Manish P. Kurhekar
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2010 – today
- 2018
- [c7]Snehal B. Shinde, Manish P. Kurhekar:
The Complex Biological Immune System through the Eyes of Dual Phase Evolution. BIOINFORMATICS 2018: 166-173 - 2016
- [j3]Manish P. Kurhekar, Umesh A. Deshpande:
Agent-Based Deterministic Modeling of the Bone Marrow Homeostasis. Adv. Bioinformatics 2016: 8054219:1-8054219:12 (2016) - 2015
- [j2]Manish P. Kurhekar, Umesh A. Deshpande:
Agent based deterministic model of the adult subventricular neurogenesis. Nano Comm. Netw. 6(3): 124-132 (2015) - 2014
- [c6]Manish P. Kurhekar, Umesh A. Deshpande:
A Deterministic Model of the Adult Subventricular Neurogenesis. BICT 2014 - 2012
- [c5]Manish P. Kurhekar, Umesh A. Deshpande:
A Deterministic Model of Bone Marrow with Homeostatic Properties and with Steady Production of Differentiated Cells. BIOINFORMATICS 2012: 15-23
2000 – 2009
- 2003
- [c4]Manish P. Kurhekar, Rajkishore Barik, Umesh Kumar:
An Efficient Algorithm to Compute Delay Set in SPMD Programs. HiPC 2003: 290-299 - 2002
- [j1]Ajit A. Diwan, Manish P. Kurhekar:
Plane triangulations are 6-partitionable. Discrete Mathematics 256(1-2): 91-103 (2002) - [c3]Sudeshna Adak, Vishal S. Batra, Deo N. Bhardwaj, Pasumarti V. Kamesam, Pankaj Kankar, Manish P. Kurhekar, Biplav Srivastava:
A system for knowledge management in bioinformatics. CIKM 2002: 638-641 - [c2]Manish P. Kurhekar, Sudeshna Adak, S. Jhunjhunwala, K. Raghupathy:
Genome-Wide Pathway Analysis and Visualization Using Gene Expression Data. Pacific Symposium on Biocomputing 2002: 462-473 - [c1]Narasimha R. Adiga, George Almási, George S. Almasi, Yariv Aridor, Rajkishore Barik, Daniel K. Beece, Ralph Bellofatto, Gyan Bhanot, Randy Bickford, Matthias A. Blumrich, Arthur A. Bright, José R. Brunheroto, Calin Cascaval, José G. Castaños, Waiman Chan, Luis Ceze, Paul Coteus, Siddhartha Chatterjee, Dong Chen, George L.-T. Chiu, Thomas M. Cipolla, Paul Crumley, K. M. Desai, Alina Deutsch, Tamar Domany, Marc Boris Dombrowa, Wilm E. Donath, Maria Eleftheriou, C. Christopher Erway, J. Esch, Blake G. Fitch, Joseph Gagliano, Alan Gara, Rahul Garg, Robert S. Germain, Mark Giampapa, Balaji Gopalsamy, John A. Gunnels, Manish Gupta, Fred G. Gustavson, Shawn Hall, Ruud A. Haring, David F. Heidel, Philip Heidelberger, Lorraine Herger, Dirk Hoenicke, R. D. Jackson, T. Jamal-Eddine, Gerard V. Kopcsay, Elie Krevat, Manish P. Kurhekar, Alphonso P. Lanzetta, Derek Lieber, L. K. Liu, M. Lu, Mark P. Mendell, A. Misra, Yosef Moatti, Lawrence S. Mok, José E. Moreira, Ben J. Nathanson, Matthew Newton, Martin Ohmacht, Adam J. Oliner, Vinayaka Pandit, R. B. Pudota, Rick A. Rand, Richard D. Regan, Bradley Rubin, Albert E. Ruehli, Silvius Rus, Ramendra K. Sahoo, Alda Sanomiya, Eugen Schenfeld, M. Sharma, Edi Shmueli, Sarabjeet Singh, Peilin Song, Vijay Srinivasan, Burkhard D. Steinmacher-Burow, Karin Strauss, Christopher W. Surovic, Richard A. Swetz, Todd Takken, R. Brett Tremaine, Mickey Tsao, Arun R. Umamaheshwaran, P. Verma, Pavlos Vranas, T. J. Christopher Ward, Michael E. Wazlowski, W. Barrett, C. Engel, B. Drehmel, B. Hilgart, D. Hill, F. Kasemkhani, David J. Krolak, Chun-Tao Li, Thomas A. Liebsch, James A. Marcella, A. Muff, A. Okomo, M. Rouse, A. Schram, M. Tubbs, G. Ulsh, Charles D. Wait, J. Wittrup, Myung Bae, Kenneth A. Dockser, Lynn Kissel, Mark K. Seager, Jeffrey S. Vetter, K. Yates:
An overview of the BlueGene/L Supercomputer. SC 2002: 7:1-7:22
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