Department of Microsystems Engineering (IMTEK), University of Freiburg, 79110, Freiburg, Germany.
BrainLinks-BrainTools Center, University of Freiburg, 79110, Freiburg, Germany.
Adv Sci (Weinh). 2023 May;10(14):e2207576. doi: 10.1002/advs.202207576. Epub 2023 Mar 19.
Flexible implantable neurointerfaces show great promise in addressing one of the major challenges of implantable neurotechnology, namely the loss of signal connected to unfavorable probe tissue interaction. The authors here show how multilayer polyimide probes allow high-density intracortical recordings to be combined with a reliable long-term stable tissue interface, thereby progressing toward chronic stability of implantable neurotechnology. The probes could record 10-60 single units over 5 months with a consistent peak-to-peak voltage at dimensions that ensure robust handling and insulation longevity. Probes that remain in intimate contact with the signaling tissue over months to years are a game changer for neuroscience and, importantly, open up for broader clinical translation of systems relying on neurotechnology to interface the human brain.
柔性植入式神经接口在解决植入式神经技术的主要挑战之一方面显示出巨大的潜力,即与不利的探头组织相互作用相关的信号丢失。本文作者展示了多层聚酰亚胺探头如何允许高密度的皮质内记录与可靠的长期稳定的组织界面相结合,从而朝着植入式神经技术的慢性稳定性发展。这些探头可以在 5 个月的时间内记录 10-60 个单个单元,具有一致的峰峰值电压,尺寸确保了稳健的处理和绝缘寿命。与信号组织保持数月至数年的密切接触的探头为神经科学带来了重大变革,重要的是,为更广泛的临床转化打开了基于神经技术的系统,这些系统依赖于神经技术来与人类大脑接口。