Literature DB >> 28003406

Interfacing to the brain's motor decisions.

Giovanni Mirabella1,2, Mikhail А Lebedev3.   

Abstract

It has been long known that neural activity, recorded with electrophysiological methods, contains rich information about a subject's motor intentions, sensory experiences, allocation of attention, action planning, and even abstract thoughts. All these functions have been the subject of neurophysiological investigations, with the goal of understanding how neuronal activity represents behavioral parameters, sensory inputs, and cognitive functions. The field of brain-machine interfaces (BMIs) strives for a somewhat different goal: it endeavors to extract information from neural modulations to create a communication link between the brain and external devices. Although many remarkable successes have been already achieved in the BMI field, questions remain regarding the possibility of decoding high-order neural representations, such as decision making. Could BMIs be employed to decode the neural representations of decisions underlying goal-directed actions? In this review we lay out a framework that describes the computations underlying goal-directed actions as a multistep process performed by multiple cortical and subcortical areas. We then discuss how BMIs could connect to different decision-making steps and decode the neural processing ongoing before movements are initiated. Such decision-making BMIs could operate as a system with prediction that offers many advantages, such as shorter reaction time, better error processing, and improved unsupervised learning. To present the current state of the art, we review several recent BMIs incorporating decision-making components.
Copyright © 2017 the American Physiological Society.

Keywords:  action value; behavioral flexibility; brain-computer interface; brain-machine interface; decision making; reward; voluntary motor control

Mesh:

Year:  2016        PMID: 28003406      PMCID: PMC5350270          DOI: 10.1152/jn.00051.2016

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  209 in total

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9.  Restoring cortical control of functional movement in a human with quadriplegia.

Authors:  Chad E Bouton; Ammar Shaikhouni; Nicholas V Annetta; Marcia A Bockbrader; David A Friedenberg; Dylan M Nielson; Gaurav Sharma; Per B Sederberg; Bradley C Glenn; W Jerry Mysiw; Austin G Morgan; Milind Deogaonkar; Ali R Rezai
Journal:  Nature       Date:  2016-04-13       Impact factor: 49.962

10.  Reprogramming movements: extraction of motor intentions from cortical ensemble activity when movement goals change.

Authors:  Peter J Ifft; Mikhail A Lebedev; Miguel A L Nicolelis
Journal:  Front Neuroeng       Date:  2012-07-18
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7.  EMG-Based Continuous and Simultaneous Estimation of Arm Kinematics in Able-Bodied Individuals and Stroke Survivors.

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8.  Commentary: Injecting Instructions into Premotor Cortex.

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  8 in total

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