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Biomimetic and Biohybrid Systems

Overview of attention for book
Cover of 'Biomimetic and Biohybrid Systems'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 A Conserved Biomimetic Control Architecture for Walking, Swimming and Flying Robots
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    Chapter 2 A Digital Neuromorphic Implementation of Cerebellar Associative Learning
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    Chapter 3 Simulating an Elastic Bipedal Robot Based on Musculoskeletal Modeling
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    Chapter 4 A Soft-Body Controller with Ubiquitous Sensor Feedback
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    Chapter 5 Exploration of Objects by an Underwater Robot with Electric Sense
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    Chapter 6 Neuro-inspired Navigation Strategies Shifting for Robots: Integration of a Multiple Landmark Taxon Strategy
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    Chapter 7 Bioinspired Tunable Lens Driven by Electroactive Polymer Artificial Muscles
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    Chapter 8 A Pilot Study on Saccadic Adaptation Experiments with Robots
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    Chapter 9 Jumping Robot with a Tunable Suspension Based on Artificial Muscles
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    Chapter 10 Static versus Adaptive Gain Control Strategy for Visuo-motor Stabilization
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    Chapter 11 Learning and Retrieval of Memory Elements in a Navigation Task
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    Chapter 12 Imitation of the Honeybee Dance Communication System by Means of a Biomimetic Robot
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    Chapter 13 A Framework for Mobile Robot Navigation Using a Temporal Population Code
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    Chapter 14 Generalization of Integrator Models to Foraging: A Robot Study Using the DAC9 Model
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    Chapter 15 The Emergence of Action Sequences from Spatial Attention: Insight from Rodent-Like Robots
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    Chapter 16 How Past Experience, Imitation and Practice Can Be Combined to Swiftly Learn to Use Novel “Tools”: Insights from Skill Learning Experiments with Baby Humanoids
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    Chapter 17 Towards Contextual Action Recognition and Target Localization with Active Allocation of Attention
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    Chapter 18 Robot Localization Implemented with Enzymatic Numerical P Systems
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    Chapter 19 How Can Embodiment Simplify the Problem of View-Based Navigation?
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    Chapter 20 The Dynamical Modeling of Cognitive Robot-Human Centered Interaction
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    Chapter 21 Internal Drive Regulation of Sensorimotor Reflexes in the Control of a Catering Assistant Autonomous Robot
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    Chapter 22 Incremental Learning in a 14 DOF Simulated iCub Robot: Modeling Infant Reach/Grasp Development
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    Chapter 23 A True-Slime-Mold-Inspired Fluid-Filled Robot Exhibiting Versatile Behavior
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    Chapter 24 CyberRat Probes: High-Resolution Biohybrid Devices for Probing the Brain
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    Chapter 25 Crayfish Inspired Representation of Space via Haptic Memory in a Simulated Robotic Agent
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    Chapter 26 Parallel Implementation of Instinctual and Learning Neural Mechanisms in a Simulated Mobile Robot
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    Chapter 27 Distributed Control of Complex Arm Movements
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    Chapter 28 Cerebellar Memory Transfer and Partial Savings during Motor Learning: A Robotic Study
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    Chapter 29 A Biomimetic Approach to an Autonomous Unmanned Air Vehicle
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    Chapter 30 Towards a Framework for Tactile Perception in Social Robotics
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    Chapter 31 A Locomotion Strategy for an Octopus-Bioinspired Robot
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    Chapter 32 Design and Modeling of a New Biomimetic Robot Frog with the Ability of Jumping Altitude Regulation
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    Chapter 33 Sensation of a “Noisy” Whisker Vibration in Rats
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    Chapter 34 Integrating Molecular Computation and Material Production in an Artificial Subcellular Matrix
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    Chapter 35 WARMOR: Whegs Adaptation and Reconfiguration of MOdular Robot with Tunable Compliance
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    Chapter 36 Inverse and Direct Model of a Continuum Manipulator Inspired by the Octopus Arm
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    Chapter 37 A Biomimetic, Swimming Soft Robot Inspired by the Octopus Vulgaris
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    Chapter 38 Toward a Fusion Model of Feature and Spatial Tactile Memory in the Crayfish Cherax Destructor
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    Chapter 39 Development of Sensorized Arm Skin for an Octopus Inspired Robot – Part I: Soft Skin Artifacts
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    Chapter 40 Development of Sensorized Arm Skin for an Octopus Inspired Robot – Part II: Tactile Sensors
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    Chapter 41 Development of Sensorized Arm Skin for an Octopus Inspired Robot – Part III: Biomimetic Suckers
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    Chapter 42 Decentralized Control Scheme That Enables Scaffold-Based Peristaltic Locomotion
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    Chapter 43 Autonomous Decentralized Control Mechanism in Resilient Ophiuroid Locomotion
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    Chapter 44 A Multi-agent Platform for Biomimetic Fish
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    Chapter 45 The State-of-the-Art in Biomimetics
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    Chapter 46 Action Development and Integration in an Humanoid iCub Robot
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    Chapter 47 Biomimetic and Biohybrid Systems
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    Chapter 48 Autonomous Viewpoint Control from Saliency
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    Chapter 49 Bio-inspired Design of an Artificial Muscular-Hydrostat Unit for Soft Robotic Systems
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    Chapter 50 Texture Classification through Tactile Sensing
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    Chapter 51 Bio-inspiration for a Miniature Robot Inside the Abdomen
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    Chapter 52 Systematic Construction of Finite State Automata Using VLSI Spiking Neurons
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    Chapter 53 Self-burial Mechanism of Erodium cicutarium and Its Potential Application for Subsurface Exploration
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    Chapter 54 Biomimetic and Biohybrid Systems
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    Chapter 55 Root-Soil Interaction Models for Designing Adaptive Exploring Robotic Systems
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    Chapter 56 A Soft-Bodied Snake-Like Robot That Can Move on Unstructured Terrain
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    Chapter 57 Direct Laser Writing of Neural Tissue Engineering Scaffolds for Biohybrid Devices
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    Chapter 58 Biorobotic Actuator with a Muscle Tissue Driven by a Photostimulation
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    Chapter 59 Shape Optimizing of Tail for Biomimetic Robot Fish
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    Chapter 60 Intuitive Navigation of Snake-Like Robot with Autonomous Decentralized Control
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    Chapter 61 Design of Adhesion Device Inspired by Octopus Sucker
Overall attention for this book and its chapters
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About this Attention Score

  • In the top 25% of all research outputs scored by Altmetric
  • High Attention Score compared to outputs of the same age (90th percentile)
  • High Attention Score compared to outputs of the same age and source (91st percentile)

Mentioned by

news
1 news outlet
twitter
2 X users

Citations

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9 Dimensions

Readers on

mendeley
65 Mendeley
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Title
Biomimetic and Biohybrid Systems
Published by
Lecture notes in computer science, January 2012
DOI 10.1007/978-3-642-31525-1
ISBNs
978-3-64-231524-4, 978-3-64-231525-1
Authors

Tony J. Prescott, Nathan F. Lepora, Anna Mura, Paul F. M. J. Verschure

Editors

Tony J. Prescott, Nathan F. Lepora, Anna Mura, Paul F. M. J. Verschure

X Demographics

X Demographics

The data shown below were collected from the profiles of 2 X users who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 65 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 2 3%
Spain 1 2%
Germany 1 2%
Unknown 61 94%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 15 23%
Researcher 10 15%
Student > Master 10 15%
Student > Bachelor 6 9%
Other 5 8%
Other 10 15%
Unknown 9 14%
Readers by discipline Count As %
Engineering 26 40%
Computer Science 9 14%
Agricultural and Biological Sciences 5 8%
Neuroscience 3 5%
Biochemistry, Genetics and Molecular Biology 2 3%
Other 8 12%
Unknown 12 18%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 11. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 23 June 2016.
All research outputs
#2,965,344
of 23,342,092 outputs
Outputs from Lecture notes in computer science
#624
of 8,160 outputs
Outputs of similar age
#23,981
of 246,818 outputs
Outputs of similar age from Lecture notes in computer science
#41
of 490 outputs
Altmetric has tracked 23,342,092 research outputs across all sources so far. Compared to these this one has done well and is in the 87th percentile: it's in the top 25% of all research outputs ever tracked by Altmetric.
So far Altmetric has tracked 8,160 research outputs from this source. They typically receive a little more attention than average, with a mean Attention Score of 5.1. This one has done particularly well, scoring higher than 92% of its peers.
Older research outputs will score higher simply because they've had more time to accumulate mentions. To account for age we can compare this Altmetric Attention Score to the 246,818 tracked outputs that were published within six weeks on either side of this one in any source. This one has done particularly well, scoring higher than 90% of its contemporaries.
We're also able to compare this research output to 490 others from the same source and published within six weeks on either side of this one. This one has done particularly well, scoring higher than 91% of its contemporaries.