© 2016, Korean Society of Medical and Biological Engineering and Springer. Purpose: Protoplasmic tubes of Physarum polycephalum, also know as Physarum Wires (PW), have been previously suggested as novel bio-electronic components. Until recently, practical examples of electronic circuits using PWs have been limited. These PWs have been shown to be self repairing, offering significant advantage over traditional electronic components. This article documents work performed to produce practical circuits using PWs. Methods: We have demonstrated through manufacture and testing of hybrid circuits that PWs can be used to produce a variety of practical electronic circuits. A plurality of different applications of PWs have been tested to show the univ...
Slime mould Physarum polycephalum is a single cell visible by the unaided eye. Let the slime mould s...
Easily constructed by investigators with no electronics knowledge, we present an inexpensive and ope...
There is a pressing need to advance our ability to construct three-dimensional (3D) functional bioel...
© 2016, Korean Society of Medical and Biological Engineering and Springer. Purpose: Protoplasmic tub...
© 2015. The slime mould Physarum polycephalum is a large single celled myxomycete; its plasmodium co...
We construct electronic oscillator from acellular slime mould Physarum polycephalum. The slime mould...
In laboratory experiments we demonstrate that protoplasmic tubes of acellular slime mould \emph{Phys...
© 2016 Elsevier B.V. All rights reserved. Physarum polycephalum is a model organism used in the crea...
Includes bibliographical references (pages 132-137).Maintaining Moore's law has become increasingly ...
In laboratory experiments we demonstrate that protoplasmic tubes of acellular slime mould Physarum p...
The plasmodium of slime mould Physarum polycephalum has recently received signi¯cant attention for i...
© 2015, Korean Society of Medical and Biological Engineering and Springer. Purpose: The plasmodium o...
The plasmodium of the slime mould Physarum polycephalum has recently received sig-nificant attention...
The manipulation of biological substrates is becoming more popular route toward generating novel com...
The development of devices able to detect and record ion fluxes is a crucial point in order to under...
Slime mould Physarum polycephalum is a single cell visible by the unaided eye. Let the slime mould s...
Easily constructed by investigators with no electronics knowledge, we present an inexpensive and ope...
There is a pressing need to advance our ability to construct three-dimensional (3D) functional bioel...
© 2016, Korean Society of Medical and Biological Engineering and Springer. Purpose: Protoplasmic tub...
© 2015. The slime mould Physarum polycephalum is a large single celled myxomycete; its plasmodium co...
We construct electronic oscillator from acellular slime mould Physarum polycephalum. The slime mould...
In laboratory experiments we demonstrate that protoplasmic tubes of acellular slime mould \emph{Phys...
© 2016 Elsevier B.V. All rights reserved. Physarum polycephalum is a model organism used in the crea...
Includes bibliographical references (pages 132-137).Maintaining Moore's law has become increasingly ...
In laboratory experiments we demonstrate that protoplasmic tubes of acellular slime mould Physarum p...
The plasmodium of slime mould Physarum polycephalum has recently received signi¯cant attention for i...
© 2015, Korean Society of Medical and Biological Engineering and Springer. Purpose: The plasmodium o...
The plasmodium of the slime mould Physarum polycephalum has recently received sig-nificant attention...
The manipulation of biological substrates is becoming more popular route toward generating novel com...
The development of devices able to detect and record ion fluxes is a crucial point in order to under...
Slime mould Physarum polycephalum is a single cell visible by the unaided eye. Let the slime mould s...
Easily constructed by investigators with no electronics knowledge, we present an inexpensive and ope...
There is a pressing need to advance our ability to construct three-dimensional (3D) functional bioel...