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Pre-clinical development of a wireless neural interface system for osseointegrated prosthetic control in sheep.

Publication ,  Journal Article
Sears, L; Deshmukh, A; Mereddy, R; Go, V; Nemke, B; Lu, Y; Zeng, W; Suminski, AJ; Markel, M; Bachus, KN; Morizio, J; Poore, SO; Dingle, AM
Published in: Frontiers in neuroscience
January 2025

The Osseointegrated Neural Interface (ONI) is an innovative peripheral nerve interface design that houses a transected nerve and coupled electrical components within the medullary canal of long bones for eventual prosthetic control. Before the ONI can enter clinical testing, it must demonstrate longitudinal durability in an animal model analogous to the human anatomy. Adult sheep, possessing comparable weight and bone structure to adult humans, serve as the standard model for osseointegration research, solidifying them as the ideal animal for the development of an ONI. In this paper, we introduce an Ovine ONI model with a wireless, dual capsule implantable peripheral nerve interface capable of remote stimulation and recording of our subject's nervous system 8 weeks post-implantation. This study investigates the interface design, surgical methodology, radiological evidence, and electrophysiological data that substantiate the osseointegrated approach to interfacing with the peripheral nervous system. We also explore the functional specifications, 3D printing, and coating processing steps for the capsule. Furthermore, our exploration includes the post-processing data analysis methodology used to validate our interface. This methodological study not only contributes crucial insights but also establishes the essential foundation for future goals of the ONI project. Emphasizing real-world applicability through closed-loop interfacing and enhanced efficacy of recording devices.

Duke Scholars

Published In

Frontiers in neuroscience

DOI

EISSN

1662-453X

ISSN

1662-4548

Publication Date

January 2025

Volume

19

Start / End Page

1681136

Related Subject Headings

  • 5202 Biological psychology
  • 3209 Neurosciences
  • 1702 Cognitive Sciences
  • 1701 Psychology
  • 1109 Neurosciences
 

Citation

APA
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ICMJE
MLA
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Sears, L., Deshmukh, A., Mereddy, R., Go, V., Nemke, B., Lu, Y., … Dingle, A. M. (2025). Pre-clinical development of a wireless neural interface system for osseointegrated prosthetic control in sheep. Frontiers in Neuroscience, 19, 1681136. https://doi.org/10.3389/fnins.2025.1681136
Sears, Lucas, Ashlesha Deshmukh, Rishith Mereddy, Vinson Go, Brett Nemke, Yan Lu, Weifeng Zeng, et al. “Pre-clinical development of a wireless neural interface system for osseointegrated prosthetic control in sheep.Frontiers in Neuroscience 19 (January 2025): 1681136. https://doi.org/10.3389/fnins.2025.1681136.
Sears L, Deshmukh A, Mereddy R, Go V, Nemke B, Lu Y, et al. Pre-clinical development of a wireless neural interface system for osseointegrated prosthetic control in sheep. Frontiers in neuroscience. 2025 Jan;19:1681136.
Sears, Lucas, et al. “Pre-clinical development of a wireless neural interface system for osseointegrated prosthetic control in sheep.Frontiers in Neuroscience, vol. 19, Jan. 2025, p. 1681136. Epmc, doi:10.3389/fnins.2025.1681136.
Sears L, Deshmukh A, Mereddy R, Go V, Nemke B, Lu Y, Zeng W, Suminski AJ, Markel M, Bachus KN, Morizio J, Poore SO, Dingle AM. Pre-clinical development of a wireless neural interface system for osseointegrated prosthetic control in sheep. Frontiers in neuroscience. 2025 Jan;19:1681136.

Published In

Frontiers in neuroscience

DOI

EISSN

1662-453X

ISSN

1662-4548

Publication Date

January 2025

Volume

19

Start / End Page

1681136

Related Subject Headings

  • 5202 Biological psychology
  • 3209 Neurosciences
  • 1702 Cognitive Sciences
  • 1701 Psychology
  • 1109 Neurosciences