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Rapidly adapting mechanoreceptor-inspired transducer with all-optofluidic realization of self-digitization and pulse code modulation

机译:快速调整机械深度激励传感器,具有自我数字化和脉冲代码调制的全邻接流体实现

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We present a new mass-flow transducer generating pulse format outputs that are all-optofluidically encoded with information on the strength and origin of the stimulation. The transducer can also be configured to respond only transitional stimuli. These features closely mimic the rate coding, action potential labeling, and rapid adaptation of biological mechanoreceptors. Through transducer-level realization of these features, we could enable sharing of a single channel between multiple transducers and mitigate concerns on the channel noise. Experimentally, the pulse-to-pulse interval of the transducer's optical pulse train became 1.7 times shorter in response to a 2.2-fold increase in the mass-flow rate.
机译:我们提出了一种新的质量流传感器,产生脉冲格式输出,这些输出是全替代的流过刺激的力量和原点的信息。换能器还可以配置成仅响应过渡刺激。这些特征密切模仿了生物机制的速率编码,动作潜在标签和快速调整。通过传感器级实现这些特征,我们可以在多个传感器之间共享单个通道并减轻信道噪声的问题。实验地,换能器光脉冲串的脉冲到脉冲间隔响应于质量流量的增加2.2倍而变短1.7倍。

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