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Stretchable elastic synaptic transistors for neurologically integrated soft engineering systems

机译:用于神经学集成软工程系统的可拉伸弹性突触晶体管

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摘要

Artificial synaptic devices that can be stretched similar to those appearing in soft-bodied animals, such as earthworms, could be seamlessly integrated onto soft machines toward enabled neurological functions. Here, we report a stretchable synaptic transistor fully based on elastomeric electronic materials, which exhibits a full set of synaptic characteristics. These characteristics retained even the rubbery synapse that is stretched by 50%. By implementing stretchable synaptic transistor with mechanoreceptor in an array format, we developed a deformable sensory skin, where the mechanoreceptors interface the external stimulations and generate presynaptic pulses and then the synaptic transistors render postsynaptic potentials. Furthermore, we demonstrated a soft adaptive neurorobot that is able to perform adaptive locomotion based on robotic memory in a programmable manner upon physically tapping the skin. Our rubbery synaptic transistor and neurologically integrated devices pave the way toward enabled neurological functions in soft machines and other applications.
机译:可以类似于软体动物(如worm)中出现的那样拉伸的人工突触设备可以无缝集成到软机中,以实现神经功能。在这里,我们报告完全基于弹性体电子材料的可拉伸的突触晶体管,它展现出全套的突触特性。这些特性甚至保留了拉伸50%的橡胶突触。通过用机械感受器以阵列形式实现可拉伸的突触晶体管,我们开发了可变形的感觉皮肤,其中机械感受器与外部刺激相接并产生突触前脉冲,然后突触晶体管呈现出突触后电位。此外,我们展示了一种软自适应神经机器人,该机器人能够在敲击皮肤后以可编程方式基于机器人记忆执行自适应运动。我们的橡胶突触晶体管和神经系统集成设备为在软机和其他应用中启用神经功能铺平了道路。

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