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生物材料。用于长期多模态神经接口的电子硬脑膜。

Biomaterials. Electronic dura mater for long-term multimodal neural interfaces.

机构信息

Bertarelli Foundation Chair in Neuroprosthetic Technology, Laboratory for Soft Bioelectronic Interfaces, Centre for Neuroprosthetics, Institute of Microengineering and Institute of Bioengineering, Ecole Polytechnique Fédérale de Lausanne (EPFL), Switzerland.

International Paraplegic Foundation Chair in Spinal Cord Repair, Centre for Neuroprosthetics and Brain Mind Institute, EPFL, Switzerland. Pavlov Institute of Physiology, St. Petersburg, Russia.

出版信息

Science. 2015 Jan 9;347(6218):159-63. doi: 10.1126/science.1260318.

Abstract

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.

摘要

软性神经组织与硬性神经植入物之间的机械不匹配阻碍了可植入神经假体的长期性能。在这里,我们设计并制造了具有脑膜形状和弹性的软性神经植入物,脑膜是大脑和脊髓的保护膜。我们称之为电子脑膜的软性植入物,嵌入了互联、电极和化学刺激器,这些元件可承受数百万次机械拉伸循环、电刺激脉冲和化学注射。这些集成模式使多种神经假体应用成为可能。这些软性植入物在自由活动的动物中提取皮质状态,用于脑机接口,并提供电化学脊髓神经调节,以恢复瘫痪性脊髓损伤后的运动能力。

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