Microbiorobotics: Biologically Inspired Microscale Robotic Systems: Micro and Nano Technologies
Editat de Minjun Kim, Anak Agung Juliusen Limba Engleză Paperback – 19 aug 2016
- Microrobotics is an area that is acknowledged to have massive potential in applications from medicine to manufacturing. This book introduces an inter-disciplinary readership to the toolkit that micro-organisms offer to micro-engineering
- The design of robots, sensors and actuators faces a range of techology challenges at the micro-scale. This book shows how biological techniques and materials can be used to meet these challenges
- World-class multi-disciplanry editors and contributors leverage insights from engineering, mathematical modeling and the life sciences – creating a novel toolkit for microrobotics
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Specificații
ISBN-13: 9780128103340
ISBN-10: 0128103345
Pagini: 328
Dimensiuni: 191 x 235 mm
Greutate: 0.57 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 0128103345
Pagini: 328
Dimensiuni: 191 x 235 mm
Greutate: 0.57 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Public țintă
MEMS (Micro Electro-Mechanical Systems) engineers, Mechanical, biomedical and electrical engineers in corporate R&D groups and academia; robotics professionals; graduate students in disciplines listed.Cuprins
Introduction
B: Fundamentals of Cellular Mechanics
B.1: Fluid-structure Interactions and Flagellar Actuation
B.2: Mathematical Models for Swimming Bacteria
B.3: Tetrahymena pyriformis in Motion
C: Theoretical Microbiorobotics
C.1: Piezoelectric Cellular Actuators with Nested Rhombus Strain Amplification
C.2: Stochastic Models and Control of Bacterial Bioactuators and Biomicrorobots
C.3: Stochastic Model and Control in Microbiorobotics
D: Experimental Microbiorobotics
D.1: Bacteria-Inspired Microrobots
D.2: Magnetotactic Bacteria for Microrobotics
D.3: Flexible magnetic microswimmers
D.4: Bacteria-Powered Microrobots
D.5: Control of Tetrahymena pyriformis as a Microrobot
E: Perspectives and Outlook
B: Fundamentals of Cellular Mechanics
B.1: Fluid-structure Interactions and Flagellar Actuation
B.2: Mathematical Models for Swimming Bacteria
B.3: Tetrahymena pyriformis in Motion
C: Theoretical Microbiorobotics
C.1: Piezoelectric Cellular Actuators with Nested Rhombus Strain Amplification
C.2: Stochastic Models and Control of Bacterial Bioactuators and Biomicrorobots
C.3: Stochastic Model and Control in Microbiorobotics
D: Experimental Microbiorobotics
D.1: Bacteria-Inspired Microrobots
D.2: Magnetotactic Bacteria for Microrobotics
D.3: Flexible magnetic microswimmers
D.4: Bacteria-Powered Microrobots
D.5: Control of Tetrahymena pyriformis as a Microrobot
E: Perspectives and Outlook