Increasing sync rate of pulse-coupled oscillators via phase response function design: theory and application to wireless networks

Y. Q. Wang, F. Nunez, F. J. Doyle III, “Increasing sync rate of pulse-coupled oscillators via phase response function design: theory and application to wireless networks,” IEEE Transactions on Control Systems Technology. (in press) [DOI]

The influence of global and local cues on the rate of synchronization in the presence of time delays

Y. Q. Wang, F. J. Doyle III. “The influence of global and local cues on the rate of synchronization in the presence of time delays,” Automatica, (in press) [DOI]

Exponential synchronization rate of Kuramoto oscillators in the presence of a pacemaker

Y. Q. Wang, F. J. Doyle III. Exponential synchronization rate of Kuramoto oscillators in the presence of a pacemaker. IEEE Transactions on Automatic Control, 58(4)9889-994, 2013 [DOI]

Clinical evaluation of a personalized artificial pancreas

E. Dassau, H. Zisser, R.A. Harvey, M.W. Percival, B. Grosman, W. Bevier, E. Atlas, S. Miller, R. Nimri, L. Jovanovic, F.J. Doyle III “Clinical evaluation of a personalized artificial pancreas,” Diabetes Care, vol. 36, no. 4, pp. 801-9, Apr 2013. [DOI]

In silico evaluation of an artificial pancreas combining exogenous ultrafast-acting technosphere insulin with zone model predictive control

J.J. Lee, E. Dassau, H. Zisser, R.A. Harvey, L. Jovanovič, F.J. Doyle III “In silico evaluation of an artificial pancreas combining exogenous ultrafast-acting technosphere insulin with zone model predictive control,” Journal of Diabetes Science and Technology, vol. 7, no. 1, pp. 215-26, January 2013. [PMID]

Computational modeling of glucose transport in pancreatic β-cells identifies metabolic thresholds and therapeutic targets in diabetes

C. Luni, J.D. Marth, F.J. Doyle III, “Computational modeling of glucose transport in pancreatic β-cells identifies metabolic thresholds and therapeutic targets in diabetes,” PloS One, vol. 7, no. 12, pp. e53130, December 2012. [DOI]

Design of the health monitoring system for the artificial pancreas: low glucose prediction module

R.A. Harvey, E. Dassau, H. Zisser, D.E. Seborg, L. Jovanovič, F.J. Doyle III “Design of the health monitoring system for the artificial pancreas: low glucose prediction module,” Journal of Diabetes Science and Technology, vol. 6, no. 6, pp. 1345-54, November 2012. [PMID]

Optimal phase response functions for fast pulse-coupled synchronization in wireless sensor networks

Y. Q. Wang, F. J. Doyle III. “Optimal phase response functions for fast pulse-coupled synchronization in wireless sensor networks,” IEEE Transactions on Signal Processing. vol. 60, no. 10, 2012, pp. 5583–5588, October 2012. [DOI]

Energy-efficient pulse-coupled synchronization strategy design for wireless sensor networks through reduced idle listening

Y. Q. Wang, F. Nunez, F. J. Doyle III. “Energy-efficient pulse-coupled synchronization strategy design for wireless sensor networks through reduced idle listening,” IEEE Transactions on Signal Processing, vol. 60, no. 10, 2012, pp. 5293–5306, October 2012. [DOI]

Fully integrated artificial pancreas in type 1 diabetes: modular closed-loop glucose control maintains near normoglycemia

M. Breton, A. Farret, D. Bruttomesso, S. Anderson, L. Magni, S. Patek, C. Dalla Man, J. Place, S. Demartini, S. Del Favero, C. Toffanin, C. Hughes-Karvetski, E. Dassau, H. Zisser, F.J. Doyle III, G. De Nicolao, A. Avogaro, C. Cobelli, E. Renard, B. Kovatchev, International Artificial Pancreas Study Group, “Fully integrated artificial pancreas in type 1 diabetes: modular closed-loop glucose control maintains near normoglycemia,” Diabetes, vol. 61, no. 9, pp. 2230-7, Sep 2012. [DOI]