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Titlebook: Biologically Inspired Approaches to Advanced Information Technology; Second International Auke Jan Ijspeert,Toshimitsu Masuzawa,Shinji Kusu

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發(fā)表于 2025-3-21 19:46:07 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biologically Inspired Approaches to Advanced Information Technology
期刊簡(jiǎn)稱Second International
影響因子2023Auke Jan Ijspeert,Toshimitsu Masuzawa,Shinji Kusum
視頻videohttp://file.papertrans.cn/188/187510/187510.mp4
學(xué)科分類Lecture Notes in Computer Science
圖書封面Titlebook: Biologically Inspired Approaches to Advanced Information Technology; Second International Auke Jan Ijspeert,Toshimitsu Masuzawa,Shinji Kusu
影響因子This book contains 30 articles and three abstracts of invited talks presented at The Second International Workshop on Biologically Inspired Approaches for Advanced Information Technology (Bio-ADIT 2006) held at Senri Life Science Center, Osaka, Japan, on January 26–27, 2006. Bio-ADIT 2006 follows the s- cess of the ?rst workshop Bio-ADIT 2004, held at the Swiss Federal Institute of Technology, Lausanne (EPFL), Switzerland, in January 2004. The workshop is intended to provide an e?ective forum for original research results in the ?eld of bio-inspired approaches to advanced information technologies. It also serves to foster the connection between biological paradigms and solutions to building the next-generation information systems. In particular, the aim of the workshop is to explore and discuss how biologically inspired approaches can help in - signing the next generation of information systems which, like their biological counterparts, will be capable of adaptation, self-organization, replication, and self-repair. Wewerehonoredtohavetheparticipationasinvitedspeakersofthreeleading researchers in this ?eld: James C. Liao, Rolf Pfeifer, and Toshio Yanagida. The invitedtalksdealtwitht
Pindex Conference proceedings 2006
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Morphological Computation: Connecting Brain, Body, and Environment Recently there has been an increasing interest into the notion of embodiment not only in robotics and artificial intelligence, but also in the neurosciences, psychology, and philosophy. In this paper, we introduce the notion of morphological computation and demonstrate how it can be exploited on th
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Single Molecule Nano-Biosciencers to fulfill their functions. Their collaboration allows the activity of biological systems. The reactions and behaviors of molecular machines vary flexibly while responding to their surroundings. This flexibility is essential for biological organisms. The underlying mechanism of molecular machines
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Evolving the Walking Behaviour of a 12 DOF Quadruped Using a Distributed Neural Architecturer in the Aibo robotic dog. The architecture described has been already demonstrated useful for the generation of more simple behaviours like standing or standing up. This paper describes specifically how it has been applied to the generation of a walking pattern in a quadruped with twelve degrees of
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Resilient Multi-path Routing Based on a Biological Attractor Selection Schemes approach is that it is highly noise-tolerant and capable of operating in a very robust manner under changing environment conditions. We will apply an enhanced attractor selection model to multi-path routing in overlay networks and discuss some general properties of this approach based on numerical
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Packet Classification with Evolvable Hardware Hash Functions – An Intrinsic Approachg accordingly. Conventional algorithms for packet classification use either a huge amount of memory or have high computational demands to perform the task. Using a hash function in order to classify packets is promising regarding both memory and computation time. However, such a hash function needs
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Microbial Interaction in a Symbiotic Bioprocess of Lactic Acid Bacterium and Diary Yeastcess of a lactic acid bacterium, . sub species . (ATCC11454) and diary yeast . is studied in this paper. A mathematical model of the symbiotic process composed of two microorganisms is developed by integrating two pure cultivation models. A cascade pH controller coupled with the dissolved oxygen (DO
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