Closed-loop functional optogenetic stimulation
Author(s)
Srinivasan, Shriya S; Maimon, Benjamin E; Diaz, Maurizio; Song, Hyungeun; Herr, Hugh M
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© 2018, The Author(s). Optogenetics has been used to orchestrate temporal- and tissue-specific control of neural tissues and offers a wealth of unique advantages for neuromuscular control. Here, we establish a closed-loop functional optogenetic stimulation (CL-FOS) system to control ankle joint position in murine models. Using the measurement of either joint angle or fascicle length as a feedback signal, we compare the controllability of CL-FOS to closed-loop functional electrical stimulation (CL-FES) and demonstrate significantly greater accuracy, lower rise times and lower overshoot percentages. We demonstrate orderly recruitment of motor units and reduced fatigue when performing cyclical movements with CL-FOS compared with CL-FES. We develop and investigate a 3-phase, photo-kinetic model to elucidate the underlying mechanisms for temporal variations in optogenetically activated neuromusculature during closed-loop control experiments. Methods and insights from this study lay the groundwork for the development of closed-loop optogenetic neuromuscular stimulation therapies and devices for peripheral limb control.
Date issued
2018Department
Massachusetts Institute of Technology. Media Laboratory; Massachusetts Institute of Technology. Center for Extreme Bionics; Harvard University--MIT Division of Health Sciences and Technology; Massachusetts Institute of Technology. Department of Electrical Engineering and Computer ScienceJournal
Nature Communications
Publisher
Springer Science and Business Media LLC
Citation
Srinivasan, Shriya S., Benjamin E. Maimon, Maurizio Diaz, Hyungeun Song, and Hugh M. Herr. “Closed-Loop Functional Optogenetic Stimulation.” Nature Communications 9, no. 1 (December 2018). doi:10.1038/s41467-018-07721-w.
Version: Final published version
ISSN
2041-1723
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