The efficient motility of invertebrates helps them survive under evolutionary pressures. Reconstructing the locomotion of invertebrates and decoupling the influence of individual basic motion are crucial for understanding their underlying mechanisms, which, however, generally remain a challenge due to the complexity of locomotion gaits. Herein, a magnetic soft robot to reproduce midge larva's key natural swimming gaits is developed, and the coupling effect between body curling and rotation on motility is investigated. Through the authors’ systematically decoupling studies using programmed magnetic field inputs, the soft robot (named LarvaBot) experiences various coupled gaits, including biomimetic side-to-side flexures, and unveils that the...
Bacteria can exploit mechanics to display remarkable plasticity in response to locally changing phys...
A novel approach for the design of magnetically-propelled microrobots is proposed as an effective so...
Nature provides a wide range of inspiration for building mobile micromachines that can navigate thro...
The efficient motility of invertebrates helps them survive under evolutionary pressures. Reconstruct...
Soft-Millirobots have many applications in the biomedical field which is why they are commonly resea...
There have been few studies on the use of soft-bodied small-scale robots as there are many limitatio...
Miniature robots are mobile device that are in the micro to millimetre scale. Untethered miniature r...
Energy-efficient propulsion is a critical design target for robotic swimmers. Although previous stud...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Among the various locomotion strategies of the animal kingdom, the undulation locomotion is of parti...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
A growing body of work aims at designing and testing micron-scale synthetic swim- mers. One method, ...
Untethered small scale robots have many applications in bioengineering fields, and recently we desig...
Magnetic soft robots have the combined advantages of contactless actuation, requiring no on-board po...
Untethered small-scale robots have many applications in bioengineering fields, and recently we desig...
Bacteria can exploit mechanics to display remarkable plasticity in response to locally changing phys...
A novel approach for the design of magnetically-propelled microrobots is proposed as an effective so...
Nature provides a wide range of inspiration for building mobile micromachines that can navigate thro...
The efficient motility of invertebrates helps them survive under evolutionary pressures. Reconstruct...
Soft-Millirobots have many applications in the biomedical field which is why they are commonly resea...
There have been few studies on the use of soft-bodied small-scale robots as there are many limitatio...
Miniature robots are mobile device that are in the micro to millimetre scale. Untethered miniature r...
Energy-efficient propulsion is a critical design target for robotic swimmers. Although previous stud...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Among the various locomotion strategies of the animal kingdom, the undulation locomotion is of parti...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
A growing body of work aims at designing and testing micron-scale synthetic swim- mers. One method, ...
Untethered small scale robots have many applications in bioengineering fields, and recently we desig...
Magnetic soft robots have the combined advantages of contactless actuation, requiring no on-board po...
Untethered small-scale robots have many applications in bioengineering fields, and recently we desig...
Bacteria can exploit mechanics to display remarkable plasticity in response to locally changing phys...
A novel approach for the design of magnetically-propelled microrobots is proposed as an effective so...
Nature provides a wide range of inspiration for building mobile micromachines that can navigate thro...