2008 |
48 | | André Stauffer,
Daniel Mange,
Joël Rossier:
Bio-Inspired Data and Signals Cellular Systems.
BIOSIGNALS (1) 2008: 203-207 |
47 | EE | André Stauffer,
Daniel Mange,
Joël Rossier:
Design of self-organizing bio-inspired systems.
KES Journal 12(3): 213-220 (2008) |
2007 |
46 | EE | André Stauffer,
Daniel Mange,
Joël Rossier:
Design of Self-organizing Bio-inspired Systems.
AHS 2007: 413-419 |
45 | EE | André Stauffer,
Daniel Mange,
Joël Rossier:
Self-organizing Systems Based on Bio-inspired Properties.
ECAL 2007: 1171-1181 |
44 | EE | André Stauffer,
Daniel Mange,
Joël Rossier,
Fabien Vannel:
Bio-inspired Systems with Self-developing Mechanisms.
ICES 2007: 151-162 |
43 | EE | Pierre-André Mudry,
Fabien Vannel,
Gianluca Tempesti,
Daniel Mange:
CONFETTI : A reconfigurable hardware platform for prototyping cellular architectures.
IPDPS 2007: 1-8 |
42 | EE | Gianluca Tempesti,
Daniel Mange,
Pierre-André Mudry,
Joël Rossier,
André Stauffer:
Self-replicating hardware for reliability: The embryonics project.
JETC 3(2): (2007) |
2006 |
41 | EE | André Stauffer,
Daniel Mange,
Gianluca Tempesti:
Bio-inspired Computing Machines with Self-repair Mechanisms.
BioADIT 2006: 128-140 |
40 | EE | Gianluca Tempesti,
Daniel Mange,
Pierre-André Mudry,
Joël Rossier,
André Stauffer:
Self-replication for reliability: bio-inspired hardware and the embryonics project.
Conf. Computing Frontiers 2006: 199-206 |
2005 |
39 | EE | Gianluca Tempesti,
Daniel Mange,
André Stauffer:
Bio-Inspired Computing Architectures: The Embryonics Approach.
CAMP 2005: 3-10 |
38 | EE | André Stauffer,
Daniel Mange,
Gianluca Tempesti:
Construction-Based and Inspection-Based Universal Self-replication.
ECAL 2005: 805-814 |
37 | EE | André Stauffer,
Daniel Mange,
Gianluca Tempesti:
Embryonic Machines That Grow, Self-Replicate and Self-Repair.
Evolvable Hardware 2005: 290-293 |
36 | EE | André Stauffer,
Daniel Mange,
Fabien Vannel:
Hardware Implementation of 3D Self-replication.
ICES 2005: 165-176 |
2004 |
35 | EE | André Stauffer,
Daniel Mange,
Enrico Petraglio,
Fabien Vannel:
DSCA Implementation of 3D Self-Replicating Structures.
ACRI 2004: 698-708 |
34 | EE | Daniel Mange,
André Stauffer,
Enrico Petraglio,
Gianluca Tempesti:
Embryonic Machines That Divide and Differentiate.
BioADIT 2004: 201-216 |
33 | EE | Enrico Petraglio,
Daniel Mange,
André Stauffer,
Gianluca Tempesti:
Artificial Cellular Division by Self-Inspection.
BioADIT 2004: 217-232 |
32 | EE | André Stauffer,
Daniel Mange,
Enrico Petraglio,
Gianluca Tempesti:
Self-Replication of 3D Universal Structures.
Evolvable Hardware 2004: 283- |
2003 |
31 | EE | Gianluca Tempesti,
Daniel Mange,
Enrico Petraglio,
André Stauffer,
Yann Thoma:
Developmental Processes in Silicon: An Engineering Perspective.
Evolvable Hardware 2003: 265-274 |
30 | EE | Andrew M. Tyrrell,
Eduardo Sanchez,
Dario Floreano,
Gianluca Tempesti,
Daniel Mange,
Juan Manuel Moreno,
Jay Rosenberg,
Alessandro E. P. Villa:
POEtic Tissue: An Integrated Architecture for Bio-inspired Hardware.
ICES 2003: 129-140 |
2002 |
29 | EE | Gianluca Tempesti,
Daniel Mange,
André Stauffer,
Christof Teuscher:
The BioWall: An Electronic Tissue for Prototyping Bio-Inspired Systems.
Evolvable Hardware 2002: 221-230 |
2001 |
28 | EE | André Stauffer,
Daniel Mange,
Gianluca Tempesti,
Christof Teuscher:
Biowatch: A Giant Electronic Bio-Inspired Watch.
Evolvable Hardware 2001: 185-192 |
27 | EE | Lucian Prodan,
Gianluca Tempesti,
Daniel Mange,
André Stauffer:
Embryonics: Artificial Cells Driven by Artificial DNA.
ICES 2001: 100-111 |
26 | EE | André Stauffer,
Daniel Mange,
Gianluca Tempesti,
Christof Teuscher:
A Self-Repairing and Self-Healing Electronic Watch: The BioWatch.
ICES 2001: 112-127 |
25 | EE | Héctor Fabio Restrepo,
Daniel Mange:
An Embryonics Implementation of a Self-Replicating Universal Turing Machine.
ICES 2001: 74-87 |
24 | EE | Daniel Mange,
André Stauffer,
Gianluca Tempesti,
Christof Teuscher:
From Embryonics to POEtic Machines.
IWANN (2) 2001: 1-13 |
23 | EE | Héctor Fabio Restrepo,
Daniel Mange:
A 2-by-n Hybrid Cellular Automaton Implementation Using a Bio-Inspired FPGA.
IWANN (2) 2001: 39-46 |
2000 |
22 | EE | Cesar Ortega-Sanchez,
Andrew M. Tyrrell,
Daniel Mange,
André Stauffer,
Gianluca Tempesti:
Reliability Analysis of a Self-Repairing Embryonic Machine.
EUROMICRO 2000: 1356-1361 |
21 | EE | Daniel Mange,
Moshe Sipper,
André Stauffer,
Gianluca Tempesti:
Toward Self-Repairing and Self-Replicating Hardware: The Embryonics Approach.
Evolvable Hardware 2000: 205-214 |
20 | EE | Lucian Prodan,
Gianluca Tempesti,
Daniel Mange,
André Stauffer:
Biology Meets Electronics: The Path to a Bio-inspired FPGA.
ICES 2000: 187-196 |
19 | | Cesar Ortega-Sanchez,
Daniel Mange,
Steve Smith,
Andrew M. Tyrrell:
Embryonics: A Bio-Inspired Cellular Architecture with Fault-Tolerant Properties.
Genetic Programming and Evolvable Machines 1(3): 187-215 (2000) |
1999 |
18 | | Daniel Mange:
Towards Robust Bio-inspired Circuits.
ECAL 1999: 377-378 |
17 | EE | Moshe Sipper,
Daniel Mange,
Eduardo Sanchez:
Quo Vadis Evolvable Hardware?
Commun. ACM 42(4): 50-56 (1999) |
16 | | Moshe Sipper,
Daniel Mange,
Andrés Pérez-Uribe:
Evolvable systems 1998-Proceedings of the Second International Conference on Evolvable Systems: From Biology to Hardware (ICES'98) .
IEEE Trans. Evolutionary Computation 3(2): 157-158 (1999) |
1998 |
15 | | Moshe Sipper,
Daniel Mange,
Andrés Pérez-Uribe:
Evolvable Systems: From Biology to Hardware, Second International Conference, ICES 98, Lausanne, Switzerland, September 23-25, 1998, Proceedings
Springer 1998 |
14 | EE | Daniel Mange,
André Stauffer,
Gianluca Tempesti:
Embryonics: A Macroscopic View of the Cellular Architecture.
ICES 1998: 174-184 |
13 | EE | Daniel Mange,
André Stauffer,
Gianluca Tempesti:
Embryonics: A Microscopic View of the Molecular Architecture.
ICES 1998: 185-195 |
12 | | Moshe Sipper,
Daniel Mange:
Von Neumann's Quintessential Message: Genotype + Ribotype = Phenotype.
Artificial Life 4(3): 225-227 (1998) |
11 | | Gianluca Tempesti,
Daniel Mange,
André Stauffer:
Self-Replicating and Self-Repairing Multicellular Automata.
Artificial Life 4(3): 259-282 (1998) |
10 | EE | Daniel Mange,
Eduardo Sanchez,
André Stauffer,
Gianluca Tempesti,
Pierre Marchal,
Christian Piguet:
Embryonics: a new methodology for designing field-programmable gate arrays with self-repair and self-replicating properties.
IEEE Trans. VLSI Syst. 6(3): 387-399 (1998) |
1997 |
9 | | Moshe Sipper,
Eduardo Sanchez,
Daniel Mange,
Marco Tomassini,
Andrés Pérez-Uribe,
André Stauffer:
A phylogenetic, ontogenetic, and epigenetic view of bio-inspired hardware systems.
IEEE Trans. Evolutionary Computation 1(1): 83-97 (1997) |
8 | EE | Daniel Mange,
Dominik Madon,
André Stauffer,
Gianluca Tempesti:
Von Neumann revisited: A turing machine with self-repair and self-reproduction properties.
Robotics and Autonomous Systems 22(1): 35-58 (1997) |
1996 |
7 | | Eduardo Sanchez,
Daniel Mange,
Moshe Sipper,
Marco Tomassini,
Andrés Pérez-Uribe,
André Stauffer:
Phylogeny, Ontogeny, and Epigenesis: Three Sources of Biological Inspiration for Softening Hardware.
ICES 1996: 35-54 |
6 | | Maxime Goeke,
Moshe Sipper,
Daniel Mange,
André Stauffer,
Eduardo Sanchez,
Marco Tomassini:
Online Autonomous Evolware.
ICES 1996: 96-106 |
1995 |
5 | | Daniel Mange,
Serge Durand,
Eduardo Sanchez,
André Stauffer,
Gianluca Tempesti,
Pierre Marchal,
Christian Piguet:
A New Paradigm for Developing Digital Systems Based on a Multi-Cellular Organization.
ISCAS 1995: 2193-2196 |
4 | | Pierre Marchal,
Pascal Nussbaum,
Christian Piguet,
Serge Durand,
Daniel Mange,
Eduardo Sanchez,
André Stauffer,
Gianluca Tempesti:
Embryonics: The Birth of Synthetic Life.
Towards Evolvable Hardware 1995: 166-196 |
3 | | Daniel Mange,
Maxime Goeke,
Dominik Madon,
André Stauffer,
Gianluca Tempesti,
Serge Durand:
Embryonics: A New Family of Coarse-Grained Field Programmable Gate Array with Self-Repair and Self-Reproducing Properties.
Towards Evolvable Hardware 1995: 197-220 |
1994 |
2 | | Daniel Mange,
André Stauffer,
Pierre Marchal,
Christian Piguet:
Embryonics: Designing Programmable Circuits with Biological-like Properties.
Applied Informatics 1994: 314-317 |
1979 |
1 | | Eduard Cerny,
Daniel Mange,
Eduardo Sanchez:
Synthesis of Minimal Binary Decision Trees.
IEEE Trans. Computers 28(7): 472-482 (1979) |