained increasing importance for biological analysis, where ultratrace imaging at microme
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