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A wearable platform for closed-loop stimulation and recording of single-neuron and local field potential activity in freely moving humans.

Publication ,  Journal Article
Topalovic, U; Barclay, S; Ling, C; Alzuhair, A; Yu, W; Hokhikyan, V; Chandrakumar, H; Rozgic, D; Jiang, W; Basir-Kazeruni, S; Maoz, SL ...
Published in: Nat Neurosci
March 2023

Advances in technologies that can record and stimulate deep brain activity in humans have led to impactful discoveries within the field of neuroscience and contributed to the development of novel therapies for neurological and psychiatric disorders. Further progress, however, has been hindered by device limitations in that recording of single-neuron activity during freely moving behaviors in humans has not been possible. Additionally, implantable neurostimulation devices, currently approved for human use, have limited stimulation programmability and restricted full-duplex bidirectional capability. In this study, we developed a wearable bidirectional closed-loop neuromodulation system (Neuro-stack) and used it to record single-neuron and local field potential activity during stationary and ambulatory behavior in humans. Together with a highly flexible and customizable stimulation capability, the Neuro-stack provides an opportunity to investigate the neurophysiological basis of disease, develop improved responsive neuromodulation therapies, explore brain function during naturalistic behaviors in humans and, consequently, bridge decades of neuroscientific findings across species.

Duke Scholars

Published In

Nat Neurosci

DOI

EISSN

1546-1726

Publication Date

March 2023

Volume

26

Issue

3

Start / End Page

517 / 527

Location

United States

Related Subject Headings

  • Wearable Electronic Devices
  • Neurology & Neurosurgery
  • Mental Disorders
  • Humans
  • Deep Brain Stimulation
  • 5202 Biological psychology
  • 3209 Neurosciences
  • 1702 Cognitive Sciences
  • 1701 Psychology
  • 1109 Neurosciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Topalovic, U., Barclay, S., Ling, C., Alzuhair, A., Yu, W., Hokhikyan, V., … Markovic, D. (2023). A wearable platform for closed-loop stimulation and recording of single-neuron and local field potential activity in freely moving humans. Nat Neurosci, 26(3), 517–527. https://doi.org/10.1038/s41593-023-01260-4
Topalovic, Uros, Sam Barclay, Chenkai Ling, Ahmed Alzuhair, Wenhao Yu, Vahagn Hokhikyan, Hariprasad Chandrakumar, et al. “A wearable platform for closed-loop stimulation and recording of single-neuron and local field potential activity in freely moving humans.Nat Neurosci 26, no. 3 (March 2023): 517–27. https://doi.org/10.1038/s41593-023-01260-4.
Topalovic U, Barclay S, Ling C, Alzuhair A, Yu W, Hokhikyan V, et al. A wearable platform for closed-loop stimulation and recording of single-neuron and local field potential activity in freely moving humans. Nat Neurosci. 2023 Mar;26(3):517–27.
Topalovic, Uros, et al. “A wearable platform for closed-loop stimulation and recording of single-neuron and local field potential activity in freely moving humans.Nat Neurosci, vol. 26, no. 3, Mar. 2023, pp. 517–27. Pubmed, doi:10.1038/s41593-023-01260-4.
Topalovic U, Barclay S, Ling C, Alzuhair A, Yu W, Hokhikyan V, Chandrakumar H, Rozgic D, Jiang W, Basir-Kazeruni S, Maoz SL, Inman CS, Stangl M, Gill J, Bari A, Fallah A, Eliashiv D, Pouratian N, Fried I, Suthana N, Markovic D. A wearable platform for closed-loop stimulation and recording of single-neuron and local field potential activity in freely moving humans. Nat Neurosci. 2023 Mar;26(3):517–527.

Published In

Nat Neurosci

DOI

EISSN

1546-1726

Publication Date

March 2023

Volume

26

Issue

3

Start / End Page

517 / 527

Location

United States

Related Subject Headings

  • Wearable Electronic Devices
  • Neurology & Neurosurgery
  • Mental Disorders
  • Humans
  • Deep Brain Stimulation
  • 5202 Biological psychology
  • 3209 Neurosciences
  • 1702 Cognitive Sciences
  • 1701 Psychology
  • 1109 Neurosciences