A two-level discretisation algorithm for the efficient solution of higher-dimensional population balance models

M. A. Pinto, C. D. Immanuel, and F. J. Doyle III, “A two-level discretisation algorithm for the efficient solution of higher-dimensional population balance models,” Chemical Engineering Science, vol. 63, pp. 1304–1314, March 2008.[DOI]

Detection of a Meal Using Continuous Glucose Monitoring: Implications for an artificial β-cell

E. Dassau, B. W. Bequette, B. A. Buckingham, and F. J. Doyle III, “Detection of a Meal Using Continuous Glucose Monitoring: Implications for an artificial β-cell,” Diabetes Care, vol. 31, pp. 295–300, February 2008.[DOI]

Sensitivity Measures for Oscillating Systems: Application to Mammalian Circadian Gene Network

S. R. Taylor, R. Gunawan, L. R. Petzold, and F. J. Doyle III, “Sensitivity Measures for Oscillating Systems: Application to Mammalian Circadian Gene Network,” Automatic Control, IEEE Transactions on, vol. 53, pp. 177–188, January 2008.[DOI]

“Multi-rate model predictive control of particle size distribution in a semibatch emulsion copolymerization reacto

M. T. Dokucu, M.-J. Park, and F. J. Doyle III, “Multi-rate model predictive control of particle size distribution in a semibatch emulsion copolymerization reactor,” Journal of Process Control, vol. 18, pp. 105–120, January 2008.[DOI]

A feasible solution technique for higher-dimensional population balance models

M. A. Pinto, C. D. Immanuel, and F. J. Doyle III, “A feasible solution technique for higher-dimensional population balance models,” Computers & Chemical Engineering, vol. 31, pp. 1242–1256, October 2007.[DOI]

A Molecular Model for Intercellular Synchronization in the Mammalian Circadian Clock

T.-L. To, M. A. Henson, E. D. Herzog, and F. J. Doyle III, “A Molecular Model for Intercellular Synchronization in the Mammalian Circadian Clock,” Biophys J., vol. 92, pp. 3792?3803–3792?3803, June 2007.[DOI].

Simultaneous high gain and wide dynamic range in a model of bacterial chemotaxis

M. J. Park, F. W. Dahlquist, and F. J. Doyle III, “Simultaneous high gain and wide dynamic range in a model of bacterial chemotaxis,” Systems Biology, IET, vol. 1, pp. 222–229, 2007.[DOI]

A run-to-run framework for prandial insulin dosing: handling real-life uncertainty

C. C. Palerm, H. Zisser, L. Jovanovic, and F. J. Doyle III, “A run-to-run framework for prandial insulin dosing: handling real-life uncertainty,” International Journal of Robust and Nonlinear Control, vol. 17, pp. 1194–1213, 2007.[DOI]

Uncovering Physiologic Mechanisms of Circadian Rhythms and Sleep/Wake Regulation through Mathematical Modeling

R. E. Kronauer, G. Gunzelmann, H. P. A. Van Dongen, F. J. Doyle III, and E. B. Klerman, “Uncovering Physiologic Mechanisms of Circadian Rhythms and Sleep/Wake Regulation through Mathematical Modeling,” J Biol Rhythms, vol. 22, pp. 233–245, June 2007.[DOI]

“Prandial Insulin Dosing Using Run-to-Run Control: Application of clinical data and medical expertise to define a suitable performance metric

C. C. Palerm, H. Zisser, W. C. Bevier, L. Jovanovic, and F. J. Doyle III, “Prandial Insulin Dosing Using Run-to-Run Control: Application of clinical data and medical expertise to define a suitable performance metric,” Diabetes Care, vol. 30, pp. 1131–1136, May 2007.[DOI]