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Electronic dura mater for long-term multimodal neural interfaces

  • Ivan R. Minev
  • , Pavel Musienko
  • , Arthur Hirsch
  • , Quentin Barraud
  • , Nikolaus Wenger
  • , Eduardo Martin Moraud
  • , Jérôme Gandar
  • , Marco Capogrosso
  • , Tomislav Milekovic
  • , Léonie Asboth
  • , Rafael Fajardo Torres
  • , Nicolas Vachicouras
  • , Qihan Liu
  • , Natalia Pavlova
  • , Simone Duis
  • , Alexandre Larmagnac
  • , Janos Vörös
  • , Silvestro Micera
  • , Zhigang Suo
  • , Grégoire Courtine
  • Stéphanie P. Lacour
  • Swiss Federal Institute of Technology Lausanne
  • Pavlov Institute of Physiology, Russian Academy of Sciences
  • Harvard University
  • Swiss Federal Institute of Technology Zurich
  • Sant'Anna School of Advanced Studies

科研成果: 期刊稿件文章同行评审

960 引用 (Scopus)

摘要

The mechanical mismatch between soft neural tissues and stiff neural implants hinders the long-term performance of implantable neuroprostheses. Here, we designed and fabricated soft neural implants with the shape and elasticity of dura mater, the protective membrane of the brain and spinal cord. The electronic dura mater, which we call e-dura, embeds interconnects, electrodes, and chemotrodes that sustain millions of mechanical stretch cycles, electrical stimulation pulses, and chemical injections. These integrated modalities enable multiple neuroprosthetic applications. The soft implants extracted cortical states in freely behaving animals for brain-machine interface and delivered electrochemical spinal neuromodulation that restored locomotion after paralyzing spinal cord injury.

源语言英语
页(从-至)159-163
页数5
期刊Science
347
6218
DOI
出版状态已出版 - 9 1月 2015
已对外发布

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