Spatial preference behavior of robo-pigeons induced by electrical stimulus targeting fear nuclei

Author:

Ping Yanna12,Peng Huanhuan12,Zhu Yongjun13,Feng Yuhao13,Zhang Yexin13,Qi Xiaomin12,Liu Xinyu12

Affiliation:

1. School of Intelligent Manufacturing, Huanghuai University, , China

2. Henan Engineering Research Center of Intelligent Human-Machine Interaction Equipment, Huanghuai University, , China

3. School of Electronic and Information Engineering, Zhongyuan University of Technology, , China

Abstract

BACKGROUND: Numerous studies have confirmed that stimulating the mid-brain motor nuclei can regulate movement forcibly for robo-pigeons, but research on behavior modulation using non-motor nuclei is scarce. OBJECTIVE: In this study, we constructed a spatial preference behavior by stimulating the stratum griseum periventriculare (SGP), a nucleus correlated with fear and escape, for robo-pigeons. METHODS: The study was carried out in a square-enclosed experimental field, with a designated box serving as the ‘safe’ area for the robo-pigeons. If the robo-pigeon exits this area, the SGP will be stimulated. After a brief training period, the robo-pigeons will have a clear spatial preference for the box. RESULTS: The result from five pigeons has shown that, after simple training, the animals develop a spatial preference for the box. They can quickly return to the box in any situation when the SGP is stimulated, with a success rate exceeding 80% (89.0 ± 6.5%). Moreover, this behavior is highly stable and remains consistent, unaffected by changes in the location of the box or the interference box. CONCLUSION: The results prove that using the electrical stimulus could enable animals to accomplish more complex tasks. It may offer a novel approach to regulating pigeon behavior and further advance the study of cyborg animals.

Publisher

IOS Press

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