Applications of computational homology to the analysis of treatment response in breast cancer patients

D. DeWoskin , J. Climent , I. Cruz-White , M. Vazquez
Topology and its Applications 157 ( 1) 157 -164

22
2010
A Computational Homology Analysis of CGH Data Finds Recurrent Genomic Instability in Older Breast Cancer Patients

D. DeWoskin , R. Scharein , J. Arsuaga , C. Park
International Journal of Radiation Oncology Biology Physics 75 ( 3)

1
2009
Dynamic models of metastatic tumor growth

D DeWoskin , M Higley , K Lemoi , B Owens
Final Report of the 27th Annual Workshop on Mathematical Problems in Industry, New Jersey Institute of Technology

10
2011
GABA-mediated repulsive coupling between circadian clock neurons in the SCN encodes seasonal time

Jihwan Myung , Sungho Hong , Daniel DeWoskin , Erik De Schutter
Proceedings of the National Academy of Sciences of the United States of America 112 ( 29) 201421200

90
2015
Distinct roles for GABA across multiple timescales in mammalian circadian timekeeping.

Daniel DeWoskin , Jihwan Myung , Mino D. C. Belle , Hugh D. Piggins
Proceedings of the National Academy of Sciences of the United States of America 112 ( 29) 201420753

78
2015
Regulation of persistent sodium currents by glycogen synthase kinase 3 encodes daily rhythms of neuronal excitability

Jodi R. Paul , Daniel DeWoskin , Laura J. McMeekin , Rita M. Cowell
Nature Communications 7 ( 1) 13470 -13470

31
2016
Topological analysis of gene expression arrays identifies high risk molecular subtypes in breast cancer

Javier Arsuaga , Nils A. Baas , Daniel DeWoskin , Hideaki Mizuno
Applicable Algebra in Engineering, Communication and Computing 23 ( 1) 3 -15

8
2012
It is not the parts, but how they interact that determines the behaviour of circadian rhythms across scales and organisms

Daniel DeWoskin , Weihua Geng , Adam R. Stinchcombe , Daniel B. Forger
Interface Focus 4 ( 3) 20130076 -20130076

20
2014
Fast and Slow Coupling in the Circadian Clock

Daniel DeWoskin , Daniel B Forger