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Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics

Optogenetics allows rapid, temporally specific control of neuronal activity via targeted expression and activation of light-sensitive proteins. Implementation typically requires remote light sources and fiber-optic delivery schemes that impose significant physical constraints on natural behaviors. I...

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Autores principales: Park, Sung Il, Brenner, Daniel S., Shin, Gunchul, Morgan, Clinton D., Copits, Bryan A., Chung, Ha Uk, Pullen, Melanie Y., Noh, Kyung Nim, Davidson, Steve, Oh, Soong Ju, Yoon, Jangyeol, Jang, Kyung-In, Samineni, Vijay K., Norman, Megan, Grajales-Reyes, Jose G., Vogt, Sherri K, Sundaram, Saranya S., Wilson, Kellie M., Ha, Jeong Sook, Xu, Renxiao, Pan, Taisong, Kim, Tae-il, Huang, Yonggang, Montana, Michael C., Golden, Judith P., Bruchas, Michael R., Gereau, Robert W., Rogers, John A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4880021/
https://www.ncbi.nlm.nih.gov/pubmed/26551059
http://dx.doi.org/10.1038/nbt.3415
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author Park, Sung Il
Brenner, Daniel S.
Shin, Gunchul
Morgan, Clinton D.
Copits, Bryan A.
Chung, Ha Uk
Pullen, Melanie Y.
Noh, Kyung Nim
Davidson, Steve
Oh, Soong Ju
Yoon, Jangyeol
Jang, Kyung-In
Samineni, Vijay K.
Norman, Megan
Grajales-Reyes, Jose G.
Vogt, Sherri K
Sundaram, Saranya S.
Wilson, Kellie M.
Ha, Jeong Sook
Xu, Renxiao
Pan, Taisong
Kim, Tae-il
Huang, Yonggang
Montana, Michael C.
Golden, Judith P.
Bruchas, Michael R.
Gereau, Robert W.
Rogers, John A.
author_facet Park, Sung Il
Brenner, Daniel S.
Shin, Gunchul
Morgan, Clinton D.
Copits, Bryan A.
Chung, Ha Uk
Pullen, Melanie Y.
Noh, Kyung Nim
Davidson, Steve
Oh, Soong Ju
Yoon, Jangyeol
Jang, Kyung-In
Samineni, Vijay K.
Norman, Megan
Grajales-Reyes, Jose G.
Vogt, Sherri K
Sundaram, Saranya S.
Wilson, Kellie M.
Ha, Jeong Sook
Xu, Renxiao
Pan, Taisong
Kim, Tae-il
Huang, Yonggang
Montana, Michael C.
Golden, Judith P.
Bruchas, Michael R.
Gereau, Robert W.
Rogers, John A.
author_sort Park, Sung Il
collection PubMed
description Optogenetics allows rapid, temporally specific control of neuronal activity via targeted expression and activation of light-sensitive proteins. Implementation typically requires remote light sources and fiber-optic delivery schemes that impose significant physical constraints on natural behaviors. In this report we bypass these limitations using novel technologies that combine thin, mechanically soft neural interfaces with fully implantable, stretchable wireless radio power and control systems. The resulting devices achieve optogenetic modulation of the spinal cord and peripheral nervous system. This is demonstrated with two form factors; stretchable film appliques that interface directly with peripheral nerves, and flexible filaments that insert into the narrow confines of the spinal epidural space. These soft, thin devices are minimally invasive, and histological tests suggest they can be used in chronic studies. We demonstrate the power of this technology by modulating peripheral and spinal pain circuitry, providing evidence for the potential widespread use of these devices in research and future clinical applications of optogenetics outside the brain.
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spelling pubmed-48800212016-06-01 Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics Park, Sung Il Brenner, Daniel S. Shin, Gunchul Morgan, Clinton D. Copits, Bryan A. Chung, Ha Uk Pullen, Melanie Y. Noh, Kyung Nim Davidson, Steve Oh, Soong Ju Yoon, Jangyeol Jang, Kyung-In Samineni, Vijay K. Norman, Megan Grajales-Reyes, Jose G. Vogt, Sherri K Sundaram, Saranya S. Wilson, Kellie M. Ha, Jeong Sook Xu, Renxiao Pan, Taisong Kim, Tae-il Huang, Yonggang Montana, Michael C. Golden, Judith P. Bruchas, Michael R. Gereau, Robert W. Rogers, John A. Nat Biotechnol Article Optogenetics allows rapid, temporally specific control of neuronal activity via targeted expression and activation of light-sensitive proteins. Implementation typically requires remote light sources and fiber-optic delivery schemes that impose significant physical constraints on natural behaviors. In this report we bypass these limitations using novel technologies that combine thin, mechanically soft neural interfaces with fully implantable, stretchable wireless radio power and control systems. The resulting devices achieve optogenetic modulation of the spinal cord and peripheral nervous system. This is demonstrated with two form factors; stretchable film appliques that interface directly with peripheral nerves, and flexible filaments that insert into the narrow confines of the spinal epidural space. These soft, thin devices are minimally invasive, and histological tests suggest they can be used in chronic studies. We demonstrate the power of this technology by modulating peripheral and spinal pain circuitry, providing evidence for the potential widespread use of these devices in research and future clinical applications of optogenetics outside the brain. 2015-11-09 2015-12 /pmc/articles/PMC4880021/ /pubmed/26551059 http://dx.doi.org/10.1038/nbt.3415 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Park, Sung Il
Brenner, Daniel S.
Shin, Gunchul
Morgan, Clinton D.
Copits, Bryan A.
Chung, Ha Uk
Pullen, Melanie Y.
Noh, Kyung Nim
Davidson, Steve
Oh, Soong Ju
Yoon, Jangyeol
Jang, Kyung-In
Samineni, Vijay K.
Norman, Megan
Grajales-Reyes, Jose G.
Vogt, Sherri K
Sundaram, Saranya S.
Wilson, Kellie M.
Ha, Jeong Sook
Xu, Renxiao
Pan, Taisong
Kim, Tae-il
Huang, Yonggang
Montana, Michael C.
Golden, Judith P.
Bruchas, Michael R.
Gereau, Robert W.
Rogers, John A.
Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
title Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
title_full Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
title_fullStr Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
title_full_unstemmed Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
title_short Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
title_sort soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4880021/
https://www.ncbi.nlm.nih.gov/pubmed/26551059
http://dx.doi.org/10.1038/nbt.3415
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