Ajoy Velayudhan
Affiliations: | Oregon State University, Corvallis, OR |
Area:
Chemical EngineeringGoogle:
"Ajoy Velayudhan"
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Publications
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Fischer V, Kucia-Tran R, Lewis W, et al. (2019) Hybrid optimization of preparative chromatography for a ternary monoclonal antibody mixture. Biotechnology Progress. e2849 |
Konstantinidis S, Welsh JP, Titchener-Hooker NJ, et al. (2018) Data-driven multi-objective optimization via grid compatible simplex technique and desirability approach for challenging high throughput chromatography applications. Biotechnology Progress |
Wayne CJ, Velayudhan A. (2018) Modulator Dynamics Shape the Design Space for Stepwise‐Elution Simulated Moving Bed Chromatographic Separations Biotechnology Journal. 13: 1700664 |
Konstantinidis S, Goh HY, Bufájer JMM, et al. (2017) Flexible and accessible automated operation of miniature chromatography columns on a liquid handling station. Biotechnology Journal |
Field N, Konstantinidis S, Velayudhan A. (2017) High-throughput investigation of single and binary protein adsorption isotherms in anion exchange chromatography employing multivariate analysis. Journal of Chromatography A. 1510: 13-24 |
Konstantinidis S, Titchener-Hooker N, Velayudhan A. (2017) Simplex-based optimization of numerical and categorical inputs in early bioprocess development: Case studies in HT chromatography. Biotechnology Journal. 12: 1700174 |
Yang Y, Velayudhan A, Thornhill NF, et al. (2017) Multi-criteria manufacturability indices for ranking high-concentration monoclonal antibody formulations. Biotechnology and Bioengineering |
Lambert AB, Smith FT, Velayudhan A. (2017) A simplified model of glycoprotein production within cell culture European Journal of Applied Mathematics. 28: 535-561 |
Konstantinidis S, Welsh JP, Roush DJ, et al. (2016) Application of Simplex-based experimental optimisation to challenging bioprocess development problems: Case studies in downstream processing. Biotechnology Progress |
Yang Y, Velayudhan A, Thornhill NF, et al. (2015) Manufacturability Indices for High-Concentration Monoclonal Antibody Formulations Computer-Aided Chemical Engineering. 37: 2147-2152 |