AIMC Topic: Biomimetic Materials

Clear Filters Showing 211 to 218 of 218 articles

Memristive synapses with high reproducibility for flexible neuromorphic networks based on biological nanocomposites.

Nanoscale
Memristive synapses from biomaterials are promising for building flexible and implantable artificial neuromorphic systems due to their remarkable mechanical and biological properties. However, these biological devices have relatively poor memristive ...

Texture Discrimination using a Soft Biomimetic Finger for Prosthetic Applications.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
Soft robotic fingers have shown great potential for use in prostheses due to their inherent compliant, light, and dexterous nature. Recent advancements in sensor technology for soft robotic systems showcase their ability to perceive and respond to st...

Three-dimensional direct laser writing of biomimetic neuron structures.

Optics express
Building biomimetic neuron structures that emulate the topological features of biological neural networks at multiple scales has been an active area in neuron cell culturing, neuron-chip interface and computer chip design. However, due to the fact th...

Multi-responsive actuators based on a graphene oxide composite: intelligent robot and bioinspired applications.

Nanoscale
Carbon-based electrothermal or photothermal actuators have attracted intense attention recently. They can directly convert electrical or light energy into thermal energy and exhibit obvious deformations. However, if the actuation mechanism is only li...

Mobile microrobots for bioengineering applications.

Lab on a chip
Untethered micron-scale mobile robots can navigate and non-invasively perform specific tasks inside unprecedented and hard-to-reach inner human body sites and inside enclosed organ-on-a-chip microfluidic devices with live cells. They are aimed to ope...

Framework for single input single output nanonetwork-based realistic molecular communication.

IET nanobiotechnology
Mobile ad hoc molecular nanonetwork (MAMNET) is a new paradigm for the realisation of future nanonetworks. In MAMNET, transmission of nanoscale information from nanomachine to infostation is based on collision and adhesion. In this study, the authors...

Materials science. Materials that couple sensing, actuation, computation, and communication.

Science (New York, N.Y.)
Tightly integrating sensing, actuation, and computation into composites could enable a new generation of truly smart material systems that can change their appearance and shape autonomously. Applications for such materials include airfoils that chang...