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Techniques discussed include; B and T cell epitope mapping, characterization of allergens, conjugation of haptens, preparation of monoclonal antibodies, collection and sampling of airborne allergens, IgG antibodies and facilitated antigen blocking assays, identification and purification of mast cells and in situ hybridisation.
High-resolution linkage maps are exceptionally valuable tools in many genetic and genomic applications, such as fine-scale quantitative trait locus (QTL) mapping, characterization of recombination hotspots, comparative genome analysis and genome scaffolding.
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Similar results are obtained from other samples of EDS mapping characterization.
In conjunction with the currently existing linkage maps [ 1, 2], our BAC resource now provides a valuable tool for the mapping and characterization of traits involved in production.
Boyle, A. P. et al. High-resolution mapping and characterization of open chromatin across the genome.
Boyle, A.P. et al. High-resolution mapping and characterization of open chromatin across the genome.
Trimarchi, T. et al. Genome-wide mapping and characterization of notch-regulated long noncoding RNAs in acute leukemia.
soil mapping and characterization of soil properties relevant for environmental planning.
In this paper, we describe a patient-tailored framework which allows mapping and characterization of TBI-related structural damage to the brain via multimodal neuroimaging and personalized connectomics.
Here, we report on detailed Raman mapping and characterization of Al-6061, Al-7075 Agd Ag covetics to further investigate the fraction of sp2/sp3 bonding, strain, defects, degree of oxidation, and crystalline sizes of the graphene nanoribbons.
I. High resolution epitope mapping and characterization of monoclonal antibody binding sites.
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