Biologically Inspired Robotics
Herausgeber: Liu, Yunhui; Sun, Dong
Biologically Inspired Robotics
Herausgeber: Liu, Yunhui; Sun, Dong
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This reference contains cutting-edge material-considerably expanded and with additional analysis-from the 2009 IEEE International Conference on Robotics and Biomimetics.
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This reference contains cutting-edge material-considerably expanded and with additional analysis-from the 2009 IEEE International Conference on Robotics and Biomimetics.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- Seitenzahl: 342
- Erscheinungstermin: 19. September 2019
- Englisch
- Abmessung: 234mm x 156mm x 18mm
- Gewicht: 521g
- ISBN-13: 9780367381783
- ISBN-10: 0367381788
- Artikelnr.: 57815572
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: CRC Press
- Seitenzahl: 342
- Erscheinungstermin: 19. September 2019
- Englisch
- Abmessung: 234mm x 156mm x 18mm
- Gewicht: 521g
- ISBN-13: 9780367381783
- ISBN-10: 0367381788
- Artikelnr.: 57815572
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Yunhui Liu, Dong Sun
Introduction to Biologically Inspired Robotics. CPG-Based Control of
Serpentine Locomotion of a Snake-Like Robot. Analysis and Design of a
Bionic Fitness Cycle. Human-Inspired Hyperdynamic Manipulation. A School of
Robotic Fish for Pollution Detection in Port. Development of a Low-Noise
Bio-Inspired Humanoid Robot Neck. Automatic Single-Cell Transfer Module.
Biomechanical Characterization of Human Red Blood Cells with Optical
Tweezers. Nanorobotic Manipulation for a Single Biological Cell.
Measurement of Brain Activity Using Optical and Electrical Methods. Bowel
Polyp Detection in Capsule Endoscopy Images with Color and Shape Features.
Classification of Hand Motion Using Surface EMG Signals. Multifunctional
Actuators Utilizing Magnetorheological Fluids for Assistive Knee Braces.
Mathematical Modeling of Brain Circuitry during Cerebellar Movement
Control. Development of Hand Rehabilitation System Using Wire-Driven Link
Mechanism for Paralysis Patients. A Test Environment for Studying the
Human-Likeness of Robotic Eye Movements. Index.
Serpentine Locomotion of a Snake-Like Robot. Analysis and Design of a
Bionic Fitness Cycle. Human-Inspired Hyperdynamic Manipulation. A School of
Robotic Fish for Pollution Detection in Port. Development of a Low-Noise
Bio-Inspired Humanoid Robot Neck. Automatic Single-Cell Transfer Module.
Biomechanical Characterization of Human Red Blood Cells with Optical
Tweezers. Nanorobotic Manipulation for a Single Biological Cell.
Measurement of Brain Activity Using Optical and Electrical Methods. Bowel
Polyp Detection in Capsule Endoscopy Images with Color and Shape Features.
Classification of Hand Motion Using Surface EMG Signals. Multifunctional
Actuators Utilizing Magnetorheological Fluids for Assistive Knee Braces.
Mathematical Modeling of Brain Circuitry during Cerebellar Movement
Control. Development of Hand Rehabilitation System Using Wire-Driven Link
Mechanism for Paralysis Patients. A Test Environment for Studying the
Human-Likeness of Robotic Eye Movements. Index.
Introduction to Biologically Inspired Robotics. CPG-Based Control of
Serpentine Locomotion of a Snake-Like Robot. Analysis and Design of a
Bionic Fitness Cycle. Human-Inspired Hyperdynamic Manipulation. A School of
Robotic Fish for Pollution Detection in Port. Development of a Low-Noise
Bio-Inspired Humanoid Robot Neck. Automatic Single-Cell Transfer Module.
Biomechanical Characterization of Human Red Blood Cells with Optical
Tweezers. Nanorobotic Manipulation for a Single Biological Cell.
Measurement of Brain Activity Using Optical and Electrical Methods. Bowel
Polyp Detection in Capsule Endoscopy Images with Color and Shape Features.
Classification of Hand Motion Using Surface EMG Signals. Multifunctional
Actuators Utilizing Magnetorheological Fluids for Assistive Knee Braces.
Mathematical Modeling of Brain Circuitry during Cerebellar Movement
Control. Development of Hand Rehabilitation System Using Wire-Driven Link
Mechanism for Paralysis Patients. A Test Environment for Studying the
Human-Likeness of Robotic Eye Movements. Index.
Serpentine Locomotion of a Snake-Like Robot. Analysis and Design of a
Bionic Fitness Cycle. Human-Inspired Hyperdynamic Manipulation. A School of
Robotic Fish for Pollution Detection in Port. Development of a Low-Noise
Bio-Inspired Humanoid Robot Neck. Automatic Single-Cell Transfer Module.
Biomechanical Characterization of Human Red Blood Cells with Optical
Tweezers. Nanorobotic Manipulation for a Single Biological Cell.
Measurement of Brain Activity Using Optical and Electrical Methods. Bowel
Polyp Detection in Capsule Endoscopy Images with Color and Shape Features.
Classification of Hand Motion Using Surface EMG Signals. Multifunctional
Actuators Utilizing Magnetorheological Fluids for Assistive Knee Braces.
Mathematical Modeling of Brain Circuitry during Cerebellar Movement
Control. Development of Hand Rehabilitation System Using Wire-Driven Link
Mechanism for Paralysis Patients. A Test Environment for Studying the
Human-Likeness of Robotic Eye Movements. Index.







