This paper proposes an Artificial Plasmodium Algorithm (APA) mimicked a contraction wave of a plasmodium of physarum polucephalum. Plasmodia can live using the contracion wave in their body to communicate to others and transport a nutriments. In the APA, each plasmodium has two information as the wave information: the direction and food index. We apply the APA to 4 types of mazes and confirm that the APA can solve the mazes
総説・解説などインパクトファクター(0.94)被引用回数(4)Learning how biological systems solve problems could help to design n...
Physarum Polycephalum is a unicellular and multi-headed slime mold, which can form high efficient ne...
We define games on the medium of plasmodia of slime mould, unicellular organisms that look like gian...
This paper proposes an Artificial Plasmodium Algorithm (APA) mimicked a contraction wave of a plasmo...
This paper proposes an Artificial Plasmodium Algorithm (APA) mimicked a contraction wave of a plasmo...
Physarum Polycephalum is a slime mold that is apparently able to solve shortest path problems. A mat...
We propose an artificial slime mould model (ASMM) inspired by the plasmodium of Physarum polucephalu...
Plasmodium of Physarum polycephalum is a single cell with many nuclei. Plasmodium is an easy-to-expe...
Physarum Polycephalum is a slime mold that apparently is able to solve shortest path problems. A mat...
Physarum Polycephalum is a primitive unicellular organism. Its foraging behavior demonstrates a uniq...
Plasmodium of Physarum polycephalum is a single cell visible by unaided eye. During its foraging beh...
Plasmodium of Physarum polycephalum is a single huge (visible by naked eye) cell with a myriad of nu...
Plasmodium stage of Physarum polycephalum behaves as a distributed dynamical pattern formation mecha...
© 2015 Taylor & Francis. Path planning is a classic problem in computer science and robotics which...
総説・解説などインパクトファクター(0.94)被引用回数(4)Learning how biological systems solve problems could help to design n...
Physarum Polycephalum is a unicellular and multi-headed slime mold, which can form high efficient ne...
We define games on the medium of plasmodia of slime mould, unicellular organisms that look like gian...
This paper proposes an Artificial Plasmodium Algorithm (APA) mimicked a contraction wave of a plasmo...
This paper proposes an Artificial Plasmodium Algorithm (APA) mimicked a contraction wave of a plasmo...
Physarum Polycephalum is a slime mold that is apparently able to solve shortest path problems. A mat...
We propose an artificial slime mould model (ASMM) inspired by the plasmodium of Physarum polucephalu...
Plasmodium of Physarum polycephalum is a single cell with many nuclei. Plasmodium is an easy-to-expe...
Physarum Polycephalum is a slime mold that apparently is able to solve shortest path problems. A mat...
Physarum Polycephalum is a primitive unicellular organism. Its foraging behavior demonstrates a uniq...
Plasmodium of Physarum polycephalum is a single cell visible by unaided eye. During its foraging beh...
Plasmodium of Physarum polycephalum is a single huge (visible by naked eye) cell with a myriad of nu...
Plasmodium stage of Physarum polycephalum behaves as a distributed dynamical pattern formation mecha...
© 2015 Taylor & Francis. Path planning is a classic problem in computer science and robotics which...
総説・解説などインパクトファクター(0.94)被引用回数(4)Learning how biological systems solve problems could help to design n...
Physarum Polycephalum is a unicellular and multi-headed slime mold, which can form high efficient ne...
We define games on the medium of plasmodia of slime mould, unicellular organisms that look like gian...