automatic training of rat cyborgs for navigation

Clicks: 169
ID: 247265
2016
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Ranked #52 of 77 articles by views in Organic Chemistry Frontiers

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Abstract
A rat cyborg system refers to a biological rat implanted with microelectrodes in its brain, via which the outer electrical stimuli can be delivered into the brain in vivo to control its behaviors. Rat cyborgs have various applications in emergency, such as search and rescue in disasters. Prior to a rat cyborg becoming controllable, a lot of effort is required to train it to adapt to the electrical stimuli. In this paper, we build a vision-based automatic training system for rat cyborgs to replace the time-consuming manual training procedure. A hierarchical framework is proposed to facilitate the colearning between rats and machines. In the framework, the behavioral states of a rat cyborg are visually sensed by a camera, a parameterized state machine is employed to model the training action transitions triggered by rat’s behavioral states, and an adaptive adjustment policy is developed to adaptively adjust the stimulation intensity. The experimental results of three rat cyborgs prove the effectiveness of our system. To the best of our knowledge, this study is the first to tackle automatic training of animal cyborgs.
Reference Key
yu2016computationalautomatic Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Yipeng Yu;Zhaohui Wu;Kedi Xu;Yongyue Gong;Nenggan Zheng;Xiaoxiang Zheng;Gang Pan
Journal Organic Chemistry Frontiers
Year 2016
DOI
10.1155/2016/6459251
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