Title :
Direct brain stimulation enables training of complex behaviors in freely roaming animals
Author :
Talwar, S.K. ; Xu, S. ; Hawley, E.S. ; Moxon, K.A. ; Chapin, J.K.
Author_Institution :
Dept. of Physiol., SUNY Downstate Med. Center, New York, NY, USA
Abstract :
Operant conditioning procedures typically incorporate a discrimination-learning task in which animals are trained to produce certain actions in response to external cues. The need to physically control the real-world events (cues and rewards) necessary for such learning, however, can often limit the scope of operant conditioning. Here we show that using brain microstimulation to directly deliver both sensory cues and rewards alleviates such constraints, and enables conditioning approaches that help transcend traditional boundaries in animal learning. We applied this "virtual" learning paradigm to develop a behavioral model in which an operator, using a wireless multichannel stimulator, was able to steer distant animals (rats) in the manner of "intelligent" robots. The powerful control exerted over the animals behavior suggests that such models could find use not only in neurophysiological study but also in mobile robotics.
Keywords :
biological techniques; brain; mobile robots; somatosensory phenomena; animal learning; brain stimulation; complex behaviors training; discrimination-learning task; distant animals steering; external cues; freely roaming animals; medial forebrain bundle; neurophysiological study; operant conditioning; rewards; sensory cues; somatosensory cortex; wireless multichannel stimulator; Animal behavior; Brain modeling; Brain stimulation; Electrodes; Microcontrollers; Mobile robots; Physiology; Radiometry; Rats; Roaming;
Conference_Titel :
Engineering in Medicine and Biology, 2002. 24th Annual Conference and the Annual Fall Meeting of the Biomedical Engineering Society EMBS/BMES Conference, 2002. Proceedings of the Second Joint
Print_ISBN :
0-7803-7612-9
DOI :
10.1109/IEMBS.2002.1053175